Taurine, a Naturally Occurring Amino Acid, as a Physical Stability Enhancer of Different Monoclonal Antibodies.

IF 5 3区 医学 Q1 PHARMACOLOGY & PHARMACY AAPS Journal Pub Date : 2024-02-14 DOI:10.1208/s12248-024-00893-y
Shravan Sreenivasan, Anurag S Rathore
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Abstract

Degradation of therapeutic monoclonal antibodies (mAbs) is a major concern as it affects efficacy, shelf-life, and safety of the product. Taurine, a naturally occurring amino acid, is investigated in this study as a potential mAb stabilizer with an extensive analytical characterization to monitor product degradation. Forced degradation of trastuzumab biosimilar (mAb1)-containing samples by thermal stress for 30 min resulted in high-molecular-weight species by more than 65% in sample without taurine compared to the sample with taurine. Samples containing mAb1 without taurine also resulted in higher Z-average diameter, altered protein structure, higher hydrophobicity, and lower melting temperature compared to samples with taurine. The stabilizing effect of taurine was retained at different mAb and taurine concentrations, time, temperatures, and buffers, and at the presence of polysorbate 80 (PS80). Even the lowest taurine concentration (10 mM) considered in this study, which is in the range of taurine levels in amino acid injections, resulted in enhanced mAb stability. Taurine-containing samples resulted in 90% less hemolysis than samples containing PS80. Additionally, mAb in the presence of taurine showed enhanced stability upon subjecting to stress with light of 365 nm wavelength, combination of light and H2O2, and combination of Fe2+ and H2O2, as samples containing mAb without taurine resulted in increased degradation products by more than 50% compared to samples with taurine upon subjecting to these stresses for 60 min. In conclusion, the presence of taurine enhanced physical stability of mAb by preventing aggregate formation, and the industry can consider it as a new mAb stabilizer.

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天然氨基酸牛磺酸作为不同单克隆抗体的物理稳定性增强剂
治疗性单克隆抗体(mAb)的降解是一个令人担忧的主要问题,因为它会影响产品的疗效、保质期和安全性。牛磺酸是一种天然氨基酸,本研究将其作为一种潜在的 mAb 稳定剂进行研究,并通过广泛的分析表征来监测产品降解情况。通过热应力强制降解含曲妥珠单抗生物仿制药(mAb1)的样品 30 分钟,与含牛磺酸的样品相比,不含牛磺酸的样品中高分子量物质的降解率超过 65%。与含牛磺酸的样品相比,不含牛磺酸的含 mAb1 样品的 Z 平均直径更高,蛋白质结构发生变化,疏水性更高,熔化温度更低。在不同的 mAb 和牛磺酸浓度、时间、温度、缓冲液以及聚山梨醇酯 80(PS80)存在的情况下,牛磺酸的稳定作用仍然存在。即使是本研究中考虑的最低牛磺酸浓度(10 mM),即氨基酸注射液中的牛磺酸浓度范围,也能增强 mAb 的稳定性。与含 PS80 的样品相比,含牛磺酸的样品溶血率降低了 90%。此外,含有牛磺酸的 mAb 在受到波长为 365 纳米的光、光与 H2O2 的组合以及 Fe2+ 与 H2O2 的组合的应力作用时显示出更强的稳定性,因为与含有牛磺酸的样品相比,不含牛磺酸的 mAb 样品在受到这些应力作用 60 分钟后,降解产物增加了 50%以上。总之,牛磺酸的存在可防止聚集体的形成,从而提高 mAb 的物理稳定性,业界可将其视为一种新型 mAb 稳定剂。
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来源期刊
AAPS Journal
AAPS Journal 医学-药学
CiteScore
7.80
自引率
4.40%
发文量
109
审稿时长
1 months
期刊介绍: The AAPS Journal, an official journal of the American Association of Pharmaceutical Scientists (AAPS), publishes novel and significant findings in the various areas of pharmaceutical sciences impacting human and veterinary therapeutics, including: · Drug Design and Discovery · Pharmaceutical Biotechnology · Biopharmaceutics, Formulation, and Drug Delivery · Metabolism and Transport · Pharmacokinetics, Pharmacodynamics, and Pharmacometrics · Translational Research · Clinical Evaluations and Therapeutic Outcomes · Regulatory Science We invite submissions under the following article types: · Original Research Articles · Reviews and Mini-reviews · White Papers, Commentaries, and Editorials · Meeting Reports · Brief/Technical Reports and Rapid Communications · Regulatory Notes · Tutorials · Protocols in the Pharmaceutical Sciences In addition, The AAPS Journal publishes themes, organized by guest editors, which are focused on particular areas of current interest to our field.
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