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生物制药制剂中聚山梨醇酯20的降解:游离脂肪酸的定量、颗粒的表征及降解机制的深入研究

Polysorbate 20 Degradation in Biopharmaceutical Formulations: Quantification of Free Fatty Acids, Characterization of Particulates, and Insights into the Degradation Mechanism.

作者信息

Tomlinson Anthony, Demeule Barthélemy, Lin Baiwei, Yadav Sandeep

机构信息

Late Stage Pharmaceutical Development and ‡Discovery Chemistry, Genentech Inc. , 1 DNA Way, South San Francisco, California 94080, United States.

出版信息

Mol Pharm. 2015 Nov 2;12(11):3805-15. doi: 10.1021/acs.molpharmaceut.5b00311. Epub 2015 Oct 13.

DOI:10.1021/acs.molpharmaceut.5b00311
PMID:26419339
Abstract

Polysorbate 20 (PS20), a commonly used surfactant in biopharmaceuticals, showed degradation upon long-term (∼18-36 months) storage of two monoclonal antibody (mAb, mAb-A, and mAb-B) drug products at 2-8 °C. The PS20 degradation resulted in the accumulation of free fatty acids (FFA), which ultimately precipitated to form particles upon long-term storage. This study documents the development, qualification, and application of a method for FFA quantification in soluble and insoluble fraction of protein formulation. The method was applied to the quantification of capric acid, lauric acid, myristic acid, palmitic/oleic acid, and stearic acid in placebo as well as active protein formulations on stability. Quantification of FFA in both the soluble and insoluble fraction of mAb-A and mAb-B provided a better mechanistic understanding of PS20 degradation and the dynamics of subsequent fatty acid particle formation. Additionally, the use of this method for monitoring and quantitation of the FFA on real time storage stability appears to aid in identifying batches with higher probability for particulate formation upon extended storage at 5 °C.

摘要

聚山梨醇酯20(PS20)是生物制药中常用的表面活性剂,在两种单克隆抗体(mAb,mAb - A和mAb - B)药物产品于2至8°C长期(约18 - 36个月)储存时会发生降解。PS20的降解导致游离脂肪酸(FFA)积累,长期储存后最终沉淀形成颗粒。本研究记录了一种用于蛋白质制剂可溶和不溶部分中FFA定量方法的开发、验证及应用。该方法用于定量安慰剂以及活性蛋白质制剂稳定性研究中的癸酸、月桂酸、肉豆蔻酸、棕榈酸/油酸和硬脂酸。对mAb - A和mAb - B的可溶和不溶部分中的FFA进行定量,能更好地从机理上理解PS20的降解以及后续脂肪酸颗粒形成的动态过程。此外,使用该方法实时监测和定量FFA在储存稳定性方面的情况,似乎有助于识别在5°C下长期储存时更有可能形成颗粒的批次。

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