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Development of a novel affinity chromatography resin for platform purification of bispecific antibodies with modified protein a binding avidity

机译:新型亲和层析树脂的开发可用于平台化纯化具有修饰蛋白a结合亲和力的双特异性抗体

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摘要

There is strong interest in the production of bispecific monoclonal antibodies that can simultaneously bind two distinct targets or epitopes to achieve novel mechanisms of action and efficacy. Regeneron's bispecific technology, based upon a standard IgG, consists of a heterodimer of two different heavy chains, and a common light chain. Coexpression of two heavy chains leads to the formation of two parental IgG impurities, the removal of which is facilitated by a dipeptide substitution in the Fc portion of one of the heavy chains that ablates Fc Protein A binding. Therefore, the affinity capture (Protein A) step of the purification process must perform both bulk capture and high resolution of these mAb impurities, a task current commercially available resins are not designed for. Resolution can be further impaired by the ability of Protein A to bind some antibodies in the variable region of the heavy chain (VH). This article details development of a novel Protein A resin. This resin combines an alkali stable ligand with a base matrix exhibiting excellent mass transfer properties to allow high capacity single step capture and resolution of bispecific antibodies (bsAbs) with high yields. The developed resin, named MabSelect SuRe™ pcc, is implemented in GMP production processes for several bsAbs. © 2018 The Authors Biotechnology Progress published by Wiley Periodicals, Inc. on behalf of American Institute of Chemical Engineers Biotechnol. Prog., 34:650–658, 2018
机译:可以同时结合两个不同的靶标或表位以实现新的作用机制和功效的双特异性单克隆抗体的生产引起了极大的兴趣。 Regeneron的双特异性技术基于标准IgG,由两条不同的重链和一条共同的轻链组成的异二聚体组成。两个重链的共表达导致形成两个亲本IgG杂质,可通过消除Fc蛋白A结合的重链之一的Fc部分中的二肽取代来促进其去除。因此,纯化过程的亲和捕获(蛋白质A)步骤必须同时进行这些mAb杂质的批量捕获和高分辨率分离,目前尚未设计出可商购的树脂。蛋白A结合重链(VH)可变区中的某些抗体的能力可能进一步削弱分离度。本文详细介绍了新型蛋白A树脂的开发。该树脂将碱稳定的配体与具有出色传质特性的基础基质相结合,可实现高容量单步捕获并以高收率分离双特异性抗体(bsAbs)。这种开发的树脂名为MabSelect SuRe™pcc,已在几种bsAb的GMP生产过程中实施。 ©2018 The Authors Biotechnology Progress由Wiley Periodicals,Inc.代表美国化学工程师学会生物技术研究所出版。 Prog。,34:650–658,2018

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