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建立单抗中氨基酸取代对阳离子交换层析影响的模型。

Modeling the impact of amino acid substitution in a monoclonal antibody on cation exchange chromatography.

机构信息

Late Stage DSP Development, Boehringer Ingelheim, Biberach, Germany.

Institute of Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering, Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany.

出版信息

Biotechnol Bioeng. 2021 Aug;118(8):2923-2933. doi: 10.1002/bit.27798. Epub 2021 May 27.

Abstract

A vital part of biopharmaceutical research is decision making around which lead candidate should be progressed in early-phase development. When multiple antibody candidates show similar biological activity, developability aspects are taken into account to ease the challenges of manufacturing the potential drug candidate. While current strategies for developability assessment mainly focus on drug product stability, only limited information is available on how antibody candidates with minimal differences in their primary structure behave during downstream processing. With increasing time-to-market pressure and an abundance of monoclonal antibodies (mAbs) in development pipelines, developability assessments should also consider the ability of mAbs to integrate into the downstream platform. This study investigates the influence of amino acid substitutions in the complementarity-determining region (CDR) of a full-length IgG1 mAb on the elution behavior in preparative cation exchange chromatography. Single amino acid substitutions within the investigated mAb resulted in an additional positive charge in the light chain (L) and heavy chain (H) CDR, respectively. The mAb variants showed an increased retention volume in linear gradient elution compared with the wild-type antibody. Furthermore, the substitution of tryptophan with lysine in the H-CDR3 increased charge heterogeneity of the product. A multiscale in silico analysis, consisting of homology modeling, protein surface analysis, and mechanistic chromatography modeling increased understanding of the adsorption mechanism. The results reveal the potential effects of lead optimization during antibody drug discovery on downstream processing.

摘要

生物制药研究的一个重要部分是围绕哪个先导候选物应在早期开发阶段推进做出决策。当多个抗体候选物表现出相似的生物学活性时,可开发性方面的因素将被考虑在内,以减轻制造潜在药物候选物的挑战。虽然当前的可开发性评估策略主要集中在药物产品稳定性上,但对于在下游处理过程中具有最小结构差异的抗体候选物的行为,只有有限的信息可用。随着推向市场的时间压力增加和开发管道中大量单克隆抗体 (mAbs) 的出现,可开发性评估还应考虑 mAbs 整合到下游平台的能力。本研究调查了全长 IgG1 mAb 互补决定区 (CDR) 中的氨基酸取代对制备性阳离子交换色谱中洗脱行为的影响。在所研究的 mAb 中,单个氨基酸取代分别导致轻链 (L) 和重链 (H) CDR 中的额外正电荷。与野生型抗体相比,mAb 变体在线性梯度洗脱中显示出更大的保留体积。此外,在 H-CDR3 中用赖氨酸取代色氨酸增加了产物的电荷异质性。由同源建模、蛋白质表面分析和机械色谱建模组成的多尺度计算分析增加了对吸附机制的理解。结果揭示了抗体药物发现过程中先导优化对下游处理的潜在影响。

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