Use of anti-aging glycopeptides for the treatment of dry eye disease, retinal degenerative disease, or ocular inflammation
A gem-difluorinated C-glycopeptide compound is administered to treat or prevent dry eye disease, retinal degenerative disease, and ocular inflammation, offering broader and potentially longer-term benefits than existing treatments by addressing the underlying causes.
Patent Information
- Application Number
- JP2022554721
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-11-26
- Filing Date
- 2021-03-10
- Publication Date
- 2025-10-07
- Estimated Expiration
- 2041-03-10
AI Technical Summary
Current treatments for dry eye disease, retinal degenerative disease, and ocular inflammation are palliative and provide limited long-term benefits, with a need for alternative methods that address the underlying causes rather than just alleviating symptoms.
Administration of a gem-difluorinated C-glycopeptide compound to the eye, represented by specific formulas, to treat or prevent dry eye disease, retinal degenerative disease, or ocular inflammation.
The gem-difluorinated C-glycopeptide compound effectively addresses the underlying issues of dry eye disease, retinal degenerative disease, and ocular inflammation, providing broader application and potentially longer-term benefits than existing treatments.
Smart Images

Figure 0007750850000131 
Figure 0007750850000132 
Figure 0007750850000133
Abstract
Description
[Technical Field]
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS This application claims priority to U.S. Provisional Patent Application No. 62 / 987,522, filed March 10, 2020, U.S. Provisional Patent Application No. 63 / 074,222, filed September 3, 2020, U.S. Provisional Patent Application No. 63 / 077,749, filed September 14, 2020, and U.S. Provisional Patent Application No. 63 / 118,712, filed November 26, 2020, the specifications of which are incorporated herein by reference in their entireties. [Background technology]
[0002] (a) Field The disclosed subject matter relates generally to methods of treating or preventing dry eye disease, and more particularly to methods of treating or preventing dry eye disease in a subject in need thereof.
[0003] (b) Related Prior Art Antifreeze compounds, and in particular glycoproteins (glycopeptides), exist in the natural environment. These compounds are present, for example, in some fish, allowing them to survive in cryogenic environments (i.e., temperatures near or below zero). Scientists have studied how antifreeze compounds from natural environments (fish, amphibians, plants, insects, etc.) affect these phenomena. Research has focused on synthesizing analogues that are sufficiently stable for commercial applications and whose activity is at least equal to or greater than that of the natural molecules.
[0004] Antifreeze proteins (AFPs) have attracted increasing interest for their ability to protect cells under various conditions. They occur naturally in Arctic and Antarctic fish and other cold-climate invertebrates and are involved in maintaining cell and tissue function even at subzero temperatures. AFPs were successfully isolated in the 1950s, and their ability to non-collectively lower the freezing temperature of body fluids by binding to ice crystals has been demonstrated.
[0005] Early experiments with these compounds in the field of organ and tissue transplantation have shown promising results, making them attractive therapeutic candidates for protecting cells against the harmful conditions associated with the recovery-preservation-reperfusion process. Furthermore, cryopreservation of various cells, including islets of Langerhans, has also demonstrated that supplementation with AFP during cryopreservation significantly improves their viability and function. The anti-aging glycopeptide (AAGP) used in the present invention is a novel anti-aging glycopeptide. TM ) originated from attempts to obtain analogs of antifreeze glycoproteins.
[0006] Anti-aging glycopeptide (AAGP) TM ) compound is a gem-difluorinated C-glycopeptide that has been proposed to be applicable under severe cellular stress conditions such as nutrient deficiency, high temperature / frozen storage, oxidative stress caused by hydrogen peroxide (H2O2), UV irradiation, and inflammation. Summary of the Invention [Problem to be solved by the invention]
[0007] Dry eye, also known as dry eye disease or keratoconjunctivitis sicca, is a multifactorial disorder of the tears and ocular surface that results in symptoms of tear film instability with discomfort, visual disturbances, and potential damage to the ocular surface. This is accompanied by increased tear film osmolality and ocular surface inflammation (The Ocular Surface, "The Definition and Classification of Dry Eye Disease: Report of the Definition and Classification Subcommittee of the International Dry Eye Association" [1]). Eye Workshop (2007),” 5). (2): 75-92 (2007). Dry eye can be recognized as a disorder of the lacrimal functional unit, an integrated system consisting of the lacrimal gland, ocular surface (cornea, conjunctiva, and meibomian glands), and eyelids, as well as the sensory and motor nerves that connect them. The lacrimal functional unit regulates the major components of the tear film and responds to environmental, endocrine, and cortical influences. The function of this unit is to maintain tear film integrity, corneal transparency, and the quality of the image projected onto the retina. Disease or damage to any component of the lacrimal functional unit (afferent sensory nerves, efferent autonomic and motor nerves, lacrimal gland) can destabilize the tear film and lead to ocular surface disease that manifests as dry eye.
[0008] The main classifications of dry eye are aqueous tear-deficient dry eye (ADDE) and evaporative dry eye (EDE). ADDE is due to a failure of tear secretion, and this classification is further subdivided into Sjögren's syndrome dry eye (in which the lacrimal and salivary glands are targeted by autoimmune processes, e.g., rheumatoid arthritis) and non-Sjögren's syndrome dry eye (in which lacrimal gland dysfunction, e.g., age-related dry eye, but excluding the systemic autoimmune features of Sjögren's syndrome). EDE is due to excessive water loss from the exposed ocular surface in the presence of normal tear secretion. The cause can be intrinsic (due to an endogenous disorder affecting eyelid structure or dynamics, e.g., meibomian gland dysfunction) or extrinsic (when ocular surface disease results from an exogenous exposure, such as vitamin A deficiency).
[0009] Dry eye is one of the most common ocular problems, affecting an estimated 4.91 million people in the United States, including approximately 3.23 million women and 1.68 million men aged 50 years or older. Current treatments for dry eye are palliative, focusing on tear replenishment to alleviate symptoms. Over-the-counter artificial tear formulations are available. Additionally, a non-pharmacological approach to improving tear film content is strict tamponade occlusion. However, strict tamponade occlusion carries the risk of reduced tear production, clearance, and ocular surface sensation. While these palliative therapies offer short-term benefits, they have limited utility in long-term control of dry eye. RESTASIS® (cyclosporine A) is the first-line prescription medication for the treatment of dry eye. RESTASIS® increases tear production in patients whose tear production is suppressed as a result of ocular inflammation associated with dry eye disease.
[0010] However, there is a need for treatments that have broader application than anti-inflammatory drugs.
[0011] Therefore, there is a need in the art for alternative methods of treating dry eye, retinal degenerative disease, or ocular inflammation.
[0012] Thus, there is a need in the art for a means to treat or prevent dry eye disease, retinal degenerative disease, or ocular inflammation. [Means for solving the problem]
[0013] According to this embodiment, there is provided a method for treating or preventing dry eye disease in a subject in need thereof, comprising: a) administering to the eye of the subject an effective amount of a gem-difluorinated C-glycopeptide compound represented by general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate, or solvate of the compound represented by general formula I; Methods are provided: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 is OH, OGP', NH2, N3, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); ) and R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0014] The subject may be a human subject.
[0015] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0016] The compound of formula I can be a compound of formula III. [ka]
[0017] The effective amount can be from about 0.01 mg / mL to about 5 mg / mL of the compound of Formula I, Formula II, or Formula III.
[0018] The effective amount can be from about 1 mg / mL to about 5 mg / mL of the compound of Formula I, Formula II, or Formula III.
[0019] The administration can be at least once, twice, three times, or four times per day.
[0020] According to other embodiments, there is provided the use of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, for the treatment or prevention of dry eye disease in a subject in need thereof: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0021] The subject may be a human subject.
[0022] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0023] The compound of formula I can be a compound of formula III. [ka]
[0024] The use can be carried out at about 0.01 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0025] The use can be carried out at about 1 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0026] The use may be at least once, twice, three times or four times per day.
[0027] According to another embodiment, there is provided a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, for use in the treatment or prevention of dry eye disease in a subject in need thereof: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0028] The subject may be a human subject.
[0029] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0030] The compound of formula I may be a compound of formula III. [ka]
[0031] The use can be carried out at about 0.01 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0032] The use can be carried out at about 1 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0033] The use may be at least once, twice, three times or four times per day.
[0034] According to another embodiment, there is provided the use of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, in the manufacture of a medicament for the treatment or prevention of dry eye disease in a subject in need thereof: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3The two are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0035] The subject may be a human subject.
[0036] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0037] The compound of formula I may be a compound of formula III. [ka]
[0038] The use can be carried out at about 0.01 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0039] The use may involve using about 1 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0040] The medicament may be for use at least once, twice, three times, or four times per day.
[0041] According to another embodiment, there is provided a method of treating or preventing a retinal degenerative disease, an ocular inflammation, or a combination thereof, in a subject in need thereof, comprising: a) administering to the eye of the subject an effective amount of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate, or solvate of the compound of general formula I; A method is provided that includes: [ka] {In the formula, N is an integer from 1 to 5, R 4represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0042] The subject may be a human subject.
[0043] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0044] The compound of formula I may be a compound of formula III. [ka]
[0045] The effective amount can be from about 0.01 mg / mL to about 5 mg / mL of the compound of Formula I, Formula II, or Formula III.
[0046] The effective amount can be from about 1 mg / mL to about 5 mg / mL of the compound of Formula I, Formula II, or Formula III.
[0047] The administration can be at least once, twice, three times, or four times per day.
[0048] The retinal degenerative disease can be age-related macular degeneration (AMD), diabetic retinopathy, retinitis pigmentosa (RP), retinal vein occlusion, retinal vasculitis, or sarcoidosis.
[0049] According to another embodiment, there is provided the use of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, for the treatment or prevention of retinal degenerative diseases, ocular inflammation, or a combination thereof, in a subject in need thereof: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.
[0050] The subject may be a human subject.
[0051] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0052] The compound of formula I can be a compound of formula III. [ka]
[0053] The use can be carried out at about 0.01 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0054] The use can be carried out at about 1 mg / mL to about 5 mg / mL of the compound represented by formula I, formula II or formula III.
[0055] The use may be at least once, twice, three times or four times per day.
[0056] The retinal degenerative disease is age-related macular degeneration (AMD), diabetic retinopathy, retinitis pigmentosa (RP), retinal vein occlusion, retinal vasculitis, or sarcoidosis.
[0057] The following terms are defined as follows:
[0058] As used herein, the term "sufficient time" is intended to mean the time period for treating or preventing dry eye disease symptoms. This time period is variable and depends on the type of dry eye disease. It can range from a few minutes, a day or days, a week or weeks, to several months.
[0059] As used herein in the context of the present invention, the terms "inhibit," "inhibition," or "inhibiting," "prevent," or "prevention" mean to slow, hinder, restrain, reduce, or prevent. For example, "preventing dry eye disease" means to slow, hinder, or suppress dry eye disease. It means to restrain, reduce, or prevent.
[0060] The term "contacting" as used herein is intended to mean contacting an organ, part thereof, tissue and / or cell with a compound of the present invention for a time sufficient to provide the effect imparted by the compound. In one embodiment, contacting is used herein to mean contacting with the eye.
[0061] The term "administering" as used herein is intended to mean administering or applying (a remedy or drug; i.e., a compound of Formula I, II, or III). In one embodiment, administering is used herein to mean administering to the eye.
[0062] The term "subject" preferably refers to a human subject, but can also refer to any mammal, including animal models. Mammals of interest include, but are not limited to, rodents, e.g., mice and rats; livestock, e.g., pigs, horses, and cows; pets, e.g., dogs and cats; and primates. A subject may also be referred to herein as a "patient."
[0063] The term "composition," as used herein, is intended to encompass products containing specified amounts of specified ingredients and any product resulting directly or indirectly from the combination of specified amounts of specified ingredients. The term, in reference to pharmaceutical compositions or other compositions in general, is intended to encompass products containing active ingredients and inactive ingredients constituting a carrier, as well as any product resulting directly or indirectly from the combination, complexation, or aggregation of any two or more ingredients, from the dissociation of one or more ingredients, or from any other type of reaction or interaction of one or more ingredients. Thus, a typical pharmaceutical or other composition of the present invention encompasses any composition made by admixing a compound of the present invention with a pharmaceutically acceptable carrier. "Pharmaceutically acceptable" or "acceptable" means that the carrier, diluent, or excipient must be compatible with the other ingredients of the formulation and not deleterious to the recipient. According to some embodiments, the composition may be an ophthalmic composition and may be formulated as a solution, ointment, cream, lotion, eye drop, or eye gel.
[0064] As used herein, the terms "dry eye" or "dry eye disease" are intended to encompass dry eye syndrome (DES), also known as keratoconjunctivitis sicca (KCS—Latin for "dryness of the cornea and conjunctiva"). Other associated symptoms include inflammation, redness, discharge, and eye fatigue. Blurred vision may also occur. Symptoms range from mild and occasional to severe and persistent. In some cases, corneal scarring can occur without treatment. Dry eye occurs when the eye does not produce enough tears or when tears evaporate too quickly. This can be caused by contact lens use, meibomian gland dysfunction, allergies, pregnancy, Sjögren's syndrome, vitamin A deficiency, LASIK surgery, and certain medications, such as antihistamines, some blood pressure medications, hormone replacement therapy, and antidepressants. Chronic conjunctivitis, such as from tobacco smoke exposure or infection, can also lead to this disease. Dry eye disease is a common ocular disorder. Depending on the population studied, 5-34% of people are affected to some degree. Among older adults, it affects up to 70%.
[0065] "Alkyl group," and other groups having the prefix "alk," such as alkoxy and alkanoyl, means carbon chains which may be linear or branched and combinations thereof, unless the carbon chain is defined otherwise. Examples of alkyl groups include methyl, ethyl, propyl, isopropyl, butyl, sec- and tert-butyl, pentyl, and methyl. Examples of alkyl include aryl, hexyl, heptyl, octyl, nonyl, and the like. Where the specified number of carbon atoms allows, e.g., C3-10, the term alkyl includes cycloalkyl groups and combinations of straight or branched alkyl chains combined with cycloalkyl structures. When no number of carbon atoms is specified, C1-6 is intended.
[0066] "Cycloalkyl" is a subset of alkyl and means a saturated carbocyclic ring having a specified number of carbon atoms. Examples of cycloalkyl groups include cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl, cyclooctyl, and the like. Cycloalkyl groups are generally monocyclic unless otherwise specified. Cycloalkyl groups are saturated unless otherwise defined.
[0067] The term "alkoxy group" refers to straight or branched chain alkoxides of the specified number of carbon atoms (e.g., C1-6 alkoxy group), or any number within this range [i.e., methoxy (MeO-), ethoxy, isopropoxy, etc.].
[0068] The term "alkylthio group" refers to a straight or branched chain alkyl sulfide of the specified number of carbon atoms (e.g., a C1-6 alkylthio group), or any number within this range [i.e., a methylthio group (MeS-), an ethylthio group, an isopropylthio group, etc.].
[0069] The term "alkylamino group" refers to a straight-chain or branched alkyl amine having the specified number of carbon atoms (e.g., C alkylamino) or any number within this range [i.e., methylamino, ethylamino, isopropylamino, t-butylamino, etc.].
[0070] The term "alkylsulfonyl" refers to a straight or branched chain alkylsulfone having a specified number of carbon atoms (e.g., C alkylsulfonyl), or any number within this range [i.e., methylsulfonyl (MeSO-), ethylsulfonyl, isopropylsulfonyl, etc.].
[0071] The term "alkylsulfinyl group" refers to a group having a specified number of carbon atoms (e.g., C 1-6 alkylsulfinyl), or any number of straight or branched chain alkyl sulfoxides within this range [i.e., methylsulfinyl (MeSO-), ethylsulfinyl, isopropylsulfinyl, etc.].
[0072] An "alkyloxycarbonyl group" refers to an alkyl group having a specified number of carbon atoms (e.g., C 1-6 alkyloxycarbonyl group), or straight or branched chain esters of any number of carboxylic acid derivatives of the present invention within this range [i.e., methyloxycarbonyl group (MeOCO-), ethyloxycarbonyl group, or butyloxycarbonyl group].
[0073] The term "aryl group" refers to a monocyclic or polycyclic aromatic ring system containing carbon ring atoms. Preferred aryl groups are monocyclic or bicyclic 6- to 10-membered aromatic ring systems. Phenyl and naphthyl groups are preferred aryl groups. The most preferred aryl group is phenyl.
[0074] "Heterocyclyl" refers to a saturated or unsaturated non-aromatic ring or ring system containing at least one heteroatom selected from O, S, and N, and further containing oxidized forms of sulfur, i.e., SO and SO. Examples of heterocyclyls include tetrahydrofuran (THF), dihydrofuran, 1,4-dioxane, morpholine, 1,4-dithiane, piperazine, piperidine, 1,3-dioxolane, imidazolidine, imidazoline, pyrroline, pyrrolidine, tetrahydropyran, dihydropyran, oxathiolane, dithiolane, 1,3-dioxane, 1,3-dithiane, oxathiane, thiomorpholine, 2-oxopiperidin-1-yl, 2-oxopyrrolidin-1-yl, 2-oxazetidin-1-yl, and the like. 1,2,4-oxadiazin-5(6H)-one-3-yl and the like.
[0075] "Heteroaryl" refers to an aromatic or partially aromatic heterocycle containing at least one ring heteroatom selected from O, S, and N. Thus, heteroaryl also includes heteroaryls fused to other types of rings, such as aryls, cycloalkyls, and non-aromatic heterocycles. Examples of heteroaryl groups include pyrrolyl, isoxazolyl, isothiazolyl, pyrazolyl, pyridyl, oxazolyl, oxadiazolyl (particularly 1,3,4-oxadiazol-2-yl and 1,2,4-oxadiazol-3-yl), thiadiazolyl, thiazolyl, imidazolyl, triazolyl, tetrazolyl, furyl, triazinyl, thienyl, pyrimidyl, benzisoxazolyl, benzoxazolyl, benzothiazolyl, benzothiadiazolyl, and benzothiadiazolyl. Examples of heterocyclic and heteroaryl groups include benzoyl, dihydrobenzofuranyl, indolinyl, pyridazinyl, indazolyl, isoindolyl, dihydrobenzothienyl, indolizinyl, cinnolinyl, phthalazinyl, quinazolinyl, naphthyridinyl, carbazolyl, benzodioxolyl, quinoxalinyl, purinyl, furazanyl, isobenzylfuranyl, benzimidazolyl, benzofuranyl, benzothienyl, quinolyl, indolyl, isoquinolyl, and dibenzofuranyl. Heterocyclyl and heteroaryl groups include rings and ring systems containing 3 to 15 atoms, forming 1 to 3 rings.
[0076] "Halogen" refers to fluorine, chlorine, bromine, and iodine. Chlorine and fluorine are generally preferred. Fluorine is most preferred when the halogens are substituted on an alkyl or alkoxy group (e.g., CF3O and CF3CH2O).
[0077] The phrase "ocular inflammation" is intended to mean inflammation of the eye, and refers to inflammation of the eyelid or uvea (the middle layer of the eye). Symptoms of eyelid inflammation include crusting, swelling, redness, and itching. Inflammation of the uvea includes blurred vision, eye pain, redness, and sensitivity to light. Eyelid inflammation can be a symptom of a bacterial infection, such as a stye (hordeolum). Uveitis is inflammation of the middle layer of the eyeball, consisting of the iris, ciliary body, and choroid. Collectively, these structures are called the uvea. Uveitis can have a variety of causes, including eye injuries and inflammatory diseases. Exposure to toxic chemicals, such as pesticides and acids used in manufacturing processes, can also cause uveitis. Types of uveitis are classified based on where the inflammation occurs in the uvea: anterior uveitis is inflammation of the iris (iritis) or the iris and ciliary body. Intermediate uveitis is inflammation of the ciliary body. Posterior uveitis is inflammation of the choroid. Diffuse uveitis (also called panuveitis) is inflammation of all areas of the uvea. Blepharitis is inflammation of the eyelids. There are two types of eyelid inflammation: anterior inflammation occurs on the outside of the eye, where the eyelashes are. Eyebrow dandruff or an allergic reaction in the eye can cause anterior eyelid inflammation. Posterior blepharitis occurs on the inner edge of the eyelid closest to the eye. Dysfunction of the sebaceous glands behind the eyelash follicles usually causes this form of inflammation.
[0078] The term "retinal degeneration" refers to a retinopathy that consists of deterioration of the retina caused by the progressive death of its cells. There are several reasons for retinal degeneration, such as arterial or venous blockage, diabetic retinopathy, retrolental fibroplasia, retinopathy of prematurity, or diseases (usually hereditary).
[0079] The expression "retinal degenerative disease" is a disease caused by or resulting from retinal degeneration.
[0080] Before describing the present invention in detail, several terms are defined. As used herein, the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise.
[0081] It should be noted that terms such as "preferably," "generally," and "typically" are not used herein to limit the scope of the claimed invention or to imply that a particular feature is critical, essential, or even essential to the structure or function of the claimed invention. Rather, these terms are merely intended to highlight alternative or additional features that may or may not be utilized in particular embodiments of the invention.
[0082] It should be noted that for purposes of describing and defining the present invention, the term "substantially" is utilized herein to represent the inherent degree of uncertainty that can be attributed to any quantitative comparison, value, measurement, or other representation. The term "substantially" is also used herein to represent the extent to which a quantitative representation can vary from the stated standard without resulting in a change in the basic functionality of the subject matter at issue.
[0083] The features and advantages of the subject matter herein will become more apparent in light of the following detailed description of selected embodiments, as illustrated in the accompanying drawings. As will be understood, the subject matter disclosed and claimed is capable of modification in various respects, all without departing from the scope of the claims. Accordingly, the drawings and description are to be regarded as illustrative in nature and not restrictive, the full scope of the subject matter being set forth in the appended claims. [Brief explanation of the drawings]
[0084] Further features and advantages of the present disclosure will become apparent from the following detailed description taken in conjunction with the accompanying drawings.
[0085] [Figure 1]Figure 1A shows corneal permeability after acute DED induction. Mean ± SEM (standard error of mean); unpaired Student's t-test. *, p ≤ 0.05; **, p ≤ 0.01; ***, p ≤ 0.001. Figure 1B shows corneal permeability after acute DED induction. Mean ± SEM (standard error of mean); unpaired Student's t-test. *, p ≤ 0.05; **, p ≤ 0.01; ***, p ≤ 0.001. [Figure 2] FIG. 2 shows conjunctival goblet cell density, shown as a histogram (left) and a dot and whisker plot (right). [Figure 3] Figure 3A shows corneal permeability after acute DED induction. Mean ± SEM; unpaired Student's t-test. *, p ≤ 0.05; **, p ≤ 0.01; ***, p ≤ 0.001. Figure 3B shows corneal permeability after acute DED induction. Mean ± SEM; unpaired Student's t-test. *, p ≤ 0.05; **, p ≤ 0.01; ***, p ≤ 0.001. [Figure 4] Figure 4A shows CD4+ T cells in the conjunctival epithelium after acute DED induction, and Figure 4B shows CD4+ T cells in the conjunctival epithelium after acute DED induction.
[0086] It should be noted that throughout the accompanying drawings, like features are identified by like reference numerals. DETAILED DESCRIPTION OF THE INVENTION
[0087] Detailed Description In embodiments, there is provided a method of treating or preventing dry eye disease in a subject in need thereof, comprising: a) administering to the eye of the subject an effective amount of a gem-difluorinated C-glycopeptide compound represented by general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate, or solvate of the compound represented by general formula I; A method is disclosed.
[0088] [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth
[0089] [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R7 is OH, OGP', NH2, N3, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); ) and R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth,
[0090] [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth,
[0091] [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth,
[0092] [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0093] The subject may be a human subject.
[0094] The compound of formula I can be a compound of formula II:
[0095] [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0096] The compound of formula I can be a compound of formula III. [ka]
[0097] The effective amount is from about 0.01 mg / mL to about 5 mg / mL; or from about 0.1 mg / mL to about 5 mg / mL; or from about 0.5 mg / mL to about 5 mg / mL; or from about 1 mg / mL to about 5 mg / mL; or from about 3 mg / mL to about 5 mg / mL; or from about 0.01 mg / mL to about 3 mg / mL; or from about 0.1 mg / mL to about 3 mg / mL; or from about 0.5 mg / mL of the compound of Formula I, Formula II, or Formula III. 1 mg / mL to about 3 mg / mL; or about 1 mg / mL to about 3 mg / mL; or about 0.01 mg / mL to about 1 mg / mL; or about 0.1 mg / mL to about 1 mg / mL; or about 0.5 mg / mL to about 1 mg / mL; or about 0.01 mg / mL to about 0.5 mg / mL; or about 0.1 mg / mL to about 0.5 mg / mL; or about 0.01 mg / mL to about 0.5 mg / mL; or about 0.1 mg / mL to about 0.5 mg / mL; or about 0.01 mg / mL to about 0.1 mg / mL; or about 3 mg / mL. According to embodiments, the above amounts are considered to be therapeutically effective amounts for purposes of the present invention.
[0098] The administration can be at least once, twice, three times, four times, or more per day.
[0099] According to other embodiments, there is provided the use of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, for the treatment or prevention of dry eye disease in a subject in need thereof: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0100] According to another embodiment, there is provided a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, for use in the treatment or prevention of dry eye disease in a subject in need thereof: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0101] According to another embodiment, there is provided the use of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, in the manufacture of a medicament for the treatment or prevention of dry eye disease in a subject in need thereof: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0102] The subject may be a human subject.
[0103] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0104] The compound of formula I may be a compound of formula III. [ka]
[0105] The use may involve administering to a patient a concentration of the compound of Formula I, Formula II, or Formula III of about 0.01 mg / mL to about 5 mg / mL; or about 0.1 mg / mL to about 5 mg / mL; or about 0.5 mg / mL to about 5 mg / mL; or about 1 mg / mL to about 5 mg / mL; or about 3 mg / mL to about 5 mg / mL; or about 0.01 mg / mL to about 3 mg / mL; or about 0.1 mg / mL to about 3 mg / mL; or about 0.5 mg / mL Concentrations of about 1000 to about 3 mg / mL, or about 1 mg / mL to about 3 mg / mL, or about 0.01 mg / mL to about 1 mg / mL, or about 0.1 mg / mL to about 1 mg / mL, or about 0.5 mg / mL to about 1 mg / mL, or about 0.01 mg / mL to about 0.5 mg / mL, or about 0.1 mg / mL to about 0.5 mg / mL, or about 0.01 mg / mL to about 0.5 mg / mL, or about 0.1 mg / mL to about 0.5 mg / mL, or about 0.01 mg / mL to about 0.1 mg / mL, or about 3 mg / mL may be used. According to embodiments, the above amounts are considered to be therapeutically effective amounts for purposes of the present invention.
[0106] The drug may be used at least once, twice, three or four times per day, or more.
[0107] According to another embodiment, there is provided a method of treating or preventing a retinal degenerative disease, an ocular inflammation, or a combination thereof, in a subject in need thereof, comprising: a) administering to the eye of the subject an effective amount of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate, or solvate of the compound of general formula I; A method is disclosed that includes: [ka] {In the formula, N is an integer from 1 to 5, R 4 represents H, AA1, or AA1-AA2, R 5 represents OH, AA1, or AA1-AA2, AA1 and AA2 independently represent amino acids having non-polar side chains, and R1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 Two of them are H and CH 3、 CH2Ph, CH(CH3) 2、 CH2CH(CH3)2 or CH(CH3)CH2CH3, and the remaining R 1 , R 2 , R 3 teeth [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; and, R 1 and R 2 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 represents H, CH3, CH2Ph, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 represents H, CH3, CH(CH3)2, CH2CH(CH3)2, or CH(CH3)CH2CH3; R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 represents H, CH, CHOH, CH-glycoside group or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group or an acetate group), R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group.}
[0108] According to another embodiment, the use of a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of said compound of general formula I, for the treatment or prevention of retinal degenerative diseases, ocular inflammation, or a combination thereof, in a subject in need thereof is disclosed:
[0109] The subject may be a human subject.
[0110] The compound of formula I can be a compound of formula II: [ka] {In the formula, N is an integer from 1 to 5, and R 1 , R 2 , R 3 is an independent group, where R 1 , R 2 and R 3 two of which are selected from H and CH3, and the remaining R 1 , R 2 and R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 represents OH, OGP', NH2, N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 2 is H or CH3, R 3 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R'', or SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" are independently H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 7 OH, OGP'NH 2、 N3, NHGP', NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 1 and R 3 When represents H or CH3, R 2 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, Here, Y and Y' represent H, OR, N3, NR'R'', and SR'''; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, Bn, a tosylate group, a C(=O)-alkyl group, or C(=O)-Bn; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP (wherein GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group), and R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group); R 8 represents a hydrogen atom H or a free or protected alcohol functional group; R 2 and R 3 When represents H or CH3, R 1 teeth, [ka] [In the formula, n is an integer from 3 to 4, Y and Y' are independent groups, wherein Y and Y' represent H, OR, N3, NR'R" or SR'"; wherein R represents H, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate; R' and R" each independently represent H, an alkyl group, an allyl group, a benzyl group, a tosylate group, a C(=O)-alkyl group, or a C(=O)-Bn group; R''' represents H, an alkyl group, or an acetate group; R 6 is selected from H, CH, CHOH, or CH-OGP, where GP represents a protecting group selected from an alkyl group, a benzyl group, a trimethylsilyl group, a tert-butyldimethylsilyl group, a tert-butyldiphenylsilyl group, or an acetate group; R 7 represents OH, OGP', NH, N, NHGP', or NGP'GP" (wherein GP' and GP" are independently selected from alkyl, benzyl, trimethylsilyl, tert-butyldimethylsilyl, tert-butyldiphenylsilyl, or acetate); R 8 represents a hydrogen atom or a free or protected alcohol functional group. ] represents}.
[0111] The compound of formula I can be a compound of formula III. [ka]
[0112] The effective amount is from about 0.01 mg / mL to about 5 mg / mL; or from about 0.1 mg / mL to about 5 mg / mL; or from about 0.5 mg / mL to about 5 mg / mL; or from about 1 mg / mL to about 5 mg / mL; or from about 3 mg / mL to about 5 mg / mL; or from about 0.01 mg / mL to about 3 mg / mL; or from about 0.1 mg / mL to about 3 mg / mL; or from about 0.5 mg / mL of the compound of Formula I, Formula II, or Formula III. 1 mg / mL to about 3 mg / mL; or about 1 mg / mL to about 3 mg / mL; or about 0.01 mg / mL to about 1 mg / mL; or about 0.1 mg / mL to about 1 mg / mL; or about 0.5 mg / mL to about 1 mg / mL; or about 0.01 mg / mL to about 0.5 mg / mL; or about 0.1 mg / mL to about 0.5 mg / mL; or about 0.01 mg / mL to about 0.5 mg / mL; or about 0.1 mg / mL to about 0.5 mg / mL; or about 0.01 mg / mL to about 0.1 mg / mL; or about 3 mg / mL. According to embodiments, the above amounts are considered to be therapeutically effective amounts for purposes of the present invention.
[0113] The administration can be at least once, twice, three times, four times, or more per day.
[0114] The retinal degenerative disease is age-related macular degeneration (AMD), diabetic retinopathy, retinitis pigmentosa (RP), retinal vein occlusion, retinal vasculitis, or sarcoidosis.
[0115] The present invention includes compounds as shown, and also includes (where possible) individual diastereomers, enantiomers, and epimers of the compounds, as well as mixtures of those diastereomers and / or enantiomers, including racemic mixtures. While the specific stereochemistry disclosed herein is preferred, other stereoisomers, including diastereomers, enantiomers, epimers, and mixtures thereof, may also be useful. Inactive or less active diastereoisomers and enantiomers may be useful for scientific studies related to the target and / or mechanism of activation. be.
[0116] The compounds disclosed herein can be used in pharmaceutical compositions comprising (a) the compound or a pharmaceutically acceptable salt thereof, and (b) a pharmaceutically acceptable carrier. The compounds can also be used in pharmaceutical compositions containing one or more other pharmaceutically active ingredients. The compounds can also be used in pharmaceutical compositions in which the compound of Formula I, II, or III, or a pharmaceutically acceptable salt thereof, is the only active ingredient.
[0117] The compounds of Formula I, II, and / or III may contain one or more asymmetric centers and therefore may exist as racemates and racemic mixtures, single enantiomers, diastereomeric mixtures, and individual diastereomers. The present invention is intended to encompass all such isomers of the compounds of Formula I, II, and / or III.
[0118] The compounds of Formula I, II, and / or III may be separated into their individual diastereoisomers by fractional crystallization from suitable solvents such as, for example, methanol or ethyl acetate or mixtures thereof, or by chiral chromatography using an optically active stationary phase. Absolute stereochemistry may be determined by X-ray crystallography of crystalline products or crystalline intermediates which are derivatized, if necessary, with a reagent containing an asymmetric center of known absolute configuration.
[0119] Alternatively, any stereoisomer of a compound of general structural formula I, structural formula II and / or structural formula III may be obtained by stereospecific synthesis using optically pure starting materials or reagents of known absolute configuration.
[0120] If desired, racemic mixtures of compounds may be separated so that the individual enantiomers are isolated. This separation can be carried out by methods well known in the art, such as coupling a racemic mixture of a compound to an enantiomerically pure compound to form a diastereomeric mixture, and then separating the individual diastereomers by standard methods such as fractional crystallization or chromatography. The coupling reaction is often the formation of a salt using an enantiomerically pure acid or base. The diastereomeric derivatives can then be converted to the pure enantiomers by cleavage of the added chiral residue. Racemic mixtures of compounds can also be separated directly by chromatographic methods utilizing chiral stationary phases, which are well known in the art.
[0121] Some of the compounds described herein contain olefinic double bonds, and unless specified otherwise, are meant to include both E and Z geometric isomers.
[0122] Some of the compounds described herein may exist as tautomers, which have different points of attachment of hydrogen accompanied by one or more double bond shifts. For example, a ketone and its enol form are keto-enol tautomers. Both the individual tautomers and mixtures thereof are encompassed by the compounds of the present invention.
[0123] In the compounds of general formula I, II, and / or III, atoms may exhibit natural isotopic abundance, or one or more atoms may be artificially enriched in a particular isotope having the same atomic number but an atomic mass or mass number different from that which is predominant in nature. The present invention is intended to include all suitable isotopic variations of the compounds of general formula I, II, and / or III. For example, different isotopic forms of hydrogen (H) are available, such as protium ( 1 H) and deuterium ( 2 Protium is the most predominant hydrogen isotope found in nature. Enrichment with deuterium increases the half-life in vivo or reduces the required dosage. Therapeutic advantages, such as reduced dosage, may be obtained, and the compounds may be useful as standards for characterization of biological samples. Isotopically enriched compounds within general Formula I, Formula II, and / or Formula III may be prepared without undue experimentation by conventional techniques well known to those skilled in the art.
[0124] Salts and preparations As used herein, references to compounds represented by Structural Formula I, Formula II, and / or Formula III will be understood to include pharmaceutically acceptable salts, as well as salts that are not pharmaceutically acceptable when used as the free compound or as precursors to a pharmaceutically acceptable salt thereof, or in other synthetic operations. The term "pharmaceutically acceptable salts" refers to salts prepared from pharmaceutically acceptable non-toxic bases or acids, including inorganic or organic bases and inorganic or organic acids. Salts of basic compounds encompassed by the term "pharmaceutically acceptable salts" refer to non-toxic salts of the compounds of the present invention, which are typically prepared by reacting the free base with a suitable organic or inorganic acid. Representative salts of the basic compounds of the present invention include, but are not limited to, acetate, benzenesulfonate, benzoate, bicarbonate, bisulfate, bitartrate, borate, bromide, camsylate, carbonate, chloride, clavulanate, citrate, edetate, edisylate, estolate, esylate, fluorocarbon ... Malate, gluceptate, gluconate, glutamate, hexylresorcinate, hydrobromide, hydrochloride, hydroxynaphthoate, iodide, isothionate, lactate, lactobionate, laurate, malate, maleate, mandelate, mesylate, methylbromide,Methylnitrate, methylsulfate, mucate, napsylate, nitrate, N-methylglucamine ammonium salt salt, oleate, oxalate, pamoate (embonate), palmitate, pantothenate, phosphate / diphosphate, polygalacturonate, salicylate, stearate, sulfate, subacetate, succinate, tannate, tartrate, teoclate, tosylate, triethiodide, and valerate. Furthermore, when the compound of the invention carries an acidic moiety, suitable pharmaceutically acceptable salts thereof include salts derived from inorganic bases, including, but not limited to, aluminum, ammonium, calcium, copper, ferric, ferrous, lithium, magnesium, manganic, manganous, potassium, sodium, zinc, etc. Particularly preferred are the ammonium, calcium, magnesium, potassium, and sodium salts. Salts derived from pharmaceutically acceptable organic non-toxic bases include, for example, primary, secondary, and tertiary amines, cyclic amines, such as arginine, betaine, caffeine, choline, N,N-dibenzylethylenediamine, diethylamine, 2-diethylaminoethanol, 2-dimethylaminoethanol, ethanolamine, ethylenediamine, N-ethylmorpholine, N-ethylpiperidine, glucamine, glucosamine, histidine, isopropylamine, lysine, methylglucamine, morpholine, piperazine, piperidine, polyamine resins, procaine, purine, theobromine, triethylamine, trimethylamine, tripropylamine, tromethamine, and the like.and salts of basic ion exchange resins.
[0125] Furthermore, when a carboxylic acid (—COOH) or alcohol group is present in the compound of the present invention, Pharmaceutically acceptable esters of carboxylic acid derivatives, such as methyl, ethyl, or pivaloyloxymethyl groups, or acyl derivatives of alcohols, such as acetyl, pivaloyl, benzoyl, and aminoacyl groups, can be used. Included are those ester and acyl groups known in the art for modifying solubility or hydrolysis properties for use as sustained-release or prodrug formulations.
[0126] Solvates, particularly hydrates, of the compounds of Formula I, Formula II and / or Formula III are also included in the present invention.
[0127] According to embodiments, compounds of structural formula I, II, and / or III may be included in various formulations for use as pharmaceuticals.
[0128] Aqueous suspensions contain the active substance in admixture with additives suitable for the manufacture of aqueous suspensions. Such additives are suspending agents such as sodium carboxymethylcellulose, methylcellulose, hydroxypropylmethylcellulose, sodium alginate, polyvinylpyrrolidone, gum tragacanth and gum acacia; dispersing agents or wetting agents can be naturally occurring phospholipids (phosphatides), such as lecithin, or condensation products of alkylene oxides with fatty acids, such as polyoxyethylene stearate, or condensation products of ethylene oxide with long-chain aliphatic alcohols, such as heptadecaethylene-oxycetanol, or condensation products of ethylene oxide with partial ester derivatives of fatty acids and hexitol, such as polyoxyethylene sorbitol monooleate, or condensation products of ethylene oxide with partial ester derivatives of fatty acids and hexitol anhydrides, such as polyethylene sorbitan monooleate. The aqueous suspensions may also contain one or more preservatives, such as, for example, ethyl, or n-propyl, p-hydroxybenzoate, one or more coloring agents, one or more flavoring agents, and one or more sweetening agents, such as sucrose, saccharin, or aspartame.
[0129] Oily suspensions can be formulated by suspending the active ingredient in a vegetable oil, such as arachis oil, olive oil, sesame oil, or coconut oil, or in a mineral oil, such as liquid paraffin. Oily suspensions can contain thickening agents, such as beeswax, hard paraffin, or cetyl alcohol. The above-mentioned sweeteners and flavoring agents can be added to provide a palatable oral preparation. These compositions can be preserved by adding an antioxidant, such as ascorbic acid.
[0130] Dispersible powders and granules suitable for preparation of an aqueous suspension by the addition of water provide the active ingredient in admixture with a dispersing or wetting agent, a suspending agent, and one or more preservatives. Suitable dispersing or wetting agents and suspending agents are exemplified by those already mentioned above. Additional additives, such as sweeteners, flavors, and colorants, may also be present.
[0131] The pharmaceutical composition of the present invention may also be in the form of an oil-in-water emulsion. The oil phase may be a vegetable oil, such as olive oil or arachis oil, or a mineral oil, such as liquid paraffin, or a mixture thereof. Suitable emulsifiers may be, for example, naturally occurring phospholipids such as soybeans, lecithin, and esters or partial esters obtained from fatty acids and hexitol anhydrides, such as sorbitan monooleate, and condensation products of the partial esters with ethylene oxide, such as polyoxyethylene sorbitan monooleate. The emulsion may also contain sweeteners and flavoring agents.
[0132] The pharmaceutical compositions may be in the form of a sterile injectable aqueous or oleaginous suspension. This suspension may be formulated according to known techniques using those suitable dispersing or wetting agents and suspending agents mentioned above. The sterile injectable preparation may also be a sterile injectable solution or suspension in a non-toxic parenterally acceptable diluent or solvent, for example as a solution in 1,3-butanediol. Acceptable vehicles and solvents that can be used include water, Ringer's solution, and physiological saline. In addition, sterile, fixed oils are conventionally employed as a solvent or suspending medium. For this purpose, any sterile, fixed oil can be employed, including synthetic mono- or diglycerides. In addition, fatty acids such as oleic acid are used in the preparation of injectable solutions.
[0133] The pharmaceutical composition may be an ophthalmic composition, such as a solution, ointment, cream, lotion, eye ointment, and most preferably, eye drops or eye gel, and may contain suitable conventional additives, such as preservatives, solvents to promote drug penetration, and emollients for ointments and creams. When used as eye drops, the pharmaceutical composition for dry eye treatment of the present invention may be provided in any dosage form used for eye drops, such as aqueous eye drops, aqueous suspension eye drops, viscous eye drops, and solubilized eye drops, or non-aqueous eye drops, such as non-aqueous eye drops and non-aqueous suspension eye drops. Among these, aqueous eye drops are preferred. When the pharmaceutical composition for dry eye treatment of the present invention is prepared as an aqueous eye drop, various additives commonly used in aqueous eye drops may be appropriately added within the scope of the present invention. Examples of such additives include buffers, isotonicity agents, preservatives (antiseptics), solubilizers (stabilizers), pH adjusters, thickeners, and chelating agents. The buffer may be selected from the group including, but not limited to, phosphate buffer, borate buffer, citrate buffer, tartrate buffer, acetate buffer (e.g., sodium acetate) and amino acids.
[0134] The tonicity agent may be selected from the group including, but not limited to, sugars such as sorbitol, glucose and mannitol, polyhydric alcohols such as glycerin, polyethylene glycol and polypropylene glycol, and salts such as sodium chloride.
[0135] The preservative may be selected from the group including, but not limited to, benzalkonium chloride, benzethonium chloride, alkyl parahydroxybenzoates such as methyl parahydroxybenzoate and ethyl parahydroxybenzoate, benzyl alcohol, phenethyl alcohol, sorbic acid and its salts, thimerosal and chlorobutanol.
[0136] The solubilizer (stabilizer) may be selected from the group including, but not limited to, cyclodextrin and its derivatives, water-soluble polymers such as poly(vinylpyrrolidone), and surfactants such as polysorbate 80 (trade name: Tween 80).
[0137] The pH adjuster may be selected from the group including, but not limited to, hydrochloric acid, acetic acid, phosphoric acid, sodium hydroxide, potassium hydroxide, and ammonium hydroxide.
[0138] The thickening agent may be selected from the group including, but not limited to, hydroxyethyl cellulose, hydroxypropyl cellulose, methyl cellulose, hydroxypropyl methyl cellulose and carboxymethyl cellulose and salts thereof.
[0139] The chelating agent may be selected from the group including, but not limited to, sodium edetate, sodium citrate, and condensed sodium phosphate.
[0140] When the pharmaceutical composition of the present invention for treating dry eye is formulated into an eye ointment, a base must be present. The eye ointment base may be selected from the group including, but not limited to, purified lanolin, VASELINE®, Plastibase, liquid paraffin, and polyethylene glycol.
[0141] According to one embodiment, the eye receives a dose of about 0.01 mg / mL to about 5 mg / mL, or about 0.1 mg / mL to about 5 mg / mL, or about 0.5 mg / mL to about 5 mg / mL, or about 1 mg / mL to about 5 mg / mL, or about 3 mg / mL to about 5 mg / mL, or about 0.0 Patients may be treated with a gem-difluorinated C-glycopeptide compound of general formula I, preferably a compound of formula II, and more preferably a compound of formula III, at a concentration varying from 1 mg / mL to about 3 mg / mL, or from about 0.1 mg / mL to about 3 mg / mL, or from about 0.5 mg / mL to about 3 mg / mL, or from about 1 mg / mL to about 3 mg / mL, or from about 0.01 mg / mL to about 1 mg / mL, or from about 0.1 mg / mL to about 1 mg / mL, or from about 0.5 mg / mL to about 1 mg / mL, or from about 0.01 mg / mL to about 0.5 mg / mL, or from about 0.1 mg / mL to about 0.5 mg / mL, or from about 0.01 mg / mL to about 0.5 mg / mL, or from about 0.01 mg / mL to about 0.1 mg / mL, or about 3 mg / mL. According to embodiments, the above amounts are considered to be therapeutically effective amounts for the purposes of the present invention.
[0142] In other embodiments, the gem-difluorinated C-glycopeptide compound is contacted with the eye for a time sufficient to improve cell viability and survival. According to embodiments, the sufficient time may be about 12 to 120 hours, or about 12 to about 96 hours, or about 12 to about 72 hours, or about 12 to about 48 hours, or about 12 to about 24 hours, or about 120 hours, or about 96 hours, or about 72 hours, or about 48 hours, or about 24 hours, or about 12 hours, or about 10 hours, or about 8 hours, or about 6 hours, or about 4 hours, or about 2 hours, or about 1 hour. According to embodiments, the neurosensory progenitor cells isolated herein are contacted with a compound for 1 hour, 55 minutes, 50 minutes, 45 minutes, 40 minutes, 35 minutes, 30 minutes, 25 minutes, 20 minutes, 15 minutes, 10 minutes, 5 minutes, 4 minutes, 3 minutes, 2 minutes, 1 minute, 45 seconds, or 30 seconds, or at least 1 hour, or at least 55 minutes, or at least 50 minutes, or at least 45 minutes, or at least 40 minutes, or at least 35 minutes, or at least 30 minutes, or at least 25 minutes, or at least 20 minutes, or at least 15 minutes, or at least 10 minutes, or at least 5 minutes, or at least 4 minutes, or at least 3 minutes, or at least 2 minutes, or at least 1 minute, or at least 45 seconds, or at least 30 seconds.
[0143] The present invention will be more readily understood by reference to the following examples, which are given to illustrate the invention rather than to limit its scope.
[0144] Example 1 AAGP reduces corneal permeability in an acute mouse model of dry eye disease TM Effectiveness evaluation of The objective of this study was to evaluate the efficacy of 5% AAGP delivered via bilateral topical administration four times daily for seven consecutive days on reducing corneal permeability in an acute mouse model of dry eye disease induced by desiccation stress and scopiramine. TM The purpose of this study was to determine the effect of
[0145] List of Abbreviations BID twice a day BSS Balanced Salt Solution DED Dry Eye Disease DS Drought stress OCT optimum cutting temperature OGD Oregon Green Dextran NS Non-Stress QID 4 times a day RH Relative Humidity RT room temperature SOP Standard Operating Procedure
[0146] Age- and weight-matched female C57BL / 6J mice were placed in separate groups (a From day 1 to day 7, mice in test groups 4 and 5 received either vehicle (BSS; group 4) or 5% AAGP. TM From day 4 to day 7, mice in test group 3 received bilateral topical administration of 0.1% CsA-MiDROPS (group 5) four times daily. TMThe mice in test groups 1 and 2 received topical bilateral administration of cyclosporine A microemulsion drug ocular penetration system (DS) twice daily. Mice in test groups 1 and 2 were untreated throughout the study. On days 4 to 8, mice in test groups 2 to 5 were also placed in a chamber with a poor environment (low humidity and constant airflow from a fan) and were injected subcutaneously with scopolamine hydrobromide four times daily at 8:30 AM, 11:00 AM, 2:00 PM, and 4:30 PM on days 4 to 7, and once at 8:30 AM on day 8, to expose the animals to DS and induce acute DED. Mice in group 1 were left untreated and were not exposed to DS and remained untreated throughout the study.
[0147] Corneal permeability was assessed by Oregon Green Dextran (OGD) staining at baseline, immediately prior to enrollment in the study group, to determine whether any mice met the exclusion criteria. Corneal permeability was measured again on day 8 to compare efficacy among mice in all study groups. Upon completion of the in vivo study, eye tissues were collected and processed for future histological analysis. [Table 1]
[0148] Test subjects
[0149] Efficacy evaluation
[0150] 5% AAGP reduces corneal permeability after repeated topical instillation in an acute mouse model of dry eye disease induced by desiccation stress and scopolamine TM To determine the effect of
[0151] Test animals and equipment
[0152] Preparation and storage of test samples
[0153] AAGP TM was supplied as a ~500 mg powder and stored at -20°C upon arrival. Test articles were protected from light during testing. TMwas prepared in BSS and dispensed into daily use aliquots as follows: 1)AAGP TM The powder was removed from -20°C, placed in a drying chamber, and allowed to return to room temperature for ∼30 min. 2) The required amount of AAGP TM was weighed and the potency value was 87.79% (AAGP TM Lot number P D150709-1R) and placed in a suitable container. 3) 80% of the final required volume of vehicle (BSS Sterile Wash Solution, Alcon, Cat. No. 0065079550) was added. 4)AAGP TM The solution was stirred until completely dissolved. 5) The pH was measured and adjusted to 5-8 by slowly adding 1N NaOH solution with a pipette. The initial and adjusted pH values were recorded. 6)AAGP TM The formulation was transferred to a volumetric flask and vehicle was added to the required final volume to achieve the correct final concentration. 7) The osmolality and viscosity of the final solution were measured and recorded. 8) The solution was sterilized by filtering through a 0.22 μm GV (PVDF) filter (Millipore) into a sterile vial. 9) Aliquot into daily use vials for administration. 10) The formulation was stored at 4°C ± 2°C until the day of administration.
[0154] Test System
[0155] Race, strain, sex, age, weight, supplier Type: Mouse Strain: C57BL / 6J Gender: Female Age range: 6 weeks (at time of arrival at testing facility) Weight:>15-25g Supplier: Jackson Laboratories Number of test animals: 40 Number of spare animals: 0
[0156] Environment and Management
[0157] housing
[0158] Except as described in section 7.2 during DED induction, all animals were housed in groups of 3-5 in large cages maintained under standard animal care conditions in ventilated cabinets. Refuges, gnawing material, and nesting material were present in all cages.
[0159] illumination
[0160] 12-hour light / 12-hour dark, except that room lights were turned on and off during the normal cycle to accommodate testing procedures.
[0161] food
[0162] All animals had access to a certified rodent diet5053.
[0163] water
[0164] Water was provided to each animal ad libitum via an automatic watering system, and the water was known to be free of contaminants at levels that would be expected to interfere with the results of this study.
[0165] identification
[0166] Animals were given ear tags with five-digit ID numbers for tracking purposes, and all animal information was stored locally in Microsoft Access. TM saved in the database.
[0167] Study group assignment
[0168] As shown in Table 1, mice were randomly assigned to test groups before the start of treatment.
[0169] method
[0170] Study design
[0171] Baseline: OGD staining and quantification
[0172] Days 1-7: Local instillation (infusion) of vehicle or test article; QID (Groups 4-5)
[0173] Days 4-8: Exposure to drought stress (Groups 2-5)
[0174] Days 4-7: Local instillation (infusion) of positive control; BID (Group 3)
[0175] Day 8: Quantification of corneal permeability; prospective histological quantification of conjunctival goblet cell density in each eye and CD4 in the conjunctiva + Enucleation of eyes for T cell quantification.
[0176] Induction of dry eye disease (DED)
[0177] Dry eye disease was induced in 6-8 week-old female C57BL / 6J mice by exposure to desiccation stress (DS). Animals were acclimated to 55% relative humidity (RH) for 1 week before the initiation of DS. DS was induced by subcutaneous injection of scopolamine hydrobromide (0.5 mg / 0.2 ml; S0929; Sigma-Aldrich, St. Louis, MO) four times daily (8:30 AM, 11:00 AM, 2:00 PM, and 4:30 PM) throughout the study, except for day 5, when a single injection was administered 1 hour before OGD staining. Mice were housed in cages with perforated screens on both sides to allow constant airflow from a fan. RH was tightly controlled at 20%, and temperature was maintained at 25°C in an environmental chamber. Animals were maintained on a 12-hour light-dark cycle. Control mice were maintained in a non-stressed (NS) environment at 55% RH without exposure to forced air ventilation, and the temperature was maintained at 25°C in a separate chamber.
[0178] Bilateral local drip
[0179] Topical formulations of vehicle or test agent were administered twice daily (BID) at approximately 8:30 AM and 4:30 PM each day via a 3 μl positive displacement pipette into both eyes. For the procedure, fully awake animals were gently restrained by the scruff of the neck, and the eyelids were gently pulled away from the eyes using the index finger and thumb of the individual performing the procedure. After administration, the animals were held for an additional 60 seconds to allow for complete dispersion of the delivered agent.
[0180] Assessment of corneal barrier function using Oregon Green Dextran (OGD)
[0181] Corneal staining was measured by Oregon Green Dextran (OGD; ThermoFisher; D7172) permeation. For baseline assessment, 0.5 μL of OGD was instilled onto the cornea of both eyes. Mice were housed in the dark for 1 min, then washed with BSS and irrigated with isopropyl alcohol before imaging. Mice were briefly anesthetized with flurane. For corneal permeability assessment on day 8, 0.5 μL of OGD was instilled into the cornea of both eyes. The mice were immediately placed in a dark place for 1 min, then euthanized and immediately imaged. The eyes were washed with 2 mL of balanced saline solution (BSS, Alcon; 0065 0795-50). Excess fluid was blotted from around the eyes with filter paper. Digital images were acquired, and the mean fluorescence intensity within a 2-mm central corneal ring was measured using NIS Elements software (Nikon).
[0182] Tissue collection
[0183] At the end of the study on day 8, the left eye was enucleated with the intact conjunctiva, fixed in 10% formalin, and stored at room temperature, while the right eye was enucleated with the intact conjunctiva, suspended in optimal cutting temperature (OCT) compound, and snap-frozen in liquid nitrogen.
[0184] Histology, periodic acid-Schiff staining, and conjunctival goblet cell (GC) measurement
[0185] Enucleated mouse eyes with intact conjunctiva were fixed in 10% formalin and embedded in paraffin. Six-micrometer sections were stained with periodic acid-Schiff (PAS) reagent. GC density in the superior and inferior conjunctiva was measured using a 10x objective lens with NIS Elements Basic Research microscope imaging software (version 3.0; Nikon, Melville, NY). GC density quantification was performed only in groups 1, 2, 4, and 5.
[0186] Data Processing
[0187] Data collection and analysis
[0188] Test article information, in-life data, and bioanalytical data were collected as digital files or on paper, as appropriate. Data and statistical analysis was performed using Graphpad Prism version 5.00.
[0189] Test deviation (deviation)
[0190] There were no deviations from the study design of the original protocol.
[0191] Data and statistical analysis
[0192] Statistical analysis was performed with GraphPad Prism software (version 5.0) using the unpaired Student's t test. Only changes with a p value < 0.05 were considered statistically significant.
[0193] result
[0194] corneal permeability
[0195] 5% AAGP on corneal barrier function TMTo evaluate the efficacy of 0.1% CsA-MiDROPS, corneal permeability was measured on day 8. On day 8, all test groups exposed to DS showed an increase in mean corneal permeability compared to unexposed mice, and the difference was significant in mice exposed to DS but left untreated or mice administered only the BSS vehicle (Figures 1A and 1B; Tables 2-6; unpaired Student's t-test). TM Administration of significantly reduced corneal permeability compared to untreated (naive) mice (Figure 1 Administration of BSS had no effect on reducing mean corneal permeability compared to untreated (naive) DS-exposed mice (Figures 1A and 1B; Tables 2-6; unpaired Student's t-test). 5% AAGP TM Administration of BSS decreased mean corneal permeability compared to BSS alone, with differences approaching but not achieving statistical significance (Figure 1A and 1B; Tables 2-6; unpaired Student's t-test).
[0196] Conjunctival goblet cell density was also measured, and the results (Fig. 2, left and right) were consistent with those of 5% AAGP. TM We demonstrated that treatment with PKX-001 prevented the decrease in goblet cell density caused by desiccation stress. GC loss was quantified as a measure of ocular surface damage by final histological analysis. Compared to unstressed mice, the mean GC count decreased from 58.88 to 46.82 in mice exposed to DS and left untreated (Figure 2; **p=0.0012; unpaired Student's t-test). There was no statistical difference in mean GC count between vehicle-treated and untreated DS-exposed mice (Figure 2). Mice treated with 5% PKX-001 had significantly higher mean GC density compared to both untreated mice exposed to DS and mice treated with vehicle (Figure 2; unpaired Student's t-test).
[0197] CD4+ T cell infiltration
[0198] CD4+ T cell infiltration into the conjunctival epithelium is the primary clinical indicator of DED. The presence of CD4+ T cells in the conjunctival epithelium was significantly increased in untreated DED-induced mice (Figure 4; *, p = 0.0130; unpaired Student's t-test). Vehicle administration had no effect on the reduction of T cell infiltration, whereas bilateral local administration of 5% PKX-001 significantly reduced T cell infiltration in DS-induced mice (Figure 4, Table 7; ***, p ≤ 0.0001; unpaired Student's t-test). [Table 2] [Table 3] [Table 4] [Table 5] [Table 6] [Table 7]
[0199] Results from the CD4+ T cell infiltration assay unexpectedly demonstrated that, in addition to providing protection against unfavorable stimuli, AAGP TM have been shown to suppress T cell responses in addition to reducing ocular inflammatory responses.
[0200] Example 2 AAGP in an acute mouse model of dry eye disease TM Efficacy evaluation of two different doses of The purpose of this study was to evaluate the efficacy of 2% AAGP in an acute mouse model of DED. TM or 5% AAGP TM By comparing the efficacy of topical administration of AAGP TM Another objective was to investigate the dose range of AAGP in an acute mouse model of DED. TM 2 of 1 day Another objective was to compare the potential therapeutic effects of AAGP once daily or four times daily administration for 4 days after induction of DED. TM administration of AAGP daily for 3 days before and 4 days after DED induction TM The purpose of this study was to evaluate the effectiveness of
[0201] List of Abbreviations BID twice a day BSS Balanced Salt Solution DED Dry Eye Disease DS Drought stress OCT optimum cutting temperature OGD Oregon Green Dextran NS Non-Stress QID 4 times a day RH Relative Humidity RT room temperature SOP Standard Operating Procedure
[0202] method:
[0203] Age- and weight-matched female C57BL / 6J mice were divided into eight separate groups (arms) as shown in Table 8. From days 4 to 8, mice in test groups 2 to 8 were also placed in a chamber with a poor environment (low humidity and constant airflow from a fan) and exposed to desiccation stress (DS) by subcutaneous injection of scopolamine hydrobromide four times daily at 8:30 AM, 11:00 AM, 2:00 PM, and 4:30 PM on days 4 to 7, and once at 8:30 AM on day 8. The animals were exposed to DS and acute DED was induced. The duration and frequency of treatment varied among test groups. Mice in group 2 were left untreated. Mice in group 3 were administered the positive control 0.1% CsA-MiDROPS on days 4–7. TM was administered topically twice daily (Coursey et al., Once-Daily Cyclosporine-A-MiDROPS TMfor Treatment of Dry Eye Disease Translational Vision Science & Technology 2018;7:1-13). Mice in Group 4 received 5% AAGP from days 1 to 7. TM Mice in group 5 received topical bilateral administration of the vehicle BSS four times daily on days 1 through 7. Mice in group 6 received topical bilateral administration of 5% AAGP on days 4 through 7. TM Mice in groups 7 and 8 received topical administration of 2% AAGP four times daily. TM (Group 7) or 5% AAGP TM (Group 8) were administered topically on both sides four times daily on days 1 to 7.
[0204] Corneal permeability was assessed by Oregon Green Dextran (OGD) staining at baseline, immediately prior to enrollment in the study group, to determine whether any mice met the exclusion criteria. Corneal permeability was measured again on day 8 to compare efficacy among mice in all study groups. [Table 8]
[0205] Test subjects
[0206] Efficacy evaluation
[0207] AAGP formulated at 2% or 5% reduces corneal permeability after repeated topical instillation in an acute mouse model of dry eye disease induced by desiccation stress and scopolamine TM Determine the timing of the effect.
[0208] Test animals and equipment
[0209] Preparation and storage of test samples
[0210] AAGP TM was supplied as a ~500 mg powder and stored at -20°C upon arrival. Test articles were protected from light during testing.TM was prepared in BSS and dispensed into daily use aliquots as follows: 1)AAGP TM The powder was removed from -20°C, placed in a drying chamber, and allowed to return to room temperature for ∼30 min. 2) The required amount of AAGP TM was weighed and the potency value was 87.79% (AAGP TM Lot number PD150709-1R) and placed in suitable containers. 3) 80% of the final required volume of vehicle (BSS Sterile Wash Solution, Alcon, Cat. No. 0065079550) was added. 4)AAGP TM The solution was stirred until completely dissolved. 5) The pH was measured and adjusted to 5-8 by slowly adding 1N NaOH solution with a pipette. The initial and adjusted pH values were recorded as shown in Table 9. 6)AAGP TM The formulation was transferred to a volumetric flask and vehicle was added to the required final volume to achieve the correct final concentration. 7) The osmolality and viscosity of the final solution were measured and recorded as shown in Table 9. 8) The solution was sterilized by filtering through a 0.22 μm GV (PVDF) filter (Millipore) into a sterile vial and dispensed into daily use vials for administration. 9) The formulation was stored at 4°C ± 2°C until the day of administration. On the day of administration, the formulation was warmed to room temperature before use. [Table 9]
[0211] Test System
[0212] Race, strain, sex, age, weight, supplier Type: Mouse Strain: C57BL / 6J Gender: Female Age range: 6 weeks (at time of arrival at testing facility) Weight:>15-25g Supplier: Jackson Laboratories Number of test animals: 64 Number of spare animals: 0
[0213] Environment and Management
[0214] housing
[0215] Except as described in section 7.2 during DED induction, all animals were housed in groups of 3-5 in large cages maintained under standard animal care conditions in ventilated cabinets. Refuges, gnawing material, and nesting material were present in all cages.
[0216] illumination
[0217] 12-hour light / 12-hour dark, except that room lights were turned on and off during the normal cycle to accommodate testing procedures.
[0218] food
[0219] All animals had access to a certified rodent diet5053.
[0220] water
[0221] Water was provided to each animal ad libitum via an automatic watering system, and the water was known to be free of contaminants at levels that would be expected to interfere with the results of this study.
[0222] identification
[0223] Animals were given ear tags with five-digit ID numbers for tracking purposes, and all animal information was stored in a local MS Access database.
[0224] Study group assignment
[0225] As shown in Table 1, mice were randomly assigned to test groups before the start of treatment.
[0226] method
[0227] Study design
[0228] Baseline: Oregon Green Dextran (OGD) staining and quantification
[0229] Days 1-7: Local instillation (infusion) of vehicle (3 μl volume), QID (Group 5), or test article (3 μl volume), QID (Groups 7, 8), or BID (Group 4)
[0230] Days 4-8: Exposure to drought stress (Groups 2-8)
[0231] Days 4-7: Topical instillation (instillation) of positive control (2 μl / eye); BID (Group 3)
[0232] Days 4-7: Topical instillation (instillation) of vehicle or test article (3 μl / eye); QID (Group 6)
[0233] Day 8: Quantification of corneal permeability; enucleation of eyes for future histological examination.
[0234] Induction of dry eye disease (DED)
[0235] Dry eye disease was induced in 6-8 week-old female C57BL / 6J mice by exposure to desiccation stress (DS). Animals were acclimated to 55% relative humidity (RH) for 1 week before the initiation of DS. DS was induced by subcutaneous injection of scopolamine hydrobromide (0.5 mg / 0.2 ml; S0929; Sigma-Aldrich, St. Louis, MO) four times daily (8:30 AM, 11:00 AM, 2:00 PM, and 4:30 PM) throughout the study, except for day 8, when a single injection was administered 1 hour before OGD staining. Mice were housed in cages with perforated screens on both sides to allow constant airflow from a fan. RH was tightly controlled at 20%, and temperature was maintained at 25°C in an environmental chamber. Animals were maintained on a 12-hour light-dark cycle. Control mice were maintained in a non-stressed (NS) environment at 55% RH without exposure to forced air ventilation, and the temperature was maintained at 25°C in a separate chamber.
[0236] Bilateral local drip
[0237] Vehicle (BSS) or AAGP TM The topical formulation was administered to both eyes via a positive displacement pipette in a volume of 3 μl / droplet four times daily (QID) at approximately 8:30 AM, 11:00 AM, 2:00 PM, and 4:30 PM for Groups 5, 7, and 8 daily on days 1 through 7, and for Group 6 on days 4 through 7. TM was administered in a similar manner, but only twice daily (BID) at approximately 8:30 AM and 4:30 PM on days 1 through 7. A positive control topical formulation (0.1% CsA-MiDROPS TM ) was administered twice daily (BID) at approximately 8:30 AM and 4:30 PM on days 4 through 7, in a volume of 2 μl / drop. For the procedure, fully awake animals were gently restrained by the scruff of the neck, and the eyelids were gently pulled away from the eyes with the index finger and thumb of the individual performing the procedure. After administration, the animals were held for an additional 60 seconds to allow for complete dispersion of the delivered agent.
[0238] Assessment of corneal barrier function using Oregon Green Dextran (OGD)
[0239] Corneal staining was measured by Oregon Green Dextran (OGD; ThermoFisher; D7172) permeation. For baseline assessment, 0.5 μL of OGD was instilled onto the cornea of both eyes. Mice were housed in the dark for 1 min, then washed with BSS and irrigated with isopropyl alcohol before imaging. Mice were briefly anesthetized with flurane. For corneal permeability assessment on day 8, 0.5 μL of OGD was instilled into the cornea of both eyes. The mice were immediately placed in a dark place for 1 min, then euthanized and immediately imaged. The eyes were washed with 2 mL of balanced saline solution (BSS, Alcon; 0065 0795-50). Excess fluid was blotted from around the eyes with filter paper. Digital images were acquired, and the mean fluorescence intensity within a 2-mm central corneal ring was measured using NIS Elements software (Nikon).
[0240] Tissue collection
[0241] At the end of the study on day 8, the left eye was enucleated with the intact conjunctiva, fixed in 10% formalin, and stored at room temperature, while the right eye was enucleated with the intact conjunctiva, suspended in optimal cutting temperature (OCT) compound, and snap-frozen in liquid nitrogen.
[0242] Data Processing
[0243] Data collection and analysis
[0244] Test article information, in-life data, and bioanalytical data were collected as digital files or on paper, as appropriate. All information was stored at the EyeCRO testing facility. Data and statistical analysis was performed using Graphpad Prism version 5.00.
[0245] Data and statistical analysis
[0246] Statistical analysis was performed with GraphPad Prism software (version 8.4.3) using the unpaired Student's t test. Only changes with a p value < 0.05 were considered statistically significant.
[0247] result
[0248] Corneal permeability was measured on day 8 to assess: 1) AAGP compared to vehicle control TM 2) the effectiveness of 5% AAGP TM 2% AAGP compared to TM 3) the effectiveness of AAGP before DED induction compared with treatment initiated at the time of DED induction TM and 4) the efficacy of twice-daily dosing compared with four times-daily dosing.
[0249] In this study, there was a significant induction of DED, as indicated by significantly greater corneal permeability in untreated DS-exposed mice compared to non-stressed mice (Figure 2A-B; ***, p=0.0006; Mann-Whitney t-test). Vehicle (BSS) treatment had no protective effect on corneal permeability (p>0.05 vs. DS control). AAGP TM Each of the treatment groups showed a decrease in mean corneal permeability compared to the untreated or vehicle-treated groups (Figures 3A-B; Table 10). TM Pretreatment with 2% AAGP, QID, or BID (pretreatment) was characterized by a significant decrease in mean corneal permeability compared to BSS controls (Figure 3A-B; Table 10; *, p ≤ 0.05; ** p ≤ 0.01; Mann-Whitney t-test). TM QID (pre-treated) or 5% AAGP TM QID (no pretreatment) administration was also associated with a decrease in mean corneal permeability compared with BSS, although the difference was not statistically significant. TM ) significantly reduced corneal permeability compared with the control DS group (***p≦0.001; Mann-Whitney t-test). [Table 10]
[0250] Table 11 shows the percent reduction in corneal permeability for each treatment group compared to BSS vehicle treatment. In this table, permeability values are normalized to background (no DS) levels, and the percent reduction indicates the degree to which elevated corneal permeability returns to normal (background) levels in each treatment group. 5% and 2% AAGP TM The QID administration (with pretreatment) was characterized by a 69.5% and 38.0% reduction in the increase in permeability observed in the BSS group. TM Infrequent (BID) administration of 5% AAGP (with pretreatment) was associated with a 54.8% reduction in permeability increase. TM QID administration resulted in a 39.4% reduction. TM inhibited the increase in corneal permeability by 91.3% (compared to the untreated DS5 group). [Table 11]
[0251] When comparing different treatment regimens, the following observations can be made:
[0252] 5% AAGP TM delivered four times daily for seven days, 2% of AAGP TM delivered four times daily for 7 days resulted in lower mean corneal permeability (group mean permeability of 585.5 and 683.1, respectively), but the difference was not statistically significant (Tables 9 and 12).
[0253] 5% AAGP with a 3-day pretreatment period TM QID administration is 5% AAGP without prior treatment. TM Compared to QID administration, it resulted in lower mean corneal permeability (group mean permeability of 585.5 and 678.8, respectively), but the difference was not statistically significant (Tables 9 and 12).
[0254] The mean corneal permeability was also 5% AAGP. TMcompared with mice given 5% AAGP twice daily for 7 days. TM The mean group permeabilities were lower in mice given 4 times daily for 7 days (mean group permeabilities of 585.5 and 631.1, respectively), but the differences were not statistically significant (Tables 9 and 12).
[0255] Mice exposed to DS but left untreated (naive) showed significant induction of DED compared to unstressed mice, as measured by OGD staining of corneal permeability. Administration of BSS vehicle did not affect the reduction in corneal permeability compared to untreated (naive) DS-exposed mice. 5% AAGP TM Administration of 2% AAGP twice daily or four times daily for 7 days significantly reduced DS-induced corneal permeability compared with vehicle administration. TM 4 times a day for 7 days, or 5% AAGP TM Administration of AAGP four times daily for four days decreased corneal permeability compared to vehicle, but the difference was not statistically significant. TM There was no statistical difference in mean corneal permeability across treatment groups.
[0256] In a mouse model of DED, 5% AAGP TM significantly reduced corneal permeability after topical administration twice daily or four times daily when treatment began 3 days before disease induction and continued for 4 days after disease induction. [Table 12] [Table 13] [Table 14] [Table 15] [Table 16] [Table 17] [Table 18] [Table 19]
[0257] While preferred embodiments have been described above and illustrated in the accompanying drawings, it will be apparent to those skilled in the art that modifications may be made without departing from the present disclosure, and such modifications are considered to be possible variations that fall within the scope of the present disclosure. [Prior art documents] [Non-patent literature]
[0258] [Non-Patent Document 1] The Ocular Surface, “The Definition and Classification of Dry Eye Disease: Report of the Definition and Classification Subcommittee of the International Dry Eye Workshop (2007),” 5). (2): 75-92 (2007)) [Non-patent document 2] Coursey et al., Once-Daily Cyclosporine-A-MiDROPSTM for Treatment of Dry Eye Disease Translational Vision Science & Technology 2018;7:1-13
Claims
1. General formula III: 【Chemical 1】 or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of the compound of general formula III, in the manufacture of a medicament for the treatment or prevention of dry eye disease in a subject in need thereof.
2. The use according to claim 1 , wherein the subject is a human subject.
3. 3. The use according to claim 1 or 2, wherein the use employs about 0.01 mg / mL to about 5 mg / mL of the compound represented by formula III.
4. 4. The use of claim 3, wherein the use employs about 1 mg / mL to about 5 mg / mL of the compound represented by formula III.
5. 5. The use according to any one of claims 1 to 4, wherein the medicament is for use at least once, twice, three or four times per day.
6. General formula III: 【Chemistry 2】 or a pharmaceutically acceptable base, acid addition salt, hydrate or solvate of the compound represented by general formula III, for use in the treatment or prevention of dry eye disease in a subject.
7. The therapeutic agent described in claim 6, wherein the subject is a human subject.
8. The therapeutic agent described in claim 6 or 7, wherein the use involves using about 0.01 mg / mL to about 5 mg / mL of the compound represented by formula III.
9. The therapeutic agent described in claim 8, wherein the use involves using about 1 mg / mL to about 5 mg / mL of the compound represented by formula III.
10. A therapeutic agent described in any one of claims 6 to 9, wherein the use is at least once, twice, three or four times per day.
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