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通过 LC-MS/MS 在单克隆抗体稳定性评估中鉴定谷氨酸的山梨糖醇酯化作用。

Identification of sorbitol esterification of glutamic acid by LC-MS/MS in a monoclonal antibody stability assessment.

机构信息

Analytical Development Department, Coherus BioSciences, Camarillo, California, United States of America.

出版信息

PLoS One. 2024 May 2;19(5):e0295735. doi: 10.1371/journal.pone.0295735. eCollection 2024.

Abstract

The stability of monoclonal antibodies (mAbs) is vital for their therapeutic success. Sorbitol, a common mAb stabilizer used to prevent aggregation, was evaluated for any potential adverse effects on the chemical stability of mAb X. An LC-MS/MS based analysis focusing on the post-translational modifications (PTMs) of mAb X was conducted on samples that had undergone accelerated aging at 40°C. Along with PTMs that are known to affect mAbs' structure function and stability (such as deamidation and oxidation), a novel mAb PTM was discovered, the esterification of glutamic acid by sorbitol. Incubation of mAb X with a 1:1 ratio of unlabeled sorbitol and isotopically labeled sorbitol (13C6) further corroborated that the modification was the consequence of the esterification of glutamic acid by sorbitol. Levels of esterification varied across glutamic acid residues and correlated with incubation time and sorbitol concentration. After 4 weeks of accelerated stability with isotopically labeled sorbitol, it was found that 16% of the total mAb possesses an esterified glutamic acid. No esterification was observed at aspartic acid sites despite the free carboxylic acid side chain. This study unveils a unique modification of mAbs, emphasizing its potential significance for formulation and drug development.

摘要

单克隆抗体(mAbs)的稳定性对其治疗成功至关重要。山梨醇是一种常用的 mAb 稳定剂,用于防止聚集,我们评估了其对 mAb X 化学稳定性的任何潜在不良影响。在 40°C 下进行加速老化后,我们使用基于 LC-MS/MS 的分析方法重点研究了 mAb X 的翻译后修饰(PTMs)。除了已知会影响 mAbs 结构功能和稳定性的 PTMs(如脱酰胺和氧化)外,我们还发现了一种新型 mAb PTM,即山梨醇对谷氨酸的酯化。mAb X 与未标记的山梨醇和同位素标记的山梨醇(13C6)以 1:1 的比例孵育进一步证实,这种修饰是山梨醇酯化谷氨酸的结果。酯化水平在不同的谷氨酸残基之间存在差异,并与孵育时间和山梨醇浓度相关。在用同位素标记的山梨醇进行 4 周的加速稳定性研究后,发现 16%的总 mAb 带有酯化的谷氨酸。尽管天冬氨酸侧链带有游离羧酸,但在天冬氨酸位点未观察到酯化。这项研究揭示了 mAbs 的一种独特修饰,强调了其在配方和药物开发方面的潜在意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ee5/11065200/82ab6e620b74/pone.0295735.g001.jpg

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