Collagen Hydrolysate Composition for Reducing Post-Exercise Joint Pain
A composition of chondroitin sulfate and collagen hydrolysate, derived from a specific mix of collagen types, effectively reduces joint pain in both healthy and pathological conditions, addressing the limitations of current treatments.
Patent Information
- Application Number
- JP2024562784
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-05-04
- Filing Date
- 2023-05-03
- Publication Date
- 2025-06-09
- Estimated Expiration
- 2043-05-03
AI Technical Summary
Current treatments for joint pain, such as glucosamine sulfate and combinations of collagen and chondroitin sulfate, have limited effectiveness and safety concerns, particularly for healthy individuals experiencing acute joint pain after exercise.
A composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate, where the collagen hydrolysate is derived from a mixture of type I, type II, and type III collagen in a specific weight ratio, and has a hydroxyproline/hydroxylysine molar ratio of 8 to 15 and an average molecular weight of 1000 to 10,000 Da.
The composition achieves a high reduction in joint pain, both acute and chronic, in a wide range of subjects, including healthy individuals after exercise, with improved safety and efficacy compared to existing treatments.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a composition for use in ameliorating pain, such as joint pain. The present invention further relates to a method for preparing the composition. The composition is preferably administered as a dietary supplement. [Background technology]
[0002] Joint pain is a common condition that can occur in middle-aged or elderly people. Joint pain can have a variety of etiologies, but is most commonly associated with strenuous exercise, injury, or an underlying medical condition such as obesity or joint degenerative disease.
[0003] Joint pain is most commonly observed in joints that are subjected to heavy and frequent loads, primarily the knee, shoulder, and hip joints. These joints are heavily innervated by sensory and sympathetic nerves. Joint movement stimulates free nerve endings, resulting in the mechanosensation of pain. In arthritic joints, so-called "silent nociceptors" also become active, further contributing to the development of joint pain (McDougall et al. Arthritis Res. Ther. 8, 220, 2006).
[0004] Joint pain can be observed in healthy, physically active individuals. Joint pain can also be observed in pathological conditions. In healthy individuals, joint pain can typically be more severe for several days to weeks after strenuous or prolonged exercise, after which the pain may resolve spontaneously. This can be considered acute joint pain. (Transient) acute joint pain after strenuous or prolonged exercise events is thought to be caused by increased load transmission and limited ability for low-friction movement within the joint. In pathological conditions, joint pain is generally chronic (i.e., does not resolve spontaneously). For example, catabolic changes in the joint seen in osteoarthritis result in chronic pain and joint stiffness. As a result, associated inflammation within the joint can cause peripheral sensitization and joint pain, regardless of excessive load or exercise events. Because osteoarthritis cannot currently be cured, ongoing symptomatic pain treatment is considered necessary.
[0005] Joint pain is currently treated with conventional medications to reduce pain and inflammation. Conventional medications for joint pain include simple analgesics (e.g., acetaminophen) and nonsteroidal anti-inflammatory drugs. These conventional medications have several limitations. First, they may not regulate the underlying pathology of the disease, as required for effective and long-term pain relief. Second, these medications often cause adverse effects, such as gastrointestinal toxicity, cardiovascular problems, kidney and liver damage, and skin rashes (Zhang et al. Osteoarthr. Cartil., 18(4), 2010, 476-499, Sing et al. Arthritis Res. Ther., 2006, 8(5), R153). Third, the risk of adverse effects of these conventional medications makes them unsuitable for the treatment of healthy and physically active individuals (i.e., for non-therapeutic use), such as in cases of acute joint pain.
[0006] Based on the above, safer and more accessible alternatives are needed for the management of joint pain. One widely tested dietary supplement is glucosamine sulfate (GS). GS is a sulfated amino monosaccharide that serves as a substrate in the biosynthesis of cartilage proteoglycans. GS is thought to reduce joint pain through the inhibition of catabolic enzymes and pro-inflammatory cytokines. Although GS is currently used to treat joint pain, a systematic review has shown that GS may only have a small to moderate effect in reducing joint pain (Knapik et al. J. Spec. Oper. Med., Winter 2018;18(4):139-147).
[0007] Other dietary supplements being tested include combinations of active ingredients found in cartilage (and their derived products), including a combination of collagen and chondroitin sulfate. For example, Ma et al. (Journal of Functional Foods (2021), 78, 104376), U.S. Patent No. 2007293427, and U.S. Patent No. 2003091652 describe compositions containing type II collagen and collagen hydrolysate derived primarily from chondroitin sulfate for preventing osteoarthritis and related symptoms. JP 2009051833 A discloses a composition containing a combination of collagen, methylsulfonylmethane (MSM), glucosamine, and chondroitin sulfate for improving joint pain.
[0008] Currently, there remains an unmet need for compositions that more effectively and / or safely ameliorate joint pain. In particular, there currently remains an unmet need for compositions that more effectively and / or safely ameliorate joint pain in healthy individuals following exercise. The present invention aims to provide such compositions. Summary of the Invention [Problem to be solved by the invention]
[0009] The present inventors have discovered a method for obtaining a composition based on collagen hydrolysate and chondroitin sulfate, the use of which is highly effective in reducing joint pain. The composition of the present invention has been found to be superior to other compositions based on collagen hydrolysate and chondroitin sulfate in reducing joint pain.
[0010] The compositions of the present invention primarily contain a more appropriate amount of active ingredient to maximize pain relief than, for example, compositions intended to treat diseases broadly (i.e., osteoarthritis and related joint diseases), and are effective in alleviating pain in a broad range of subjects, including both chronic and acute pain, and / or both pathological and physically active subjects.
[0011] The present inventors have found that the compositions of the present invention, alone and especially in combination, have the characteristic of achieving surprisingly high reduction in joint pain. The present inventors have found that a composition in which the collagen hydrolysate is derived from a collagen-containing starting material containing a mixture of type I collagen and type II collagen achieves even more effective reduction in joint pain. In particular, collagen hydrolysates produced from collagen-containing starting materials containing a specific weight ratio of type I collagen, type II collagen, and type III collagen have improved pain-reducing effects compared to other compositions containing collagen hydrolysates and chondroitin sulfate. The compositions of the present invention were more effective in reducing pain than compositions containing mainly type I collagen or type II collagen, respectively.
[0012] The collagen hydrolysates of the present invention may be characterized by a hydroxyproline / hydroxylysine molar ratio (Hyp / Hyl ratio) of 8 to 15 (i.e., representing a mixture of peptides derived from appropriate amounts of different types of collagen) and / or an average molecular weight of more than 1,000 Da and less than 10,000 Da. The Hyp / Hyl ratio and / or molecular weight appear to be important characteristics for achieving high pain reduction. The inventors have further found that high joint pain reduction can be achieved with a composition comprising about 70% collagen hydrolysate and about 30% chondroitin sulfate.
[0013] In one aspect, the present invention provides a composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate, based on the total weight of the chondroitin sulfate and collagen hydrolysate, The collagen hydrolysate may be obtained from the hydrolysis of a collagen-containing material; The collagen-containing material contains 40 to 60% by weight of collagen based on the total weight of the collagen in the collagen-containing material. Preferably containing type I collagen, The collagen-containing material preferably contains 40 to 60% by weight of type II collagen relative to the total weight of collagen in the collagen-containing material, The present invention relates to a composition, wherein the collagen-containing material preferably contains 5 to 20% by weight of type III collagen relative to the total weight of collagen in the collagen-containing material.
[0014] In one aspect, the present invention provides a composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate, based on the total weight of the chondroitin sulfate and collagen hydrolysate, The collagen hydrolysate preferably contains 40 to 60 wt. % collagen derived from type I collagen relative to the total weight of collagen in the collagen hydrolysate; The collagen hydrolysate preferably contains 40 to 60 wt. % collagen derived from type II collagen relative to the total weight of collagen in the collagen hydrolysate; The present invention relates to a composition, wherein the collagen hydrolysate preferably further contains 5 to 20% by weight of collagen derived from type III collagen, based on the total weight of collagen in the collagen hydrolysate.
[0015] In one aspect, the invention relates to the use of the compositions disclosed herein in therapeutic treatments.
[0016] In one aspect, the invention relates to the use of the compositions disclosed herein for the non-therapeutic amelioration of pain, preferably joint pain, such as post-exercise pain.
[0017] In one aspect, the present invention relates to the use of the compositions disclosed herein for the therapeutic amelioration of pain, preferably joint pain, such as after exercise.
[0018] In one aspect, the invention relates to a method of treating pain, preferably joint pain, such as after exercise, in a subject, comprising administering to the subject a composition disclosed herein.
[0019] In one aspect, the present invention relates to the use of a composition disclosed herein for the manufacture of a medicament for ameliorating pain, preferably joint pain, such as after exercise. [Means for solving the problem]
[0020] (Embodiments of the composition of the present invention) In one embodiment, the present invention relates to a composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate, based on the total weight of chondroitin sulfate and collagen hydrolysate.
[0021] The chondroitin sulfate may be present in the composition in an amount of at least 5%, at least 10%, at least 15%, at least 20%, at least 25%, at least 30%, at least 35%, at least 40%, at least 45%, or at least 50% by weight, based on the total weight of the chondroitin sulfate and collagen hydrolysate. The chondroitin sulfate may be present in the composition in an amount of no more than 50%, no more than 45%, no more than 40%, no more than 35%, no more than 30%, no more than 25%, no more than 20%, no more than 15%, no more than 10%, or no more than 5% by weight, based on the total weight of the chondroitin sulfate and collagen hydrolysate.
[0022] In one embodiment, the chondroitin sulfate and / or collagen hydrolysate disclosed herein is derived from a collagen-containing material, preferably a collagen-containing material that has been subjected to (enzymatic) hydrolysis. In one embodiment, the chondroitin sulfate and / or collagen hydrolysate are derived from the same collagen-containing material, which is preferably subjected to (enzymatic) hydrolysis.
[0023] In one embodiment, the collagen hydrolysate disclosed herein comprises 1-25 wt. % (e.g., 2-20 wt. %, or 4-15 wt. %, or 5-10 wt. %) collagen derived from type III collagen, based on the total weight of collagen in the collagen hydrolysate.
[0024] (collagen-containing material) The collagen-containing material disclosed herein is preferably composed of one or more (animal) collagen-containing tissues, although it is not excluded that the collagen-containing material is (further) prepared by incorporating purified collagen products such as (commercially available) collagen powders.
[0025] A preferred amount of collagen subtypes (e.g., type I collagen, type II collagen, type III collagen) in a collagen-containing material can be achieved by selecting and combining appropriate tissues or collagen-containing materials. Those skilled in the art will recognize that the relative amounts of collagen subtypes depend on the tissue and its origin (e.g., animal species, animal age). The amount and type of collagen are known in the art or can be determined using textbooks and other common methods, such as ELISA (or similar antibody-based) assays. It is preferable to use such qualitative and quantitative methods to control and determine the actual collagen content and collagen subtypes in the collagen-containing material used in the present invention. Depending on the results, those skilled in the art can adjust the method of processing the collagen-containing material and / or the method of combining two or more collagen-containing materials.
[0026] In one embodiment, the collagen-containing material is derived from (animal) tissue and the relative amounts of collagen subtypes are naturally occurring within a desired range, preferably 40-60% by weight of type I collagen and 40-60% by weight of type II collagen relative to the total weight of collagen in the collagen-containing material.
[0027] In one embodiment, the collagen-containing material is a combination of two or more (animal) tissues, e.g., differing in the relative amounts of collagen subtypes (e.g., type I collagen, type II collagen, type III collagen). For example, a collagen-containing material containing 50% by weight of type I collagen and 50% by weight of type II collagen, based on the total weight of collagen in the collagen-containing material, can be obtained by combining a first collagen-containing material containing X% by weight of type I collagen (but lacking type II collagen) with a second collagen-containing material containing X% by weight of type II collagen (but lacking type I collagen), in a 1:1 weight ratio. For collagen-containing materials containing a mixture of collagen subtypes (e.g., both type I and type II), appropriate weighting calculations can be performed based on the required amounts of the first collagen-containing material and the additional collagen-containing material.
[0028] Depending on the type of (animal) tissue, selected areas of the tissue may be more suitable for achieving the composition of the collagen-containing material of the present invention. For example, the sternum is known to contain both bone tissue and cartilage tissue. By harvesting appropriate areas or layers of the tissue, the relative amounts of type I collagen (i.e., relatively high in bone tissue) and type II collagen (i.e., relatively high in cartilage tissue) can be adjusted. Such processing can also achieve improved purity of specific types of collagen.
[0029] There are various suitable methods for quantitatively measuring the content of total collagen and collagen subtypes in (tissue) samples. The Sirius Red-based collagen assay is a widely used assay for collagen quantification and is based on the precipitation of soluble or solubilized collagen. Sirius Red is known to bind to fibrillar collagen. Sirius Red-based collagen assays are commercially available (e.g., Chondrex Inc. Sirius Red Total Collagen Detection Assay Kit, Biocolor Sircol assay, QuickZyme Soluble Collagen assay). In hydrolyzed samples, collagen content is preferably measured using a hydroxyproline-based collagen assay, which is also commercially available (e.g., Chondrex Inc. Hydroxyproline Assay Kit, QuickZyme Total Collagen assay). The hydroxyproline assay is suitable for determining the total collagen content of both native and denatured collagen.
[0030] A preferred method for quantifying collagen subtypes in a sample preferably involves detecting collagen using a specific antibody, followed by quantifying the amount of bound antibody. The amount of collagen can be calculated using a standard curve with known amounts of collagen. Collagen type-specific antibodies are supplied by companies such as Chondrix Inc., R&D Systems, and Abcam. Enzyme-linked immunosorbent assay (ELISA)-based methods are generally considered highly accurate in quantifying antibody levels in a given sample. ELISA is one of the most commonly used biochemical assays, and those skilled in the art can establish appropriate ELISA protocols (uniquely) based on the protein and / or sample of interest. Commercially available ELISA kits are also available for determining the amount of collagen subtypes (e.g., type I collagen, type II collagen, type III collagen) in a sample. For example, Chondrex Inc. offers an ELISA kit for measuring bovine type I collagen (catalog number 6014), porcine (catalog number 6015), and multiple species of type II collagen (catalog number 6018).
[0031] A preferred method for determining collagen subtypes in hydrolyzed samples is via sequencing of collagen subtype-specific amino acid sequences by liquid chromatography with tandem mass spectrometry (LC-MS / MS), for example, based on the method of Piestansky et al. (Pharm. Biomed. Anal. 2020 Sep 10;189:113449). A preferred protocol is the following protocol disclosed by Ma et al. (Journal of Functional Foods (2021), 78, 104376):
[0032] Samples were chromatographed using a TripleTOF 5600 system (AB SCIEX Corporation Co., Ltd., USA) at 40 °C using a C18 column (2.1 mm × 100 mm, 1.7 μm). Mobile phase A was 0.1% formic acid in acetonitrile, and mobile phase B was 0.1% formic acid in water. The flow rate and injection volume were 0.25 mL / min and 10 μL, respectively. The elution conditions were set as follows: 0–39 min, 5–80% A; 42 min, 80% A; 42.5 min, 80–5% A; and 46 min, 5% A. The mass spectrometry scan range was 350–1500 m / z in positive ion response mode. Data were searched using ProteinPlot™ (version 5.0.2.0) software using the uniprot collagen database. The false discovery rate (FDR) was set to FDR ≤ 0.01.
[0033] In a preferred embodiment, the present invention provides a composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate, based on the total weight of the chondroitin sulfate and the collagen hydrolysate, The collagen hydrolysate may be obtained from the hydrolysis of a collagen-containing material; The collagen-containing material contains 40 to 60% by weight of collagen based on the total weight of the collagen in the collagen-containing material. preferably containing type I collagen, and / or the collagen-containing material preferably contains 40 to 60% by weight of type II collagen relative to the total weight of collagen in the collagen-containing material, and / or The present invention relates to a composition, wherein the collagen-containing material preferably contains 5 to 20% by weight of type III collagen relative to the total weight of collagen in the collagen-containing material.
[0034] In one embodiment, the present invention provides a composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate, the collagen hydrolysate preferably contains 40 to 60% by weight of type I collagen relative to the total weight of collagen in the collagen hydrolysate, and / or the collagen hydrolysate preferably contains 40 to 60% by weight of type II collagen relative to the total weight of collagen in the collagen hydrolysate, and / or The present invention relates to a composition, wherein the collagen hydrolysate preferably further contains 5 to 20% by weight of type III collagen relative to the total weight of collagen in the collagen hydrolysate.
[0035] Hyaluronic acid is a component of cartilage that has been suggested for the treatment of joint pain (Migliore et al. Rheumatol. Ther. 2021 Dec;8(4):1617-1636). Because hyaluronic acid is a natural component of cartilage tissue, compositions based on collagen hydrolysate (and / or chondroitin sulfate) generally also contain significant amounts of hyaluronic acid (typically at least 0.5% by weight). The presence of hyaluronic acid may or may not be desirable (contamination). Unexpectedly, the inventors have found that compositions containing less than 0.5% by weight of hyaluronic acid provide improved reduction in joint pain compared to compositions containing 0.5% by weight or more of hyaluronic acid. This means that it may be preferable to have a relatively small amount of hyaluronic acid in the composition and / or a high weight ratio of chondroitin sulfate:hyaluronic acid.
[0036] In one embodiment, the compositions disclosed herein comprise less than 2 wt.% hyaluronic acid, preferably less than 1 wt.% hyaluronic acid, more preferably less than 0.5 wt.% hyaluronic acid, and even more preferably less than 0.1 wt.% hyaluronic acid, based on the weight of the composition. For example, the compositions disclosed herein may comprise hyaluronic acid in an amount of 0-1 wt.%, or 0-0.5 wt.%, or 0-0.1 wt.%, or 0-0.05 wt.%, or 0-0.01 wt.%, based on the weight of the composition.
[0037] In one embodiment, the weight ratio of chondroitin sulfate to hyaluronic acid in the compositions disclosed herein is between 10,000:1 and 10:1, preferably between 1,000:1 and 100:1. The weight ratio of chondroitin sulfate to hyaluronic acid in the compositions disclosed herein can be at least 10:1, or at least 100:1, or at least 1,000:1, or at least 10,000:1. Additionally, or alternatively, the weight ratio of chondroitin sulfate to hyaluronic acid in the compositions disclosed herein can be 10,000:1 or less, or 1,000:1 or less, or 100:1 or less, or 10:1 or less.
[0038] The "hyaluronic acid" disclosed herein preferably has a molecular weight of 4,000 to 10,000 kDa, preferably 5,000 to 9,000 kDa, and more preferably 6,000 to 8,000 kDa, and the molecular weight is preferably an average molecular weight.
[0039] (Embodiments of Chondroitin Sulfate of the Present Invention) As used herein, the term "chondroitin sulfate" (i.e., chondroitin sulfate) refers to a negatively charged polymeric glycosaminoglycan composed of alternating glycuronic acid and N-acetylhexosamine residues connected by (β1-3 hexuronidic and β1-4-N-acetylhexosaminidic bonds). The term "chondroitin sulfate" as used herein encompasses fractions with little or no sulfation. The term "chondroitin sulfate" may be used interchangeably with the term "chondroitin" herein. A preferred method for quantifying chondroitin sulfate in a material involves enzymatic hydrolysis of chondroitin sulfate followed by high performance liquid chromatography (HPLC). Chondroitin sulfate may be treated, for example, with either chondroitinase ABC enzyme or chondroitinase AC enzyme to selectively hydrolyze chondroitin sulfate into unsaturated disaccharide units. Chondroitinase ABC hydrolyzes both chondroitin sulfate and dermatan sulfate (sometimes called "chondroitin sulfate B"), while chondroitinase AC is specific for chondroitin sulfate. The resulting unsaturated disaccharide units can then be separated and quantified by ion-exchange or reverse-phase chromatography with either pre-column derivatization with ultraviolet, conductivity, or fluorescence detection (Ji et al. Journal of AOAC INTERNATIONAL, Volume 90, Issue 3, 1 May 2007, Pages 659-669). A preferred protocol is disclosed by Ji et al. (Journal of AOAC INTERNATIONAL, Volume 90, Issue 3, 1 May 2007, Pages 659-669).
[0040] The chondroitin sulfate disclosed herein may have an average molecular weight of at least 1 kDa, or at least 2.5 kDa, or at least 5 kDa, or at least 7.5 kDa, or at least 10 kDa, or at least 12.5 kDa, or at least 15 kDa, or at least 17.5 kDa, or at least 20 kDa, or at least 25 kDa, or at least 30 kDa. Additionally or alternatively, the chondroitin sulfate disclosed herein may have an average molecular weight of 40 kDa or less, or 35 kDa or less, or 30 kDa or less, or 25 kDa or less, or 20 kDa or less, or 17.5 kDa or less, or 15 kDa or less, or 12.5 kDa or less, or 10 kDa or less.
[0041] In a preferred embodiment, the chondroitin sulfate disclosed herein has an average molecular weight of 10 to 35 kDa, preferably 15 to 30 kDa, and more preferably 17 to 27 kDa.
[0042] The present inventors have found that the molecular weight of chondroitin sulfate can determine its biological activity with respect to reducing pain, particularly in combination with collagen hydrolysate.
[0043] In one embodiment, a composition comprising chondroitin sulfate having an average molecular weight of 15 to 30 kDa provides even greater pain reduction compared to compositions comprising chondroitin sulfate having an average molecular weight of less than 15 kDa or more than 30 kDa.
[0044] In one embodiment, a composition comprising chondroitin sulfate having an average molecular weight of 17 to 27 kDa provides even greater pain reduction compared to compositions comprising chondroitin sulfate having an average molecular weight of less than 17 kDa or more than 27 kDa.
[0045] Suitable and preferred methods for measuring the molecular weight of chondroitin sulfate include, for example, gel permeation chromatography (GPC) or high-performance size exclusion chromatography (HP-SEC) after treating a sample containing chondroitin sulfate with a sodium acetate-ethanol solution to precipitate glycosaminoglycans and obtain a chondroitin sulfate-rich fraction (pellet). Additionally or alternatively, a preferred method for determining the molecular weight of chondroitin sulfate is by GPC, as described by Vazquez et al. (Polymers (Basel). 2020 Nov 6; 12(11): 2613).
[0046] (Embodiments of the collagen hydrolysate of the present invention) As used herein, the term "collagen hydrolysate" refers to a mixture of short chains of amino acids derived from a collagen-containing material having native (full-length) collagen, preferably obtained through a hydrolysis process including enzymatic hydrolysis (also referred to as enzymatic hydrolysis treatment). The term "collagen hydrolysate" herein may include collagen that has been subjected to hydrolysis or partial hydrolysis. The term "collagen hydrolysate" may be used interchangeably and synonymously with the terms "collagen hydrolysate," "hydrolyzed collagen," or "collagen peptides." The term "collagen hydrolysate" herein may be produced from a collagen-containing material in a single-step process or via an intermediate gelatin stage, in which, for example, type A and / or type B gelatin (e.g., a mixture of type A gelatin and type B gelatin) is preferably used. The term "collagen hydrolysate" herein may include hydrolyzed gelatin obtained by hydrolysis of gelatin (obtained from collagen). The terms "collagen hydrolysate," "gelatin hydrolysate," "hydrolyzed gelatin," and "hydrolysed gelatin" may be used interchangeably and synonymously in this disclosure.
[0047] In one embodiment, the collagen hydrolysate disclosed herein has an average molecular weight of 500 to 10,000 Da, e.g., 600 to 9,000 Da, or 700 to 8,000 Da, or 800 to 7,000 Da, or 900 to 6,000 Da, or 1,000 to 7,000 Da, or 1,100 to 6,000 Da, or 1,200 to 5,000 Da, or 1,300 to 6,000 Da, or 1,400 to 5,000 Da, or 1,500 to 4,500 Da.
[0048] The average molecular weights disclosed herein are preferably weight average molecular weights.
[0049] Pain reduction appears to be greatest when the collagen hydrolysate has an average molecular weight of more than 1000 Da but less than 10,000 Da, with this effect being most pronounced for collagen hydrolysates having an average molecular weight of more than 1000 Da but less than 5000 Da.
[0050] In one embodiment, the collagen hydrolysate disclosed herein has an average molecular weight of 1,000 to 10,000 Da.
[0051] In one embodiment, the collagen hydrolysate disclosed herein has an average molecular weight of 1000 to 5000 Da, preferably 1100 Da to 5000 Da, or 1200 to 4500 Da, or 1300 to 4000 Da, or 1400 to 3500 Da, or 1500 to 3000 Da.
[0052] A suitable and preferred method for measuring the molecular weight of collagen hydrolysates is, for example, by high-performance size-exclusion chromatography (HP-SEC) after treating a sample containing collagen hydrolysate with a sodium acetate-ethanol solution to precipitate protein-poor fractions (including glycosaminoglycans) and using the protein-rich fraction (supernatant) for HP-SEC of the collagen hydrolysate. Additionally or alternatively, a preferred method for determining the molecular weight of collagen hydrolysates is according to Edgar et al. (Sci.Rep.2018 Jul 11;8(1):10474).
[0053] In one embodiment, the collagen hydrolysate disclosed herein comprises hydroxyproline in an amount of 1-30% by weight, preferably 2-20% by weight, more preferably 5-15% by weight, and most preferably 8-12% by weight, all based on the total weight of amino acids in the collagen hydrolysate.
[0054] In one embodiment, the collagen hydrolysate disclosed herein comprises hydroxylysine in an amount of 0.1 to 5 wt. %, preferably 0.2 to 2 wt. %, more preferably 0.5 to 1.25 wt. %, and most preferably 0.7 to 1 wt. %, all based on the total weight of amino acids in the collagen hydrolysate.
[0055] In one embodiment, the collagen hydrolysate disclosed herein comprises hydroxyproline in an amount of 10-200 amino acids (i.e., AA) per 1000 AA in the collagen hydrolysate, preferably 50-100 AA per 1000 AA in the collagen hydrolysate.
[0056] In one embodiment, the collagen hydrolysate disclosed herein comprises hydroxylysine in an amount of 1-20 AA per 1000 AA in the collagen hydrolysate, preferably 2-10 AA per 1000 AA in the collagen hydrolysate.
[0057] In one embodiment, the collagen hydrolysate disclosed herein comprises hydroxyproline and hydroxylysine in a molar ratio (hydroxyproline:hydroxylysine) of 1 to 30 (e.g., 5 to 19, or 6 to 18, or 7 to 17, or 8 to 16, or 9 to 15, or 10 to 14, or 11 to 13), preferably 5 to 20, and more preferably greater than 8 and less than 15.
[0058] Collagen subtypes differ significantly in terms of the hydroxyproline / hydroxylysine molar ratio, which can be used to identify them. The hydroxyproline / hydroxylysine molar ratio in a (hydrolyzed) sample can be correlated with the collagen subtype in the collagen-containing starting material (Ignat'eva et al. Journal of Analytical Chemistry, 2007, Vol. 62, No. 1, pp. 51-57), Blumenkrantz et al. Clinical Biochemistr. Volume 13, Issue 4, August 1980, Pages 177-183). In general: A hydroxyproline / hydroxylysine ratio of <7.5 (e.g., about 5) indicates predominantly type II collagen (in the collagen-containing starting material); A hydroxyproline / hydroxylysine ratio >10 (e.g., 10-20) indicates predominantly type I collagen (in the collagen-containing starting material); A hydroxyproline / hydroxylysine ratio >15 (e.g., 15-25) indicates predominantly type III collagen (in the collagen-containing starting material); A hydroxyproline / hydroxylysine ratio greater than 8 and less than 15 indicates a mixture of collagen types I, II and III (in the collagen-containing starting material).
[0059] In the present disclosure, the above correlation between the hydroxyproline / hydroxylysine ratio and collagen subtypes is used.
[0060] In one embodiment, a hydroxyproline / hydroxylysine molar ratio of greater than 8 and less than 15 indicates that 40-60 wt. % of the collagen is derived from type I collagen, 40-60 wt. % of the collagen is derived from type I collagen, and more preferably 40-60 wt. % of the collagen is derived from type II collagen, where wt. % is calculated based on the total weight of collagen (e.g., in the collagen-containing material to be subjected to hydrolysis).
[0061] A preferred method for determining the molar ratio of hydroxyproline to hydroxylysine is by reverse-phase high performance liquid chromatography and mass spectrometry, as described, for example, by Langrock et al. (Chromatogr. B Analyt. Technol. Biomed. Life Sci. 2007 Mar. 1;847(2):282-8). Hydroxyproline can also be measured by the hydroxyproline-based collagen assay disclosed herein. A preferred method for determining the molar ratio of hydroxyproline to hydroxylysine is according to the publication by Blumenkrantz et al. (Clinical Biochemistr. Volume 13, Issue 4, August 1980, Pages 177-183).
[0062] (Method of preparing the composition) In one embodiment, one or more components of the composition (eg, collagen hydrolysate, chondroitin sulfate) are obtained by subjecting a collagen-containing material to hydrolysis, preferably enzymatic hydrolysis.
[0063] The enzymatic hydrolysis disclosed herein preferably comprises subjecting the collagen-containing material to one or more enzymes selected from the group consisting of serine proteases, alkaline proteases, neutral proteases, flavor proteases, complex proteases, thiol proteases, bromelain, metalloproteases, aspartame proteases, carboxypeptidases, pepsin, chymotrypsin, trypsin, cathepsin K, chymotrypsin, papain, and subtilisin.
[0064] In one embodiment, the collagen-containing materials disclosed herein are derived from tissues comprising cartilage. In one embodiment, the collagen-containing materials disclosed herein are derived from tissues comprising bone. In one embodiment, the collagen-containing materials disclosed herein are derived from tissues comprising bone and cartilage.
[0065] The "cartilage" disclosed herein is preferably hyaline cartilage.
[0066] As used herein, material Y is said to be "derived from" material X if material Y comprises material X. Additionally, or alternatively, as used herein, material Y is said to be "derived from" material X if material Y comprises material X in a processed form, where the processing can be one or more of grinding, milling, heat treating, hydrolyzing, and filtering. In the present disclosure, the term "derived from" can be used interchangeably and synonymously with the terms "obtained from" or "originating from."
[0067] The collagen herein may be one or more selected from the group consisting of type I collagen, type II collagen, type III collagen, type IV collagen, type V collagen, and type X collagen.
[0068] Preferably, the collagen hydrolysate disclosed herein is derived from one or more types of collagen selected from the group consisting of type I collagen, type II collagen, type III collagen, and type VI collagen. Additionally or alternatively, the collagen hydrolysate disclosed herein is preferably derived from animal raw materials containing different collagen subtypes, for example, two or more of type I collagen, type II collagen, type III collagen, and type IV collagen. Additionally or alternatively, the collagen hydrolysate disclosed herein can be a mixture of two or more of type I collagen, type II collagen, type III collagen, and type IV collagen.
[0069] The hydrolyzed collagen disclosed herein is preferably derived from type I collagen, type II collagen, type III collagen, and type IV collagen.
[0070] The collagen disclosed herein can be derived from any one or more animals or species of animals, such as bovine species, porcine species, chicken and fish species.
[0071] In one embodiment, the collagen is derived from bovine. In one embodiment, the collagen taught herein is derived from porcine. In one embodiment, the collagen taught herein is derived from fish. In one embodiment, the collagen taught herein is derived from chicken.
[0072] In various embodiments, the collagen is a mixture of collagens from different sources, such as collagens from multiple animal species and / or collagens from different tissues. For example, the collagen disclosed herein can be a mixture of two or more collagens selected from the group consisting of fish collagen, porcine collagen, chicken collagen, and bovine collagen.
[0073] In one embodiment, the collagen disclosed herein is derived from an animal other than birds, preferably other than chickens. In one embodiment, the chondroitin sulfate disclosed herein is derived from tissue obtained from an animal other than birds, preferably other than chickens. In one embodiment, the collagen hydrolysate disclosed herein is derived from tissue obtained from an animal other than birds, preferably other than chickens. In one embodiment, the collagen-containing material disclosed herein does not include tissue obtained from birds, and preferably does not include tissue obtained from chickens.
[0074] The collagen-containing materials disclosed herein may be derived from one or more tissues selected from the group consisting of skin, scales, antlers, protuberances (e.g., humps), horns, head, brain, neck, ears, eyes, nose, tongue, lips, mouth, esophagus, trachea, sternum, larynx, bronchi, limbs, feet, toes, palms, nails, bones, cartilage, bone marrow, joints, membranes, hind legs, ligaments, tendons, ribs, diaphragm, muscles, skeletal muscles, smooth muscles, intestines, blood vessels, bladder, stomach, aorta, heart, liver, kidneys, chest, lungs, spleen, pancreas, eggs, sperm, testes, ovaries, nerves, gallbladder, and abdomen. The term "skin" disclosed herein encompasses "hide," i.e., the outer covering of a large animal, such as a cattle herd, or any other large animal. The terms "skin" and "hide" may be used interchangeably herein and may refer to the outer covering of an animal, regardless of size.
[0075] In one embodiment, the collagen-containing material is derived from the trachea, sternum, or a mixture thereof.
[0076] In one embodiment, the collagen-containing material contains 20 to 80 wt % (e.g., 25 to 70 wt %, or 30 to 65 wt %, or 35 to 60 wt %, or 40 to 55 wt %) of type I collagen and 20 to 80 wt % (e.g., 25 to 70 wt %, or 30 to 65 wt %, or 35 to 60 wt %, or 40 to 55 wt %) of type II collagen, based on the total weight of collagen in the collagen-containing material.
[0077] In one embodiment, the collagen-containing material comprises 1 to 25 wt. %, for example, 2 to 20 wt. %, or 3 to 15 wt. %, or 4 to 10 wt. % collagen derived from type III collagen, based on the total weight of collagen in the collagen-containing material.
[0078] In one embodiment, the collagen-containing material contains 5 to 20% by weight of type III collagen based on the total weight of collagen in the collagen-containing material.
[0079] In one embodiment, the collagen-containing material contains 0.5 to 20 wt %, preferably 1 to 10 wt %, and more preferably 2 to 5 wt % of type IV collagen relative to the total weight of collagen in the collagen-containing material.
[0080] In a preferred embodiment, the present invention provides a composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate, based on the total weight of the chondroitin sulfate and the collagen hydrolysate, the collagen hydrolysate preferably contains 40 to 60% by weight of collagen derived from type I collagen, relative to the total weight of collagen in the collagen hydrolysate; and / or the collagen hydrolysate preferably contains 40 to 60 wt. % collagen derived from type II collagen, relative to the total weight of collagen in the collagen hydrolysate; and / or The present invention relates to a composition, wherein the collagen hydrolysate preferably contains 5 to 20% by weight of collagen derived from type III collagen, based on the total weight of collagen in the collagen hydrolysate.
[0081] The present invention also relates to a process for preparing the compositions of the invention by hydrolysis of collagen-containing material, which preferably comprises one or more of the following steps: a) comminution of the collagen-containing material, preferably by grinding; b) enzymatic hydrolysis; c) a first separation step; d) enzyme inactivation and heat treatment; e) a second separation step; f) Concentration of the mixture; g) Drying.
[0082] In one embodiment, the enzymatic hydrolysis (step b) is carried out at a pH of 5 to 8, preferably at a pH of 6 to 7. In one embodiment, the enzymatic hydrolysis (step b) is carried out at a temperature of 55 to 70° C., preferably at a temperature of 60 to 65° C. In one embodiment, the enzymatic hydrolysis (step b) is carried out for 4 to 7 hours, preferably for 5 to 6 hours.
[0083] In one embodiment, the first separation step (step c) comprises subjecting the hydrolysate (obtained in step c) to a temperature of 60-90° C., preferably 70-80° C. In one embodiment, the second separation step (step e) comprises subjecting the hydrolyzed collagen-containing material to a temperature of 75-99° C., preferably 85-99° C. In one embodiment, the second separation step (step e) comprises subjecting the hydrolyzed collagen-containing material to filtration.
[0084] The filtration herein (in step e) is preferably by: 2~2000 (l / min*m at 1 bar) 2 ), preferably 10 to 1000 (l / min*m at 1 bar 2 ), more preferably 20 to 500 (l / min*m at 1 bar 2 ) using one or more filter sheets with a water permeability of 1000 psi or less; and / or Use of one or more filter sheets with a resolution of 0.02 to 100 (mK), preferably 0.1 to 50 (mK), and more preferably 0.2 to 10 (mK); and / or 100~6000(g / m 2 ), preferably 500 to 4000 (g / m 2 ), more preferably 1000 to 2000 (g / m 2 ) using one or more filter sheets having a weight per unit area of 1000 .mu.m.
[0085] The one or more separation steps disclosed herein can determine the weight percentage, weight ratio, or characteristics (e.g., molecular weight, dispersity) of collagen hydrolysate, chondroitin sulfate, and / or hyaluronic acid in the composition. Additionally, or alternatively, the one or more separation steps disclosed herein (i.e., step c and / or step e) can determine the sterility of the composition. In particular, it has been found that a desired amount of chondroitin sulfate and / or hyaluronic acid in the composition can be achieved by one or more separation steps disclosed herein.
[0086] In a preferred embodiment, the desired amount of hyaluronic acid in the composition and / or the desired weight ratio of chondroitin sulfate to hyaluronic acid is achieved by performing a second separation step (i.e., step e): between 65 and 99°C, preferably between 75 and 99°C, more preferably between 85 and 99°C; and / or 2~2000 (l / min*m at 1 bar) 2 ), preferably 10 to 1000 (l / min*m at 1 bar 2 ), more preferably 20 to 500 (l / min*m at 1 bar 2 ) using one or more filter sheets with a water permeability of 1000 psi or less; and / or Use of one or more filter sheets with a resolution of 0.02 to 100 (mK), preferably 0.1 to 50 (mK), and more preferably 0.2 to 10 (mK); and / or 100~6000(g / m 2 ), preferably 500 to 4000 (g / m 2 ), more preferably 1000 to 2000 (g / m 2 ) using one or more filter sheets having a weight per unit area of 1000 .mu.m.
[0087] Using one or more of the above steps of step e), a composition containing a hyaluronic acid level of less than 0.5% by weight is achieved.
[0088] (Therapeutic) Uses of the Composition As part of the present invention, collagen hydrolysate and chondroitin sulfate may each act independently or in combination as an active ingredient in achieving a (therapeutic) effect, such as amelioration of joint pain, meaning that they induce a biological response within the cell and / or the body.
[0089] In one embodiment, the compositions disclosed herein are for use in the amelioration of pain, preferably joint pain. In one embodiment, the compositions disclosed herein are for use in the therapeutic amelioration of pain, preferably joint pain. In one embodiment, the compositions disclosed herein are for use in the non-therapeutic amelioration of pain, preferably joint pain.
[0090] In one embodiment, the compositions disclosed herein are for use in the amelioration of pain, preferably post-exercise pain. In one embodiment, the compositions disclosed herein are for use in the therapeutic amelioration of pain, preferably the therapeutic amelioration of post-exercise pain. In one embodiment, the compositions disclosed herein are for use in the non-therapeutic amelioration of pain, preferably the non-therapeutic amelioration of post-exercise pain.
[0091] In one embodiment, the exercise disclosed herein is exercise overload. In one embodiment, the exercise disclosed herein is strength training. In one embodiment, the exercise disclosed herein is endurance training. In one embodiment, the exercise disclosed herein is a sport.
[0092] In one embodiment, the present invention relates to a method of treating pain in a subject, preferably a method of treating joint pain in a subject, more preferably a method of treating post-exercise joint pain in a subject, comprising administering to the subject a composition disclosed herein.
[0093] The method for treating pain may include one or more features described herein in accordance with the therapeutic uses of the compositions disclosed herein, including the embodiments of the compositions, the formulations of the compositions, the timing of administration of the compositions, and the administration of the compositions described for the therapeutic uses of the compositions.
[0094] In one embodiment, the present invention relates to the use of a composition disclosed herein for the manufacture of a medicament for treating pain.
[0095] The use of the compositions disclosed herein for the manufacture of a medicament may include one or more features described herein for the therapeutic uses of the compositions disclosed herein, including the embodiments of the compositions, the formulations of the compositions, the timing of administration of the compositions, and the administration of the compositions described for the therapeutic uses of the compositions.
[0096] As used herein, "pain" (e.g., joint pain, post-exercise pain) preferably means any level of pain that can be measured using a (validated) pain scale, preferably by one or more of the VAS scale, NPRS scale, and WOMAC scale. Additionally or alternatively, "pain" can be pain (any level) established by a specialist physician (e.g., joint pain, post-exercise pain).
[0097] Visual analog scale (VAS) scores are a measure of acute and chronic pain. VAS scores are recorded by subjects manually marking a 100 mm line representing a continuum between "no pain" and "worst pain" (Breivik et al. Br. J. Anaesth. 2008 Jul;101(1):17-24). In one embodiment, "pain" is defined by a VAS score of at least 1 mm, preferably at least 10 mm, more preferably at least 40 mm, and even more preferably at least 70 mm. In one embodiment, "joint pain" is defined by a VAS score of at least 1 mm, preferably at least 10 mm, more preferably at least 40 mm, and even more preferably at least 70 mm when the subject reports pain specifically experienced in one or more joints. In one embodiment, "post-exercise joint pain" is defined by a VAS score of at least 1 mm, preferably at least 10 mm, more preferably at least 40 mm, and even more preferably at least 70 mm when a subject reports pain clearly experienced in one or more joints after exercise (e.g., within 24 hours, 48 hours, or 72 hours after exercise).
[0098] In one embodiment, as used herein, "ameliorating" pain or "amelioration" of pain refers to a decrease in the VAS score of at least 1 mm, preferably at least 10 mm, and more preferably at least 20 mm (e.g., when comparing the VAS score to a control not administered the composition of the invention and / or when comparing the VAS score before and after treatment with the composition of the invention).
[0099] The Numeric Pain Rating Scale (NPRS) is a measure of acute and chronic pain in which subjects rate pain using an 11-point numerical scale ranging from 0 (no pain) to 10 (worst pain imaginable) (Hwaker et al. Arthritis Care Res. (Hoboken). 2011 Nov;63 Suppl.11:S240-52). In one embodiment, "pain" is defined by an NPRS score of at least 1, preferably at least 3, more preferably at least 5, and even more preferably at least 7. In one embodiment, "articular pain" is defined by an NPRS score of at least 1, preferably at least 3, more preferably at least 5, and even more preferably at least 7, when the subject reports pain specifically experienced in one or more joints. In one embodiment, "post-exercise joint pain" is defined by an NPRS score of at least 1, preferably at least 3, more preferably at least 5, and even more preferably at least 7 when a subject reports pain clearly experienced in one or more joints after exercise (e.g., within 24 hours, 48 hours, or 72 hours after exercise).
[0100] In one embodiment, "improving" pain or "improving" pain herein refers to a decrease in NPRS score of at least 1, preferably at least 2, and more preferably at least 3 (e.g., when comparing NPRS scores to a control not administered the composition of the invention and / or when comparing NPRS scores before and after treatment with the composition of the invention).
[0101] The Western Ontario and McMaster Universities osteoarthritis index (WOMAC) score is a measure of osteoarthritis severity using subscale scores for joint pain, stiffness, and physical function (Bellamy et al. J. Rheumatol. 1988 Dec;15(12):1833-40). The WOMAC measures five items for pain (score range 0-20), two for stiffness (score range 0-8), and 17 for functional limitation (score range 0-68). Items are rated using one of five possible responses (0 = none, 1 = mild, 2 = moderate, 3 = severe, 4 = extreme).
[0102] In one embodiment, "pain" is defined by a WOMAC score for one or more pain items of at least 1, preferably at least 2, more preferably at least 3, and even more preferably 4 (assessed using one of five responses: 0=none, 1=mild, 2=moderate, 3=severe, 4=extreme). In one embodiment, "joint pain" is defined by a WOMAC score for one or more pain items of at least 1, preferably at least 2, more preferably at least 3, and even more preferably 4, when a subject reports pain specifically experienced in one or more joints. In one embodiment, "post-exercise joint pain" is defined by a WOMAC score for one or more pain items of at least 1, preferably at least 2, more preferably at least 3, and even more preferably 4, when a subject reports pain specifically experienced in one or more joints after exercise (e.g., within 24 hours, 48 hours, or 72 hours after exercise).
[0103] In one embodiment, "improving" pain or "improvement" of pain herein refers to a reduction in WOMAC score (assessed using one of five responses: 0=none, 1=mild, 2=moderate, 3=severe, 4=extreme) for one or more pain items of at least 1, preferably at least 2, and more preferably at least 3 (e.g., when comparing WOMAC scores to a control not administered a composition of the invention and / or when comparing WOMAC scores before and after treatment with a composition of the invention).
[0104] The inventors have found positive results in reducing joint pain using the compositions of the present invention, regardless of gender and exercise intensity.
[0105] The present inventors also found positive results in reducing joint pain in all age categories, and the reduction in joint pain across different age categories was greatest in relatively young subjects (e.g., under 30 years old). Because aging is a risk factor for joint disease (mainly osteoarthritis), the compositions of the present invention may be particularly effective in subjects who do not suffer from joint disease (mainly osteoarthritis).
[0106] In one embodiment, the compositions disclosed herein are for reducing pain in a subject in the age category under 30 years.
[0107] In one embodiment, the compositions disclosed herein are for reducing pain in a male and / or female subject.
[0108] In one embodiment, the compositions disclosed herein are for reducing pain during moderate exercise and / or activities that are low impact on the joints, such as walking, swimming, flexibility / balance, gardening, cycling, dancing, and horseback riding.
[0109] In one embodiment, the compositions disclosed herein are for reducing pain during moderate intensity and / or moderate joint impact activities, such as weightlifting, gym cardio exercise, or boxing.
[0110] In one embodiment, the compositions disclosed herein are for reducing pain during high intensity and / or high joint impact activities, such as running, ball sports, skipping, or (heavy) weightlifting.
[0111] (therapeutic vs. non-therapeutic use) The compositions disclosed herein can have both non-therapeutic and therapeutic uses in ameliorating pain, which may be distinguished based on the nature of the pain and / or the particular group of subjects experiencing the pain.
[0112] The first group (herein referred to as the "healthy subject group") includes healthy individuals who will not benefit from treatment with the composition of the present invention. For example, the pain may be non-pathological, meaning that the pain generally has a severity that is not expected to lead to health problems or (severe) suffering. Additionally or alternatively, the pain may have a cause or severity such that the pain naturally resolves over time (i.e., is not chronic). Additionally or alternatively, the severity of the pain in the healthy subject group is limited such that the subjects generally do not seek medical help from a specialist. For example, if the pain occurs primarily after exercise and typically resolves without further intervention, the healthy subjects generally do not seek medical help. In this example, non-therapeutic intervention may still provide more rapid pain relief. The healthy subject group may not require treatment with the composition of the present invention to prevent and / or treat pain, or may require shorter-term treatment with the composition of the present invention, compared to subjects whose pain is pathological.
[0113] The second group (herein "pathological subject group") includes subjects whose pain is pathological, which means that the pain can cause severe symptoms of pain and (severe) suffering, and / or can cause (severe) health and psychological risks. In addition, the pain can be chronic in the pathological subject group. The severity of the pain is such that it usually requires the help of a specialized physician. The pathological subject group may require more or longer treatment with the composition of the present invention compared to subjects whose pain is non-pathological.
[0114] A specialist physician can typically determine on a case-by-case basis whether a pain condition requires therapeutic or non-therapeutic intervention (i.e., whether the person falls into the group of healthy or pathological subjects). A specialist physician may, for example, determine whether the pain may pose (serious) health and psychological risks and / or whether it is chronic pain.
[0115] In one embodiment, the invention relates to the use of the composition in the non-therapeutic amelioration of pain. In a preferred embodiment, the invention relates to the use of the composition in the non-therapeutic amelioration of joint pain. In a preferred embodiment, the invention relates to the use of the composition in the non-therapeutic amelioration of post-exercise pain. In a preferred embodiment, the invention relates to the use of the composition in the non-therapeutic amelioration of post-exercise joint pain.
[0116] In one embodiment, the present invention relates to a composition for use in the (therapeutic) amelioration of pain, preferably one or more selected from the group consisting of fibromyalgia, chronic low back pain, headache, migraine, tension headache, irritable bowel syndrome, chronic pelvic pain, phantom limb pain, carpal tunnel syndrome, sciatica, post-herpetic neuralgia, gout, cancer pain, neuropathic pain, complex regional pain syndrome (CRPS), myofascial pain syndrome and endometriosis-related pain.
[0117] In one embodiment, the present invention relates to a composition for use in the (therapeutic) amelioration of pain in joint disorders.
[0118] In a preferred embodiment, the joint disease is one or more selected from the group consisting of osteoarthritis, degenerative joint disease, rheumatoid arthritis, polymyalgia rheumatica, juvenile arthritis, gout, ankylosing spondylitis, psoriatic arthritis, chondromalacia patellar, periarticular disease, and costochondritis.
[0119] In one embodiment, the compositions disclosed herein are for reducing pain in a subject who does not have a joint disease, where joint disease preferably means one or more of osteoarthritis, rheumatoid arthritis, septic arthritis, juvenile idiopathic arthritis, lupus, gout, and bursitis.
[0120] (Administration of the Composition) As used herein, the term "composition" preferably means that the individual components (e.g., collagen hydrolysate, chondroitin sulfate) are provided in physical association (i.e., in a single formulation). As used herein, the term "composition" does not exclude the individual components (e.g., collagen hydrolysate, chondroitin sulfate) from being in physical association, such as in separate formulations as part of a combination or kit of parts. The optimal administration scheme for the collagen hydrolysate and chondroitin sulfate can be determined on a case-by-case basis and depends, for example, on the subject being treated, the condition being treated, or the formulation being used.
[0121] In one embodiment, the individual components (e.g., collagen hydrolysate, chondroitin sulfate) are in separate formulations, such as part of a combination. In one embodiment, the individual components (e.g., collagen hydrolysate, chondroitin sulfate) are in a single formulation (i.e., composition). In one embodiment, the individual components (e.g., collagen hydrolysate, chondroitin sulfate) are administered separately, sequentially, or simultaneously with each other, such as part of a combination. In one embodiment, the individual components (e.g., collagen hydrolysate, chondroitin sulfate) are packaged separately in the form of a "kit of parts."
[0122] The effect of the composition may be more pronounced when the individual components (e.g., collagen hydrolysate, chondroitin sulfate) are administered not too far apart from each other, for example, to improve the bioactivity (interaction between) of the collagen hydrolysate and chondroitin sulfate. In one embodiment, the collagen hydrolysate and chondroitin sulfate are administered no more than 24 hours apart, preferably no more than 12 hours, more preferably no more than 6 hours, and even more preferably no more than 2 hours (e.g., 60 minutes, 30 minutes, or 15 minutes) apart from each other.
[0123] In preferred embodiments, the collagen hydrolysate and / or chondroitin sulfate disclosed herein are administered orally, and the collagen hydrolysate and chondroitin sulfate are in a single formulation (i.e., composition) or in separate formulations.
[0124] In one embodiment, the collagen hydrolysate and / or chondroitin sulfate disclosed herein is provided in one or more formulations selected from the group consisting of a food formulation, a feed formulation, a nutraceutical formulation, a feed supplement formulation or a pharmaceutical formulation, preferably a nutraceutical formulation, and the collagen hydrolysate and chondroitin sulfate are provided in a single formulation (i.e., composition) or in separate formulations.
[0125] In a preferred embodiment, the composition according to the invention is for use as a dietary supplement.
[0126] In one embodiment, the collagen hydrolysate and / or chondroitin sulfate disclosed herein is provided in one or more formulations selected from the group consisting of capsules, tablets, or powders, preferably powders, and the collagen hydrolysate and chondroitin sulfate are provided in a single formulation (i.e., composition) or in separate formulations.
[0127] In one embodiment, the collagen hydrolysate and / or chondroitin sulfate disclosed herein is provided in one or more formulations selected from the group consisting of a drinkable solution or suspension, a beverage such as beer, a syrup, an artificially flavored beverage, a carbonated beverage, a (water-soluble) powder mix, a (water-soluble) paste, a (water-soluble) powder, a (water-soluble) tablet, a (water-soluble) pill, a (water-soluble) dragee, a (water-soluble) caplet, a (water-soluble) sachet, or a (water-soluble) capsule. Additionally or alternatively, the collagen hydrolysate taught herein may be present in juice, a shake, a dairy drink, a yogurt, a yogurt drink, a dessert, a functional food such as an energy bar, a nutrition bar, a diet bar, or a confectionery such as a gummy or center-filled gummy, and the collagen hydrolysate and chondroitin sulfate are provided in a single formulation (i.e., composition) or in separate formulations.
[0128] In one embodiment, the compositions (for use) disclosed herein are administered in a daily dose of 20 mg to 50 g, preferably 50 mg to 20 g, more preferably 0.1 g to 10 g, and even more preferably 0.2 g to 2 g, wherein the daily dose is the total dry weight of the composition.
[0129] In one embodiment, the compositions (for use) disclosed herein are administered in a unit dose of 10 mg to 25 g, preferably 25 mg to 10 g, more preferably 50 mg to 5 g, and even more preferably 0.1 g to 1 g, wherein the unit dose is the total dry weight of the composition.
[0130] The daily dose and / or unit dose of the compositions (for use) disclosed herein can be at least 0.1, at least 0.2, at least 0.3, at least 0.4, at least 0.5, at least 0.6, at least 0.7, at least 0.8, at least 0.9, at least 1, at least 2, at least 3, at least 4, at least 5, at least 6, at least 7, at least 8, at least 9, at least 10, at least 15, at least 20, at least 25, at least 30, at least 35, at least 40, at least 45, or at least 50, all in grams, where the dose is the amount by dry weight of the composition administered to a subject. Additionally or alternatively, in different embodiments, the daily dose and / or unit of the compositions (for use) disclosed herein is 50 or less, 45 or less, 40 or less, 35 or less, 30 or less, 25 or less, 20 or less, 10 or less, 9 or less, 8 or less, 7 or less, 6 or less, 5 or less, 4 or less, 3 or less, 2 or less, 1 or less, 0.9 or less, 0.8 or less, 0.7 or less, 0.6 or less, 0.5 or less, 0.4 or less, 0.3 or less, 0.2 or less, or 0.1 or less, all in grams, wherein the dose is the amount of dry weight of the composition administered to the subject.
[0131] As used herein, the term "daily dose" refers to the total dry weight administered to a subject per day.
[0132] The daily dose of the composition may be administered as a single unit dose, or as two, three, four, or more unit doses. The two or more unit doses may be equal or different in amount. Preferably, the daily dose of the compositions disclosed herein is administered as two unit doses, more preferably as two unit doses each representing 30-70%, preferably 40-60%, of the daily dose.
[0133] In a preferred embodiment, the dosing regimen for the compositions disclosed herein comprises administering the daily dose of the composition as two unit doses: each unit dose is in an amount of 0.1 to 2 g, preferably 0.2 to 1 g, more preferably 0.3 to 0.7 g, the amount being the dry weight of the composition; and / or The two unit doses are administered at least 6 hours apart, preferably 8 hours, and more preferably 12 hours apart from each other.
[0134] The term "unit dose" as used herein refers to the total dry weight administered to a subject in a single dose. A unit dose is typically in a pre-prepared form (e.g., a pre-filled dose) ready for administration. A unit dose can be identified, for example (as well) from the product packaging or label.
[0135] "Daily dose" and "unit dose" refer to the total dry weight, even if the individual components (e.g., collagen hydrolysate, chondroitin sulfate) are administered as a combination in separate formulations. For example, if a subject is administered 2 g of collagen hydrolysate in a first formulation and 2 g of chondroitin sulfate in a second formulation, the subject is considered to have administered 4 g of the composition. For example, if a subject is administered 0.3 g of collagen hydrolysate in a first formulation and 0.2 g of chondroitin sulfate in a second formulation, the subject is considered to have administered 0.5 g of the composition.
[0136] The inventors observed a maximal reduction in joint pain beginning three weeks after daily administration of the composition (2 x 0.5 g / day) to healthy subjects. The reduction in joint pain was maintained with daily administration of the composition (2 x 0.5 g / day). The reduction in joint pain was observed for at least four additional weeks (e.g., six to eight weeks) after administration of the composition was stopped (i.e., within a "drug holiday" period). This indicates that, particularly in healthy subjects following exercise, the composition is preferably administered daily, preferably for an extended period (e.g., three or more consecutive weeks).
[0137] In one embodiment, the compositions disclosed herein are administered to a subject repeatedly, preferably at least once daily or at least once every other day.
[0138] In one embodiment, the disclosed compositions are administered to a subject for at least two consecutive weeks, preferably at least four consecutive weeks, more preferably at least six consecutive weeks, and most preferably at least eight consecutive weeks.
[0139] In one embodiment, the composition is administered for at least 2, at least 3, at least 4, at least 5, at least 6, at least 7, at least 10, at least 14, or at least 21 days, preferably consecutive days, before pain improvement is achieved or is most effective.
[0140] In one embodiment, daily administration of the composition for at least 3 weeks results in a reduction in joint pain for at least an additional 4 weeks, preferably at least an additional 6 weeks, and even more preferably at least an additional 8 weeks after administration of the composition is stopped (i.e., within a drug holiday period).
[0141] (definition) The term "enzymatic hydrolysis" as used herein refers to a process that uses one or more enzymes to enzymatically cleave one or more bonds in collagen, preferably to form smaller (peptide) fragments. "Enzymatic hydrolysis" as used herein includes partial hydrolysis.
[0142] As used herein, the term "ameliorating" encompasses both "prevention" and "treatment" of a condition. The term "preventing" means ensuring that a subject does not develop a condition (e.g., pain, joint pain). As used herein, an intervention is also considered a form of "preventing" if it delays, reduces the severity of, and / or reduces the incidence of a condition, even if it does not completely prevent the condition from occurring. As used herein, "preventing" or "prevention" by an intervention encompasses situations where a subject has previously experienced a condition (e.g., pain, joint pain) and the intervention prevents the condition from recurring. "Preventing" or "prevention" can have therapeutic and / or non-therapeutic effects. When "preventing" or "prevention" is therapeutic in nature, it can also be directed to the symptoms of a disease or condition and / or its underlying pathology. "Preventing" or "prevention" may be defined by some delay, change in severity, and / or change in incidence by at least 5, at least 10, at least 20, at least 30, at least 40, at least 50, at least 60, at least 70, at least 80, at least 90, at least 100%, etc., compared to a control or reference as measured by any standard technique. As used herein, "treating" means that the intervention reduces and / or cures a condition (e.g., pain, joint pain) if the condition is already present. "Treatment" can have therapeutic and / or non-therapeutic effects. When "treating" is therapeutic in nature, it can also be directed to the symptoms of the disease or condition and / or its underlying pathology. Treatment can be any decrease in the severity, incidence and / or frequency of a condition, such as, for example, by at least 5%, at least 10%, at least 20%, at least 40%, at least 50%, at least 60%, at least 80%, at least 90%, at least 95%, or at least 100% compared to a control or reference as measured by any standard technique. As used herein, "ameliorating" also encompasses "cure." The term "ameliorating" can be used interchangeably herein with "reducing" or "reducing."
[0143] As used herein, the terms "comprising" or "to comprise" and their conjugations refer to situations in which the term is used in an open-ended sense to mean that items following the word are included but that items not specifically mentioned are not excluded. It also encompasses the more restrictive verbs "to consist essentially of" and "to consist of."
[0144] The reference to an element by the indefinite article "a" or "an" does not exclude the possibility that a plurality of elements is present, unless the context clearly requires that only one element is present. Thus, the indefinite article "a" or "an" normally means "at least one."
[0145] As used herein, a level is "increased" or "decreased" if it is at least 1%, e.g., 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 45%, or 50%, higher or lower, respectively, than the corresponding level in a control or reference. Alternatively, a level in a sample may be considered to be increased or decreased if it is statistically significantly higher or lower, respectively, compared to the level in the control or reference (including at earlier time points). The term "to reduce" may be used interchangeably herein with "to decrease." The term "reducing" may be used interchangeably herein with "decreasing."
[0146] As used herein, the term "subject" or "person" refers to any animal (e.g., a mammal), preferably a human.
[0147] As used herein, the term "administer" or "administration" includes providing a compound, substance, or composition to a subject who will consume it. A subject who consumes a compound, substance, or composition may administer it to themselves. In such cases, the term "administer" may be read as "ingest."
[0148] The term "unit dose" as used herein relates to an amount or unit of, e.g., a compound, substance, or composition, administered to / taken by a subject in a single dose. A unit dose may, for example, be in a pre-prepared form (e.g., a pre-filled dose) ready for administration to a subject. A unit dose may, for example (as well) be identifiable from product packaging or labeling. A total daily dose may be divided into multiple unit doses, each having a reduced dose compared to the total daily dose.
[0149] The term "joint" as used herein preferably refers to one or more of the group consisting of knee, shoulder, hip, knuckle, elbow, toe, neck, wrist, and facet joints. In one embodiment, the joint is a knee joint. In one embodiment, the joint is a shoulder joint. In one embodiment, the joint herein is a hip joint.
[0150] The term "exercise" as used herein refers to any physical activity that can be planned and structured and has an end or intermediate goal. As used herein, the term "exercise" typically has the improvement or maintenance of physical fitness as a goal. The term "exercise" may be used interchangeably with "physical exercise" herein. For example, "exercise" may include any professional or non-professional activity, including sports, strength or weight training, and endurance or aerobic activities. Additionally or alternatively, "exercise" may include endurance training. The term "endurance training" refers to training the aerobic system, as opposed to the anaerobic system, by performing physical exertion at an increased heart rate (e.g., at 70% of maximum heart rate (MHR) for at least 30 minutes) for an extended period of time, such as during walking, running, jogging, cycling, swimming, rope jumping, etc. In this disclosure, the term "exercise" encompasses "exercise overload." The term "exercise overload" as used herein relates to overloading of the body caused by high strains and / or forces applied to a body part (e.g., a joint) during some form of physical exercise. Overload is typically caused by acute overload, but can also be caused by repetitive overload. Exercise overload, primarily acute overload, typically results in high strains on joints (e.g., knees, shoulders, hips), which can cause micro-injuries.
[0151] As used herein in reference to administration herein, the term "continuous" or "sequentially" means that administration follows one another in a given period of time without a gap. For example, when "a composition is administered for four consecutive days," this means that the composition is administered at least once per day for four consecutive days (e.g., on Monday, Tuesday, Wednesday, and Thursday of the same week), regardless of the number of doses per day or total number of doses. For example, when "a composition is administered for four consecutive weeks," this means that the composition is administered at least once per week for four consecutive weeks, regardless of the number of doses per day, per week, or total number of doses.
[0152] Terms In this specification, clauses are embodiments of the invention. Features of clauses (embodiments) in this specification can be combined.
[0153] Clause 1: A composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate relative to the total weight of the chondroitin sulfate and collagen hydrolysate, The collagen hydrolysate may be obtained from the hydrolysis of a collagen-containing material; A composition, wherein the collagen-containing material comprises 40 to 60% by weight of type I collagen and 40 to 60% by weight of type II collagen, based on the total weight of collagen in the collagen-containing material.
[0154] Clause 2: 10. The composition according to clause 1, further comprising 5-20% by weight of type III collagen, based on the total weight of collagen in the collagen-containing material.
[0155] Clause 3: 3. The composition according to clause 1 or 2, wherein the collagen hydrolysate has an average molecular weight of more than 1000 Da and less than 10000 Da.
[0156] Clause 4: 4. The composition according to clause 3, wherein the collagen hydrolysate has an average molecular weight of more than 1000 Da and less than 5000 Da.
[0157] Article 5: the collagen hydrolysate contains 2 to 20% by weight of hydroxyproline and / or 0.1 to 5% by weight of hydroxylysine; 10. The composition according to any one of the preceding clauses, wherein the weight percentage is based on the total weight of amino acids in the collagen hydrolysate.
[0158] Article 6: 10. The composition according to any one of the preceding clauses, wherein the collagen hydrolysate comprises hydroxyproline and hydroxylysine in a molar ratio of greater than 8 and less than 15 (hydroxyproline:hydroxylysine).
[0159] Article 7: 15-40% by weight, preferably 20-40% by weight, more preferably 30-40% by weight, of chondroitin sulfate calculated based on the total weight of chondroitin sulfate and collagen hydrolysate.
[0160] Article 8: 10. The composition according to any one of the preceding clauses, wherein the chondroitin sulfate is obtained from hydrolysis of a collagen-containing material.
[0161] Article 9: 10. The composition according to any one of the preceding clauses, wherein the hydrolysis is enzymatic hydrolysis.
[0162] Article 10: 10. The composition according to any one of the preceding clauses, wherein the collagen-containing material is derived from one or more tissues including cartilage.
[0163] Article 11: 11. The composition according to clause 10, wherein the tissue is trachea and / or sternum.
[0164] Article 12: A composition comprising 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate relative to the total weight of the chondroitin sulfate and collagen hydrolysate, The collagen hydrolysate contains 40 to 60 wt% collagen derived from type I collagen relative to the total weight of collagen in the collagen hydrolysate; A composition, wherein the collagen hydrolysate comprises 40 to 60 wt. % collagen derived from type II collagen, based on the total weight of collagen in the collagen hydrolysate.
[0165] Article 13: 13. The composition according to clause 12, wherein the collagen hydrolysate further comprises 5 to 20 wt. % collagen derived from type III collagen, based on the total weight of collagen in the collagen hydrolysate.
[0166] Article 14: 14. The composition according to clause 12 or 13, wherein the collagen hydrolysate has an average molecular weight of more than 1000 Da and less than 10000 Da.
[0167] Article 15: 15. The composition according to clause 14, wherein the collagen hydrolysate has an average molecular weight of more than 1000 Da and less than 5000 Da.
[0168] Article 16: the collagen hydrolysate contains 2 to 20% by weight of hydroxyproline and / or 0.1 to 5% by weight of hydroxylysine; 16. The composition according to any one of clauses 12 to 15, wherein the weight percentages are based on the total weight of amino acids in the collagen hydrolysate.
[0169] Article 17: 17. The composition according to any one of clauses 12 to 16, wherein the collagen hydrolysate comprises hydroxyproline and hydroxylysine in a molar ratio greater than 8 and less than 15 (hydroxyproline:hydroxylysine).
[0170] Article 18: 18. The composition according to any one of clauses 12 to 17, comprising 15 to 40% by weight, preferably 20 to 40% by weight, more preferably 30 to 40% by weight, of chondroitin sulfate relative to the total weight of chondroitin sulfate and collagen hydrolysate.
[0171] Article 19: 19. A composition according to any one of clauses 1 to 18 for use in therapeutic treatment.
[0172] Article 20: 19. A composition according to any one of clauses 1 to 18 for use in the therapeutic amelioration of pain.
[0173] Article 21: 19. A composition according to any one of clauses 1 to 18 for use in the non-therapeutic amelioration of pain.
[0174] Article 22: 22. The composition according to clause 20 or 21, wherein the pain is arthralgia.
[0175] Article 23: 23. The composition according to clause 22, wherein the joint pain is post-exercise joint pain.
[0176] Article 24: 24. The composition according to any one of clauses 19 to 23, which is administered orally.
[0177] Article 25: 25. A composition according to any one of clauses 19 to 24 for use as a dietary supplement.
[0178] Article 26: 26. The composition according to any one of clauses 19 to 25, wherein the composition is administered in a daily dose of 0.2 to 2 g, the daily dose being the total dry weight of the composition.
[0179] Article 27: 1. Use of a composition in the non-therapeutic amelioration of pain, comprising: The composition comprises 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate relative to the total weight of the chondroitin sulfate and the collagen hydrolysate, Use wherein the collagen hydrolysate comprises hydroxyproline and hydroxylysine in a molar ratio (hydroxyproline:hydroxylysine) greater than 8 and less than 15.
[0180] Article 28: The use according to Article 27, wherein the pain is arthralgia.
[0181] Article 29: 29. The use according to clause 27 or 28, wherein the pain is post-exertion pain.
[0182] Article 30: 30. The use according to any one of clauses 27 to 29, wherein the collagen hydrolysate comprises 2 to 20 wt. % hydroxyproline, the wt. % being based on the total weight of amino acids in the collagen hydrolysate.
[0183] Article 31: 32. Use according to any one of clauses 27 to 31, wherein the collagen hydrolysate comprises 0.1 to 5 wt. % hydroxylysine, the wt. % being based on the total weight of amino acids in the collagen hydrolysate.
[0184] Article 32: 32. A composition comprising 15 to 40% by weight, preferably 20 to 40% by weight, more preferably 30 to 40% by weight, of chondroitin sulfate relative to the total weight of chondroitin sulfate and collagen hydrolysate, the use according to any one of clauses 27 to 31.
[0185] Article 33: 33. Use according to any one of clauses 27 to 32, wherein the collagen hydrolysate has an average molecular weight of more than 1000 Da and less than 10000 Da.
[0186] Article 33: 34. The use according to any one of clauses 27 to 33, wherein the composition is administered orally.
[0187] Article 34: 35. The use according to any one of clauses 27 to 34, wherein the composition is provided as a dietary supplement.
[0188] Article 35: 36. The use according to any one of clauses 27 to 35, wherein the composition is administered in a daily dose of 0.2 to 2 g, the daily dose being the total dry weight of the composition.
[0189] Article 36: A composition for use in improving pain caused by a joint disease, comprising: The composition comprises 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate relative to the total weight of the chondroitin sulfate and the collagen hydrolysate, A composition wherein the collagen hydrolysate comprises hydroxyproline and hydroxylysine in a molar ratio of greater than 8 and less than 15 (hydroxyproline:hydroxylysine).
[0190] Article 37: 37. The composition according to clause 36, wherein the joint disease is one or more selected from the group consisting of osteoarthritis, degenerative joint diseases, rheumatoid arthritis, polymyalgia rheumatica, juvenile arthritis, gout, ankylosing spondylitis, psoriatic arthritis, chondromalacia patellar, periarticular diseases and costochondritis.
[0191] Article 38: 38. The composition according to any one of clauses 36-37, wherein the collagen hydrolysate comprises 2-20 wt% hydroxyproline, the wt% being based on the total weight of amino acids in the collagen hydrolysate.
[0192] Article 39: 39. The composition according to any one of clauses 36-38, wherein the collagen hydrolysate comprises 0.1 to 5 wt. % hydroxylysine, the wt. % being based on the total weight of amino acids in the collagen hydrolysate.
[0193] Article 40: 39. A composition according to any one of clauses 36 to 39, comprising 15 to 40% by weight, preferably 20 to 40% by weight, more preferably 30 to 40% by weight, of chondroitin sulfate relative to the total weight of chondroitin sulfate and collagen hydrolysate.
[0194] Article 41: 41. The composition according to any one of clauses 36 to 40, wherein the collagen hydrolysate has an average molecular weight of more than 1000 Da and less than 10000 Da.
[0195] Article 42: 42. The composition according to any one of clauses 36 to 41, which is administered orally.
[0196] Article 43: 4. A composition according to any one of clauses 36 to 42 presented as a dietary supplement.
[0197] Article 44: 44. The composition according to any one of clauses 36 to 43, wherein the composition is administered in a daily dose of 0.2 to 2 g, the daily dose being the total dry weight of the composition. [Brief explanation of the drawings]
[0198] [Figure 1] The effect of a collagen hydrolysate (HC)-based composition versus placebo on joint pain sensation over a 16-week period. The intake of the dietary supplement was stopped after 12 weeks (represented by the vertical dashed line). The numbers in the plot correspond to the number of subjects. [Figure 2] Effect of a collagen hydrolysate (HC)-based composition versus placebo on joint pain, by gender. The study duration was 16 weeks. Dietary supplement intake was stopped after 12 weeks (represented by the vertical dashed line). The number of participants throughout the study is shown in the figure. [Figure 3] Effect of a collagen hydrolysate (HC)-based composition versus placebo on joint pain by age category. The study duration was 16 weeks. Dietary supplementation was stopped after 12 weeks (represented by the vertical dashed line). The number of participants throughout the study is shown in the figure. [Figure 4] Effect of a collagen hydrolysate (HC)-based composition compared to placebo on joint pain, as affected by physical activity. The study period was 16 weeks. Dietary supplement intake was stopped after 12 weeks (represented by the vertical dashed line). The number of participants throughout the study is shown in the figure. DETAILED DESCRIPTION OF THE INVENTION
[0199] Example
[0200] Example 1 The following protocol is a general protocol used to prepare a composition comprising collagen hydrolysate and chondroitin sulfate, starting from a mixture comprising porcine tracheal and sternal tissue.
[0201] The amounts of collagen types I, II, and III in the tissues were determined by ELISA. The relative amounts of tracheal and sternal tissue were matched to achieve a weight ratio of collagen types I, II, and III of approximately 5:5:1 in the starting mixture.
[0202] The general protocol involves the following steps: a) grinding of collagen-containing materials; b) enzymatic hydrolysis (pH=6~7, T=60~65°C, t=5~6 hours); c) First separation step and heat treatment (T=70-80°C); d) enzyme activation and heat treatment (T>90°C, t>15 min); e) 20 to 500 (l / min*m at 1 bar 2 ) water permeability, 0.2 to 10 (mK) separation, 1000 to 2000 (g / m 2 a second separation step using one or more filter sheets having a weight per unit area of 0.01g / m² and a heat treatment (T=85-99°C); f) Concentration under vacuum; g) Drying.
[0203] The above protocol results in a composition comprising collagen hydrolysate and chondroitin sulfate having the general characteristics according to Table 1. The product is referred to as "HC" in Examples 2-4.
[0204] Variations in starting materials and protocols can be applied to adjust composition and bioactivity (as shown in Examples 3 and 4).
[0205] [Table 1]
[0206] Example 2 The purpose of this study is to understand how general consumers perceive a collagen hydrolysate-based dietary supplement in terms of improving joint pain. The dietary supplement is prepared from porcine trachea and sternum according to Example 1. The dietary supplement, referred to herein as "HC," is provided by Rousselot BV (Ghent, Belgium).
[0207] Materials and Methods Study population and design This consumer lifestyle trial was a placebo-controlled (5:1 ratio, 177 participants receiving HC and 36 participants receiving placebo), participant-blinded, randomized, parallel study to evaluate the effect of collagen hydrolysate versus placebo on joint pain.
[0208] The study aimed to collect data on a large number of people with diverse demographics to represent the general consumer population who may seek dietary supplements to reduce joint pain. Participants were recruited through various sports and health clubs across the UK. To obtain meaningful, relevant data, the researchers aimed to collect data from a minimum of 200 participants.
[0209] The placebo-controlled design involved participants receiving either 2 x 0.5 g of HC (experimental group) or 2 x 0.5 g of maltodextrin (placebo group) daily for 12 weeks and 4 weeks of the study period with no run-out period. Participants completed a self-assessment tool throughout the entire 16-week period. The HC and placebo were matched for taste, color, and odor characteristics. Both were packaged in similar formats.
[0210] All communication between researchers and participants took place via an online app, which allowed participants to complete self-assessments and other observations.
[0211] The inclusion criteria for participants were 18 years old, no medical diagnosis, not taking any medication, frequent physical activity, and not pregnant or currently breastfeeding. Physical activity included all levels of activity, from gardening and brisk walking to marathon training.
[0212] Exclusion criteria were defined as "age under 18 years," "current medical diagnosis," "currently taking / prescribed medication," "advised not to participate in physical activity or does not frequently participate in physical activity," and "currently pregnant or breastfeeding."
[0213] Participants were also excluded from the study if they were already using any type of dietary supplement containing vitamin D, curcumin / turmeric, other collagen, green lipped mussel extract, Boswellia, glucosamine, chondroitin sulfate, hyaluronic acid, or folic acid.
[0214] Participants already supplementing with multivitamins, iron, omega-3, vitamin B complex, vitamin C, calcium, rosehip extract, amino acid complex, or creatine were not excluded, as these dietary supplements do not specifically target joint health and the results may show some relationship with HC.
[0215] material The product used in this study was derived from hydrolyzed porcine trachea and sternum. The starting material was hydrolyzed (according to Example 1) to obtain a composition containing collagen hydrolysate and chondroitin sulfate (hereinafter referred to as "HC"). Typical product characteristics of the product follow those of Example 1. The HC dosage form was a 0.5 g hydroxypropyl methylcellulose (HPMC) capsule, while 0.5 g maltodextrin in an HPMC capsule was used as a placebo. Maltodextrin is a food-grade material commonly used as a placebo in clinical trials. This product can be used as a placebo in this experiment because it is a tasteless, odorless white powder that does not possess any micronutrient value.
[0216] Questionnaire design To provide ongoing follow-up of participants, we developed a smartphone app for participants to submit weekly feedback.
[0217] This weekly report consisted of several questions. First, participants were asked about the physical activity they had recently completed and the duration of the activity. Predefined activities included gardening, brisk walking, running, cycling, tennis, swimming, strength sports, weightlifting (average squat weight 70 kg), flexibility / balance, yoga, Pilates, or an optional box for any unlisted activity. During the period, participants were asked to view their weekly totals and indicate the amount of time spent (0–5 h, 6–10 h, 11–15 h, 16–20 h, or more than 20 h).
[0218] Participants were then given a body outline on which they could indicate the areas of joint pain they experienced. They were then asked to provide feedback on their joint pain using a visual analog scale (VAS), a validated pain measurement tool (Breivik et al., Br. J. Anaest. 2008 Jul;101(1):17-24). The VAS, a validated scale, combined with a numeric rating system, allows the study to translate the data into a pain scoring chart.
[0219] The weekly reporting section was designed to make it extremely easy for participants to provide scores. The scoring tool used was selected based on its demonstrated accuracy in previous similar studies for tracking participants' subjective pain scales (e.g., Hawker et al. Arthritis Care Res. (Hoboken). 2011 Nov;63 Suppl 11:S240-52, Kumar et al. J. Sci. Food Agric. 2015 Mar 15;95(4):702-7). At the start of the study, each participant was asked to define a baseline score for joint pain. Each week, participants were asked to indicate their pain score throughout the study, starting at week 1 and continuing through week 16.
[0220] Participants also completed a short demographic questionnaire requesting gender, age (within range), height, weight, and waist measurement.
[0221] In accordance with the General Data Protection Regulation (EU GDPR), participants' individual pain score portfolios were kept anonymous.
[0222] Weighting matrix for calculating average activity impact To assess the average impact of physical activity, a weighting matrix was used to classify participants according to intensity (low (L), medium (M), and high (H)) and frequency of activity (1, 2, 3 times). Walking, swimming, flexibility / balance, gardening, cycling, dancing, and horse riding were considered low joint impact activities. Weightlifting, gym cardio, and boxing were considered moderate joint impact activities. Running, ball sports, skipping, and heavy weightlifting were considered high joint impact activities. Activity classification was based on UK National Health Services (NHS) guidelines (Physical activity guidelines for older adults, available online at: https: / / www.nhs.uk / live-well / exercise / physical-activity-guidelines-older-adults / #moderate (accessed March 3)). Regarding the number of activities, "LLL" means that the participant performed three different types of low-intensity activities, "LLM" means that the participant performed two different types of low-intensity activities and one type of moderate-intensity activity, and "LLH" means that the participant performed two different types of low-intensity activities and one type of high-intensity activity. The other subgroups follow the same rationale. Only one participant fit into category MHH (1 × moderate and 2 × high), and given that this alone had no statistical relevance, this participant was considered to fall into category 5 (LHH or MMH or MHH).
[0223] statistical analysis The Full Analysis population included all study-eligible participants who consumed the dietary supplement at least once and reported at least one weekly VAS scale after exercise.
[0224] Continuous data were summarized by mean, standard deviation (SD) and range. Categorical data were summarized by frequency and percentage.
[0225] Random intercepts for each subject (b i A generalized linear mixed-effects model (LME) with ∑ ...
[0226] The complete model with interactions: Y ij =(β0+b i )+β1 hour ij +β2 treatment ij +β3 hours ij x treatment ij +ε ij The interaction term represents the difference in predicted change in joint pain comparing subjects in the HC group with subjects in the placebo group for a given follow-up time. In the case of a non-significant interaction term, it can be concluded that there was not enough evidence of a difference between the treatment groups. A second analysis was then performed, including only the main effects.
[0227] QQ plots were used to test for systematic departures from the normality assumption, and scatter plots of residuals versus predictions were used to check for systematic departures from the mean model.
[0228] LME analyses were performed using the lmne package (Pinheiro et al. 2021. nlme: Linear and Nonlinear Mixed Effects Models. R package version 3.1-153) in the R environment (R Core Team, 2019). All analyses were performed in R version 3.6.0 (R Core Team, 2019). A value of p<0.05 was considered statistically significant. Missing data were not imputed. The amount of missing data is presented in tables where appropriate.
[0229] result Subjects included in the study A total of 213 subjects were enrolled in the study (HC / placebo: 177 / 36). The dropout rate was 19% (7 / 36) in the placebo group and 3% (5 / 177) in the HC group. Therefore, the application tools used for follow-up were engaging with participants.
[0230] Subject characteristics The demographic and baseline characteristics of subjects overall and by treatment group are summarized in Table 2. Subjects ranged in age from 18 to 72 years (mean age: 41 years), and 52.6% of subjects were female.
[0231] [Table 2]
[0232] Joint pain relief with HC compared to placebo Figure 1 shows the change in participants' joint pain over 16 weeks. A linear mixed-effects model revealed a significant interaction between treatment and treatment time (p<0.001). The results suggest that there are differences between the placebo and HC groups in terms of subject-specific change in predicted joint pain sensation. Subjects receiving HC showed a significant (p<0.001) decrease in mean joint pain sensation starting at week 3 when compared with subjects in the placebo group. Also note that the difference between the HC and placebo groups increased with treatment time.
[0233] After 12 weeks, treatment was stopped, and mean joint pain scores began to increase again in the HC group (Figure 1). At week 16, mean joint pain scores in the HC group were still significantly lower than baseline (paired-samples t-test, p<0.001), and there was also a significant difference between the HC group and the placebo group (independent-samples t-test, p<0.001). The reduction in joint pain persisted for 6 to 8 weeks after treatment was stopped.
[0234] Figure 2 shows the effect of HC versus placebo on joint pain by gender. There was no evidence of a significant three-way interaction, and no interactions between gender and treatment, or between gender and time (p>0.05). Furthermore, the LME model revealed that joint pain scores were statistically similar between genders (p=0.469).
[0235] Figure 3 shows the effect of HC versus placebo on joint pain by age category. The LME model revealed a significant interaction between age and treatment time (p = 0.005), highlighting that different age categories differed in terms of joint pain levels associated with HC treatment over time. Therefore, we compared the patterns of joint pain relief across age categories associated with HC treatment using participants under 30 years of age, who reported the lowest joint pain scores across age categories, as the reference. After 10 weeks of treatment, subjects aged 40–49 years had, on average, higher joint pain scores than subjects under 30 years of age (mean difference 0.71, 95% CI 0.25–1.18, p < 0.01). This difference was recorded later in the study. Study participants under 30 years of age reported the lowest joint pain scores across age categories. Overall, all subgroups, in both age categories, had joint pain levels significantly below those reported at study baseline.
[0236] Figure 4 shows the effect of HC versus placebo on joint pain by physical activity level. Statistical analysis revealed that joint pain scores were consistent across the various physical activity subgroups (p=0.091). The range of treatment differences suggests that the effect of HC treatment was consistent across the various physical activity subgroups.
[0237] Overall, reductions in joint pain were observed after HC intake, regardless of gender, age group, or activity level. This indicates that HC intake has a positive effect on the general population, including active adults of various age groups and lifestyles. The general trend was that reductions in joint pain were observed 3 weeks after the start of HC intake and persisted for 6 to 8 weeks after HC intake was stopped.
[0238] The reduction in joint pain is greatest in subjects in the age category under 30. These may be the most active and healthy subjects.
[0239] Table 3 shows the pain reduction by HC in subjects experiencing different types of joint pain. The reduction in joint pain is seen regardless of the nature of the joint pain, but the effect is most pronounced in (healthy) subjects after exercise.
[0240] [Table 3]
[0241] Example 3 As starting material for hydrolysis the method of Example 1 was used, in which a comparison was made between pig bone, pig skin, pig trachea or pig sternum.
[0242] Table 4 shows that daily treatment with compositions derived from pig bone or pig skin does not significantly reduce joint pain after 12 weeks. In comparison, daily treatment with collagen hydrolysate compositions derived from pig trachea or pig sternum results in a greater than 50% reduction in VAS scores after 12 weeks. Similar results were obtained with bovine tissue. Chicken sternum was found to be less effective at reducing joint pain than pig or bovine sternum, indicating that pain-reducing effects may be species-dependent.
[0243] [Table 4]
[0244] Example 4 The method of Example 1 was used, but with different combinations of porcine bone, hide, trachea and sternum to provide starting material for hydrolysis with different relative amounts of type I, type II and type III collagen.
[0245] Table 5 shows that compositions prepared from starting materials containing primarily type I or type II collagen have a limited pain-reducing effect. In comparison, compositions prepared from starting materials containing type I, type II, and type III collagen in a weight ratio of approximately 5:5:1 have a much greater pain-reducing effect. The collagen hydrolysate obtained from this starting material has a Hyp / Hyl molar ratio greater than 8 and less than 15.
[0246] The pain-reducing effect is greatest when the amount of chondroitin sulfate in the composition is relatively high. In this example, the greatest pain reduction is seen in a composition containing 70% collagen hydrolysate and 30% chondroitin sulfate.
[0247] [Table 5]
[0248] Table 6 shows that type III collagen contributes to pain reduction. A ten-fold reduction in type III collagen in the starting material reduces the pain-reducing effect.
[0249] [Table 6] <Additional Notes> The present invention includes the following aspects. <Section 1> 1. Use of a composition in the non-therapeutic amelioration of pain, comprising: The composition contains 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate relative to the total weight of the chondroitin sulfate and collagen hydrolysate, The collagen hydrolysate comprises hydroxyproline and hydroxylysine in a molar ratio of greater than 8 and less than 15 (hydroxyproline:hydroxylysine). <Section 2> Item 1, wherein the pain is arthralgia. <Section 3> The use according to Item 1 or Item 2, wherein the pain is post-exercise pain. <Section 4> Item 4. The use according to any one of Items 1 to 3, wherein the collagen hydrolysate contains 2 to 20 wt. % hydroxyproline, the wt. % being based on the total weight of amino acids in the collagen hydrolysate. <Section 5> Item 5. The use according to any one of Items 1 to 4, wherein the collagen hydrolysate contains 0.1 to 5 wt. % hydroxylysine, the wt. % being based on the total weight of amino acids in the collagen hydrolysate. <Section 6> Item 6. The use according to any one of Items 1 to 5, wherein the composition contains 15 to 40 wt. % of chondroitin sulfate, preferably 20 to 40 wt. %, and more preferably 30 to 40 wt. % of chondroitin sulfate, based on the total weight of the chondroitin sulfate and the collagen hydrolysate. <Section 7> Item 7. The use according to any one of Items 1 to 6, wherein the collagen hydrolysate has an average molecular weight of more than 1,000 Da and less than 10,000 Da. <Section 8> The use according to any one of items 1 to 7, wherein the composition is administered orally. <Section 9> The use according to any one of items 1 to 8, wherein the composition is provided as a dietary supplement. <Section 10> Item 10. The use according to any one of items 1 to 9, wherein the composition is administered in a daily dose of 0.2 to 2 g, the daily dose being the total dry weight of the composition. <Section 11> A composition for use in improving pain caused by a joint disease, comprising: The composition contains 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolysate relative to the total weight of the chondroitin sulfate and collagen hydrolysate, A composition wherein the collagen hydrolysate comprises hydroxyproline and hydroxylysine in a molar ratio of greater than 8 and less than 15 (hydroxyproline:hydroxylysine). <Section 12> Item 12. The composition according to Item 11, wherein the joint disease is one or more selected from the group consisting of osteoarthritis, degenerative joint disease, rheumatoid arthritis, polymyalgia rheumatica, juvenile arthritis, gout, ankylosing spondylitis, psoriatic arthritis, chondromalacia patellar, periarticular disease, and costochondritis. <Section 13> Item 13. The composition according to Item 11 or 12, wherein the collagen hydrolysate contains 2 to 20 wt. % hydroxyproline, the wt. % being based on the total weight of amino acids in the collagen hydrolysate. <Section 14> Item 14. The composition according to any one of Items 11 to 13, wherein the collagen hydrolysate contains 0.1 to 5 wt. % hydroxylysine, the wt. % being based on the total weight of amino acids in the collagen hydrolysate. <Section 15> Item 15. The composition according to any one of Items 11 to 14, wherein the composition contains 15 to 40 wt. % of chondroitin sulfate, preferably 20 to 40 wt. %, and more preferably 30 to 40 wt. % of chondroitin sulfate, based on the total weight of the chondroitin sulfate and the collagen hydrolysate. <Section 16> Item 16. The composition according to any one of Items 11 to 15, wherein the collagen hydrolysate has an average molecular weight of more than 1,000 Da and less than 10,000 Da. <Section 17> The composition according to any one of items 11 to 16, which is orally administered. <Section 18> Item 18. The composition according to any one of items 11 to 17, which is provided as a nutritional supplement. <Section 19> Item 19. The composition according to any one of Items 11 to 18, wherein the composition is administered in a daily dose of 0.2 to 2 g, the daily dose being the total dry weight of the composition.
Claims
A composition for use in a subject for improving joint pain after exercise, comprising: the composition contains 10 to 40% by weight of chondroitin sulfate and 60 to 90% by weight of collagen hydrolyzate based on the total weight of chondroitin sulfate and collagen hydrolyzate; the collagen hydrolyzate contains hydroxyproline and hydroxylysine in a molar ratio (hydroxyproline: hydroxylysine) of more than 8 and less than 15, the composition. The composition according to claim 1, wherein the subject is a healthy individual.
3. The composition according to claim 1 or claim 2, wherein the collagen hydrolyzate contains 2 to 20% by weight of hydroxyproline, and the % by weight is based on the total weight of amino acids in the collagen hydrolyzate.
4. The composition according to claim 1 or claim 2, wherein the collagen hydrolyzate contains 0.1 to 5% by weight of hydroxylysine, and the % by weight is based on the total weight of amino acids in the collagen hydrolyzate. The composition according to claim 1 or claim 2, comprising 15 to 40% by weight of chondroitin sulfate based on the total weight of chondroitin sulfate and collagen hydrolyzate. The composition according to claim 1 or claim 2, comprising 20 to 40% by weight of chondroitin sulfate based on the total weight of chondroitin sulfate and collagen hydrolyzate. The composition according to claim 1 or claim 2, comprising 30 to 40% by weight of chondroitin sulfate based on the total weight of chondroitin sulfate and collagen hydrolyzate.
8. The composition according to claim 1 or claim 2, wherein the collagen hydrolyzate has an average molecular weight of more than 1000 Da and less than 10000 Da. The composition according to claim 1 or claim 2, which is administered orally. The composition according to claim 1 or claim 2, which is provided as a dietary supplement.
11. The composition according to claim 1 or claim 2, wherein the composition is administered at a daily dose of 0.2 to 2 g, and the daily dose is the total dry weight of the composition.
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