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下一代马来酰亚胺(NGMs)在位点选择性抗体偶联中的应用。

Application of Next-Generation Maleimides (NGMs) to Site-Selective Antibody Conjugation.

作者信息

Morais Maurício, Forte Nafsika, Chudasama Vijay, Baker James R

机构信息

Department of Chemistry, University College London, London, UK.

出版信息

Methods Mol Biol. 2019;2033:15-24. doi: 10.1007/978-1-4939-9654-4_2.

Abstract

Site-selective antibody conjugation is widely recognized as a key strategy for the optimum construction of antibody-drug conjugates (ADCs). Achieving such bioconjugation directly onto native antibodies would represent the ideal solution, as it would afford greatly improved homogeneity whilst avoiding the need for genetic engineering, and even allow the repurposing of existing antibodies "off-the shelf." Here we describe a protocol for the use of next-generation maleimides (NGMs) for the selective modification of the four interchain disulfide bonds present in a typical IgG1 antibody format. These reagents retain the efficiency of classical maleimides whilst serving to rebridge each reduced disulfide bond, affording one attachment per disulfide. The approach is simple, uses readily available reagents, and generates robustly stable conjugates which are ideal for in vitro or in vivo applications. In addition to use in the construction of ADCs these reagents can also be used to develop antibody conjugates for imaging, bispecifics, and broadly for use across biology and medicine.

摘要

位点选择性抗体偶联被广泛认为是构建最佳抗体药物偶联物(ADC)的关键策略。直接在天然抗体上实现这种生物偶联将是理想的解决方案,因为这将大大提高均一性,同时避免基因工程的需要,甚至可以直接重新利用现有的“现货”抗体。在此,我们描述了一种使用下一代马来酰亚胺(NGM)对典型IgG1抗体形式中存在的四个链间二硫键进行选择性修饰的方案。这些试剂保留了经典马来酰亚胺的效率,同时用于重新桥接每个还原的二硫键,每个二硫键提供一个连接位点。该方法简单,使用容易获得的试剂,并产生非常稳定的偶联物,非常适合体外或体内应用。除了用于构建ADC外,这些试剂还可用于开发用于成像的抗体偶联物、双特异性抗体,广泛应用于生物学和医学领域。

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