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Understanding the Relationship Between Biotherapeutic Protein Stability and Solid–Liquid Interfacial Shear in Constant Region Mutants of IgG1 and IgG4

机译:了解恒定蛋白突变体IgG1和IgG4中生物治疗性蛋白质稳定性与固液界面剪切之间的关系

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摘要

Relative stability of therapeutic antibody candidates is currently evaluated primarily through their response to thermal degradation, yet this technique is not always predictive of stability in manufacture, shipping, and storage. A rotating disk shear device is proposed that produces defined shear conditions at a known solid–liquid interface to measure stability in this environment. Five variants of IgG1 and IgG4 antibodies were created using combinations of two discrete triple amino acid sequence mutations denoted TM and YTE. Antibodies were ranked for stability based on shear device output (protein decay coefficient, PDC), and compared with accelerated thermal stability data and the melting temperature of the CH2 domain (Tm1) from differential scanning calorimetry to investigate technique complimentarity. Results suggest that the techniques are orthogonal, with thermal methods based on intramolecular interaction and shear device stability based on localized unfolding revealing less stable regions that drive aggregation. Molecular modeling shows the modifications’ effects on the antibody structures and indicates a possible role for Fc conformation and Fab-Fc docking in determining suspended protein stability. The data introduce the PDC value as an orthogonal stability indicator, complementary to traditional thermal methods, allowing lead antibody selection based on a more full understanding of process stability. © 2013 The Authors. Journal of Pharmaceutical Sciences published by Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 103:437–444, 2014
机译:目前主要通过治疗抗体候选物对热降解的反应来评估其相对稳定性,但是该技术并不总是能够预测制造,运输和储存的稳定性。提出了一种旋转盘剪切装置,该装置在已知的固液界面上产生确定的剪切条件,以测量该环境下的稳定性。 IgG1和IgG4抗体的五个变体是使用两个离散的三氨基酸序列突变(分别表示为TM和YTE)的组合产生的。根据剪切装置的输出(蛋白质衰变系数,PDC)对抗体进行稳定性排名,并与加速热稳定性数据和差示扫描量热法测定的CH2域的熔化温度(Tm1)进行比较,以研究技术的互补性。结果表明,该技术是正交的,基于分子内相互作用的热方法和基于局部展开的剪切装置稳定性揭示了驱动聚集的不稳定区域。分子建模显示了修饰对抗体结构的影响,并表明了Fc构象和Fab-Fc对接在确定悬浮蛋白稳定性中的可能作用。数据引入了PDC值作为正交稳定性指标,是对传统热方法的补充,允许基于对过程稳定性的更全面了解来选择先导抗体。 ©2013作者。药物科学杂志,由Wiley Periodicals,Inc.和美国药剂师协会J Pharm Sci 103:437–444,2014年出版

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