How to Obtain Alpha-1 Proteinase Inhibitors

By using conventional TFF ultrafiltration to concentrate A1PI to at least 110 mg/mL in water for injection and formulating with uncharged excipients, the challenges of low concentration and cumbersome administration of A1PI are addressed, resulting in stable, versatile, and cost-effective therapeutic solutions.

JP7689535B2Active Publication Date: 2025-06-06GRIFOLS WORLDWIDE OPERATIONS
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
JP2022549348
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-02-25
Filing Date
2021-02-22
Publication Date
2025-06-06
Estimated Expiration
2041-02-22

AI Technical Summary

Technical Problem

Current methods for producing alpha-1 proteinase inhibitor (A1PI) result in low concentrations, requiring frequent intravenous administration, which is cumbersome and costly, and can cause hypersensitivity reactions.

Method used

Conventional tangential flow filtration (TFF) ultrafiltration is used to concentrate A1PI to at least 110 mg/mL in water for injection (WFI) without buffers or salts, followed by formulation with uncharged excipients to achieve concentrations between 100 mg/mL and 200 mg/mL.

Benefits of technology

This method allows for the production of highly concentrated A1PI solutions that are stable, suitable for various parenteral administration routes, and reduce the need for frequent medical interventions, thereby improving treatment convenience and cost-effectiveness.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007689535000001
    Figure 0007689535000001
  • Figure 0007689535000002
    Figure 0007689535000002
  • Figure 0007689535000003
    Figure 0007689535000003
Patent Text Reader

Abstract

A method for obtaining highly concentrated alpha-1 proteinase inhibitor (A1PI), comprising preparing a solution of A1PI by concentrating an initial solution of A1PI by tangential flow filtration (TFF) against water, wherein the final concentration of A1PI in the concentrated solution is at least 110 mg / ml.
Need to check novelty before this filing date? Find Prior Art

Description

[Technical field]

[0001] The present disclosure relates to the field of pharmaceuticals. Certain embodiments herein relate to a method for obtaining highly concentrated alpha-1 proteinase inhibitor (A1PI) that can be used for many therapeutic indications. [Background technology]

[0002] Alpha-1-antitrypsin (AAT) or α 1 Alpha-1 proteinase inhibitor (A1PI), also known as -antitrypsin, is a proteinase inhibitor that acts on a variety of cellular proteases. A1PI plays a key role in tissue homeostasis through inhibition of neutrophil elastase action and other mechanisms.

[0003] Congenital deficiency of A1PI results in uncontrolled neutrophil elastase activity and subsequent degradation of elastin, an essential protein that provides elasticity to tissues, especially the lungs. Lack of elastin can lead to respiratory complications such as emphysema and cirrhosis of the liver.

[0004] Long-term intravenous (IV) administration of A1PI to treat AAT deficiency is cumbersome, requires expert assistance (administered at the patient's home or in a clinic, hospital, etc.), and may cause immediate hypersensitivity reactions. To overcome the above problems, new concentrating methods and new formulations have been developed by the present inventors for a new product containing highly concentrated A1PI. The concentrated formulation detailed in this invention allows for a wide range of parenteral administration, which may include intravenous, subcutaneous, aerosol, and intradermal administration. This product can fulfill a long-standing unmet need for easier dosing for administration by patients at home without the need for a medical professional to assist, can reduce treatment costs, and is suitable for long-term treatment.

[0005] As known in the prior art, the starting material is Cohn Fraction IV-1 paste, and PEG and ZnCl 2There are several purification methods for A1PI that involve the addition of precipitants such as 1,2-dichlorophenyl 2-propanediol (1,2,3-trimethylphenyl)propane ...

[0006] Cohn's ethanol fractionation or affinity chromatography are widely used to purify this protein in high yields. More efficient methods would help ensure optimal use of rare and valuable products such as human plasma and produce therapeutic grade end products.

[0007] One of the known methods used to produce A1PI includes the use of tangential flow filtration (TFF) ultrafiltration, but only achieves a maximum concentration of A1PI of 100 mg / mL (10% w / v). Attempting to increase the concentration of A1PI using conventional TFF ultrafiltration causes unacceptably high levels of aggregate formation, even with small amounts of buffer and salt. To achieve higher concentrations of A1PI, an additional step must be performed after conventional TFF ultrafiltration. In known methods, this additional step can be single-pass tangential flow filtration (SPTFF), resulting in a concentration of A1PI of more than 200 mg / mL (20% w / v). [Prior art documents] [Patent documents]

[0008] [Patent Document 1] U.S. Patent No. 6,462,180 [Patent Document 2] U.S. Patent No. 9,616,126 [Patent Document 3] US Patent Application Publication No. 20110237781 Summary of the Invention [Problem to be solved by the invention]

[0009] The inventors have surprisingly found that a concentration of at least 110 mg / mL of A1PI can be obtained in water for injection (WFI) using conventional TFF ultrafiltration without the use of buffers and salts, which allows for the elimination of a later step of further concentrating A1PI. A1PI is then formulated with one or more uncharged excipients to a final concentration of 100 mg / mL to 200 mg / mL. This allows for the formulation of concentrated A1PI by adjusting the osmolality using uncharged excipients, while addressing the previously poor stability using charged excipients. [Means for solving the problem]

[0010] One embodiment of the present invention is that A1PI can be concentrated to at least 110 mg / mL in water using conventional TFF ultrafiltration and then formulated to a final concentration of 100 mg / mL to 200 mg / mL.

[0011] In some embodiments, the method of preparing a solution of A1PI by conventional TFF ultrafiltration is performed on water for injection (WFI).

[0012] In some embodiments, the method for preparing a concentrated solution of A1PI comprises, after the TFF step, a formulation comprising one or more uncharged excipients selected from the list consisting of sorbitol, serine, trehalose, alanine, sucrose, and mannitol, and combinations thereof. Preferably, the one or more uncharged excipients are alanine, sorbitol, or trehalose, and combinations thereof.

[0013] In some embodiments, the method of preparing a concentrated solution of A1PI comprises, after the TFF step, a formulation comprising one or more uncharged excipients at a concentration between 0.01 and 0.3 M. Preferably, the concentration of the one or more uncharged excipients is between 0.10 and 0.20 M. More preferably, the concentration of the one or more uncharged excipients is 0.17 M.

[0014] The pH is controlled to approximately neutral (about 6.6 to 7.4) without the use of buffers, but by the addition of formulation excipients, and is stable throughout storage. Preferably, the pH of the composition is 7.0.

[0015] In some embodiments, in the method of preparing a concentrated solution of A1PI, the osmolality of the solution is between 200 mOsm / Kg and 410 mOsm / Kg. In some embodiments, the osmolality of the solution is about 200, 240, 270, 300, 330, 360, 390, or 410 mOsm / Kg, or within a range defined by any two of the preceding values. Preferably, the osmolality of the solution is 300 mOsm / Kg.

[0016] In some embodiments, the method of preparing a concentrated solution of A1PI comprises the step of formulating, hi some embodiments, the concentration of A1PI after formulation is between 100 mg / mL and 200 mg / mL. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0017] Currently, A1PI solutions are commercially available (Prolastin-C, Grifols; Glassia, Shire; Zemaira, CSL; Aralast, Baxter) to treat human congenital protein deficiency (alpha-1 antitrypsin deficiency, AATD). One limitation common to all these products is that they contain relatively low concentrations of A1PI (approximately 20 to 50 mg / ml). For this reason, the only suitable route of administration for the treatment is weekly intravenous injection.

[0018] Long-term intravenous administration of A1PI to treat AATD is cumbersome, requires expert assistance, and can cause immediate hypersensitivity reactions. Thus, there is a long-standing unmet need for easier dosing for administration by patients at home without the assistance of a medical professional, which could significantly reduce the cost of treatment and make it suitable for long-term treatment. To enable a wider range of parenteral administration routes, the concentration of A1PI in the product needs to be increased. However, existing formulations are not capable of producing stable concentrated liquid A1PI based on current A1PI purification methods.

[0019] Surprisingly, the inventors have found that using conventional TFF ultrafiltration on water allows the production of high concentration A1PI of at least 110mg / ml without the use of further steps such as buffers and salts or SPTFF.The novelty of this step of the method is that it must be carried out in the absence of buffers and salts and in the presence of WFI, and then formulated by adding one or more uncharged excipients selected from the list consisting of sorbitol, serine, trehalose, alanine, sucrose, and mannitol, and combinations thereof, more preferably alanine, sorbitol, or trehalose, and combinations thereof.Importantly, the resulting composition is suitable for administration to humans, since it complies with the osmolality, stability, and viscosity values ​​required by regulatory authorities.

[0020] How to prepare concentrated A1PI solution One embodiment of the present invention discloses a method for preparing a composition of A1PI, comprising preparing a solution of A1PI by concentrating an initial solution of A1PI by tangential flow filtration (TFF) against water, wherein the final concentration of A1PI in the concentrated solution is at least 110 mg / ml.

[0021] One embodiment of the present invention discloses a method for preparing a composition of A1PI, wherein the step of TFF is carried out on water for injection (WFI).

[0022] In some embodiments, the method includes concentrating the A1PI solution, such that the final concentration of A1PI in the concentrated solution is between 110 mg / ml and 220 mg / ml. In some embodiments, the final concentration of A1PI in the concentrated solution is about 110, 130, 150, 180, 200, or 220 mg / ml, or within a range defined by any two of the foregoing values.

[0023] In some embodiments, the method of preparing a concentrated solution of A1PI comprises, after the TFF step, formulating the solution of A1PI with one or more uncharged excipients selected from the group consisting of amino acids, sugars, and polyols, including sorbitol, serine, trehalose, alanine, sucrose, and mannitol, and combinations thereof. Preferably, the A1PI solution is formulated with one or more uncharged excipients selected from the group consisting of alanine, sorbitol, or trehalose, and combinations thereof.

[0024] In some embodiments, the method of preparing a concentrated solution of A1PI comprises, after the TFF step, formulating with one or more uncharged excipients at a concentration between 0.01 and 0.3 M. Preferably, the concentration of the one or more uncharged excipients is between 0.10 and 0.20 M. More preferably, the concentration of the one or more uncharged excipients is 0.17 M.

[0025] The pH is controlled to approximately neutral (about 6.6 to 7.4) without the use of buffers, but by the addition of formulation excipients, and is stable throughout storage. Preferably, the pH of the composition is 7.0.

[0026] In some embodiments, in the method of preparing a concentrated solution of A1PI, the osmolality of the solution is between 200 mOsm / Kg and 410 mOsm / Kg. In some embodiments, the osmolality of the solution is about 200, 240, 270, 300, 330, 360, 390, or 410 mOsm / Kg, or within a range defined by any two of the preceding values. Preferably, the osmolality of the solution is 300 mOsm / Kg.

[0027] In some embodiments, the method of preparing a concentrated solution of A1PI comprises the step of formulating, hi some embodiments, the concentration of A1PI after formulation is between 100 mg / mL and 200 mg / mL. EXAMPLES

[0028] Example 1 Procedures for high concentration A1PI methods according to the prior art The methods for Alpha-1 MP (US Pat. No. 6,462,180), Liquid Alpha (US Pat. No. 9,616,126), and Alpha-1 HC (US Patent Publication No. 20110237781) use a conventional recirculation (TFF) UF step to concentrate A1PI up to 50 mg / ml, followed by a diafiltration (DF) step with water to remove buffer salts and prepare the bulk for the final formulation, adjusting the protein to 50 mg / ml. The formulations consist of 20 mM sodium phosphate buffer to maintain pH, and either salts (Alpha-1 MP and Alpha-1 HC; NaCl 100 mM or 150 mM, respectively) or amino acids (Liquid Alpha; Alanine 200-300 mM) to adjust osmolality to isotonic conditions of 200-410 mOsm / kg. Additionally, other A1PI formulations are prepared similarly (Table 1).

[0029] [Table 1]

[0030] In contrast to the prior art methods, the present invention does not require the use of buffers and salts to obtain an A1PI concentration of more than 100 mg / ml after formulation. After ultrafiltration, the A1PI concentration exceeds 110 mg / ml, and subsequent addition and mixing of excipients and pH adjustment can obtain an A1PI concentration of more than 100 mg / ml.

[0031] Example 2 Characteristics of A1PI purification methods using single-pass tangential flow filtration (SPTFF) and conventional TFF ultrafiltration Table 2 shows that the composition characteristics of A1PI obtained by the method of the present invention using TFF ultrafiltration are not different from those obtained by using the additional step of SPTFF.For example, the potency and specific activity of A1PI obtained by both methods are similar.On the other hand, pH is about 7 in all cases, and osmolality is about 300mOsm / kg.On the other hand, when using both methods, the percentage of aggregates is less than 0.1.Therefore, there is no significant difference between the A1PI preparation obtained by using the additional step of SPTFF and the method of the present invention.

[0032] [Table 2]

[0033] Example 3 High-concentration A1PI obtained by TFF ultrafiltration Methods for achieving compositions containing highly concentrated A1PI that can be used for many therapeutic indications include application of conventional TFF ultrafiltration.

[0034] In Table 3, the first three columns (batches P14-26, P15-10, and P15-22) were prepared using conventional TFF ultrafiltration in WFI, while the last column represents the average of three batches of A1PI obtained by using an additional step of SPTFF in WFI before formulation. The concentration of A1PI obtained using conventional TFF ultrafiltration was not significantly different from that obtained using SPTFF. Moreover, the potency, specific activity, and molecular weight of A1PI obtained by both methods are very similar.

[0035] [Table 3]

[0036] Example 4 Protein concentration of A1PI when alanine is used as a non-charged excipient in the formulation process according to the method of the present invention In the method of the present invention, after the TFF step, the solution of A1PI is precisely diluted with concentrated excipient solution to the target concentration (at least 10% (w / v)) to achieve the osmolarity and pH adjustment when formulated with one or more uncharged excipients. This method allows achieving high A1PI concentrations while at the same time resulting in a stable formulation of the liquid pharmaceutical product without the use of buffers, salts, or surfactants.

[0037] Table 4 shows the preparations of A1PI after formulation with various concentrations of alanine. Several parameters were evaluated, including osmolality, total protein, and DLS temperature of unfolding, and DLS radius of folded protein.

[0038] Control of osmolarity using alanine compensates for the lower protein concentration, according to the results in Table 4, which show a direct, linear relationship between osmolarity and the amount of alanine added at A1PI (142 mg / mL) concentration. DLS shows no effect on A1PI stability over the range of alanine tested.

[0039] [Table 4]

[0040] definition As used herein, section headings are for organizational purposes only and in no way limit the subject matter described. All literature and similar materials cited in this application, including but not limited to patents, patent applications, articles, books, papers, and Internet web pages, are expressly incorporated by reference in their entirety for all purposes. In the event that the definitions of terms in the incorporated references appear to differ from the definitions provided in the present teachings, the definitions provided in the present teachings shall prevail. It is understood that "about" is implicit before the temperatures, concentrations, times, etc. discussed in the present teachings, so that minor and insignificant deviations are within the scope of the present teachings herein.

[0041] In this application, the use of the singular includes the plural unless specifically stated otherwise, and the use of "comprise," "comprises," "comprising," "contain," "contains," "containing," "include," "includes," and "including" is not intended to be limiting.

[0042] As used in this specification and the claims, the singular forms "a," "an," and "the" include plural references unless the content clearly dictates otherwise.

[0043] As used herein, "about" means a quantity, level, value, number, frequency, percentage, dimension, size, amount, mass, or length that varies by up to 20, 15, 10, 9, 8, 7, 6, 5, 4, 3, 2, or 1% relative to the reference quantity, level, value, number, frequency, percentage, dimension, size, amount, mass, or length.

[0044] While the present disclosure is directed to certain specific embodiments and examples, those skilled in the art will appreciate that the present disclosure extends beyond the specifically disclosed embodiments to other alternative and / or use embodiments and obvious modifications and equivalents thereof. Moreover, while several variations of the embodiments have been shown and described in detail, other modifications that are within the scope of the present disclosure will be readily apparent to those skilled in the art based on the present disclosure.

[0045] Also, various combinations or subcombinations of the specific features and aspects of the embodiments can be made and are considered to be within the scope of the present disclosure. It is understood that various features and aspects of the disclosed embodiments can be combined with or substituted for one another to form various modes or embodiments of the present disclosure. Thus, the scope of the present disclosure disclosed herein should not be limited by the specific disclosed embodiments described above.

[0046] It should be understood, however, that this detailed description, while indicating preferred embodiments of the present disclosure, is given by way of example only, since various changes and modifications within the spirit and scope of the disclosure will become apparent to those skilled in the art.

[0047] The terms used in the description provided herein are not to be construed in a limiting or restrictive manner. Rather, the terms are merely utilized in conjunction with detailed descriptions of embodiments of systems, methods, and related components. Furthermore, an embodiment may include several novel features, no one of which is solely responsible for its desirable attributes, nor is it considered essential to practice the embodiments described herein.

[0048] In this document, the term tangential flow filtration (TFF) refers to the process of product concentration by volume reduction and buffer exchange by diafiltration. TFF typically utilizes ultrafiltration membranes with nominal molecular weight cutoffs (NMWLs) ranging from 1 to 1000 kDa to retain molecules of various sizes. Traditional TFF requires multiple passes through the system, using pumps to move the feed through the filter and then pumping the retentate back to a tank for another pass through the system.

[0049] In this document, the term Single Pass Tangential Flow Filtration (SPTFF) refers to a filtration method that utilizes a longer feed channel path to reach the desired conversion after a single pass through the pump. Because there is no recirculation loop, the retentate flows downstream, resulting in reduced hold-up volume, eliminating the need for pool tanks and allowing for continuous processing.

Claims

1. A method for preparing a composition of A1PI, comprising the step of preparing a solution of A1PI by concentrating an initial solution of A1PI by tangential flow filtration (TFF) on water for injection (WFI), wherein the final concentration of A1PI in the concentrated solution is between 110 mg / ml and 220 mg / ml, and wherein the method does not include a further step of single pass tangential flow filtration (SPTFF) after tangential flow filtration (TFF) on water for injection (WFI).

2. 2. The method of preparing the composition of claim 1, wherein the final concentration of A1PI in the concentrated solution is 110, 130, 150, 180, 200, or 220 mg / ml, or within a range defined by any two of the preceding values.

3. 3. The method for preparing the composition of claim 1 or 2, wherein after the TFF step, the solution of A1PI is formulated with one or more uncharged excipients selected from the list consisting of sorbitol, serine, trehalose, alanine, sucrose, and mannitol, and combinations thereof.

4. 4. The method of preparing the composition of claim 3, wherein after the TFF step, the solution of A1PI is formulated with sorbitol, trehalose, alanine, or a combination thereof.

5. 5. A method for preparing a composition according to any one of claims 1 to 4, wherein the one or more uncharged excipients are at a concentration between 0.01 and 0.3M.

6. 6. The method of preparing the composition of claim 5, wherein the one or more non-charged excipients are at a concentration between 0.10 and 0.20 M.

7. 7. A method for preparing a composition according to any one of claims 1 to 6, wherein the pH is between 6.6 and 7.

4.

8. 8. A method for preparing the composition of claim 7, wherein the pH is 7.

0.

9. 9. A method for preparing a composition according to any one of claims 1 to 8, wherein the osmolality is between 200 mOsm / Kg and 410 mOsm / Kg.

10. 10. A method for preparing the composition of claim 9, wherein the osmolality is 300 mOsm / Kg.

11. 11. A method for preparing a composition according to any one of claims 1 to 10, comprising the step of formulation.

12. A method for preparing a composition according to any one of claims 1 to 11, wherein the concentration of A1PI after formulation is between 100 mg / mL and 200 mg / mL.

Citation Information

Patent Citations

  • Composition comprising highly-concentrated alpha1 proteinase inhibitor and method for obtaining the same

    JP2020019765A

  • Method of preparing alpha-1 proteinase inhibitor

    US20110237781A1

  • Method of preparing alpha-1 proteinase inhibitor

    US6462180B1

  • Composition, method, and kit for alpha-1 proteinase inhibitor

    US9616126B2