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重链与轻链结合:构建对称、双价的IgG样双特异性抗体。

Bringing the Heavy Chain to Light: Creating a Symmetric, Bivalent IgG-Like Bispecific.

作者信息

Ramasubramanian Anusuya, Tennyson Rachel, Magnay Maureen, Kathuria Sagar, Travaline Tara, Jain Annu, Lord Dana M, Salemi Megan, Sullivan Caitlin, Magnay Tristan, Hu Jiali, Bric-Furlong Eva, Rival Pierrick, Zhou Yanfeng, Hoffmann Dietmar, Brondyk William, Radošević Katarina, Chowdhury Partha S

机构信息

Biologics Research, Sanofi R&D, 49 New York Avenue, Framingham, MA 01701, USA.

Biologics Research, Sanofi R&D, 13 Quai Jules Guesde, 94403 Vitry-sur-Seine, France.

出版信息

Antibodies (Basel). 2020 Nov 6;9(4):62. doi: 10.3390/antib9040062.

Abstract

Bispecific molecules are biologically significant, yet their complex structures pose important manufacturing and pharmacokinetic challenges. Nevertheless, owing to similarities with monoclonal antibodies (mAbs), IgG-like bispecifics conceptually align well with conventional expression and manufacturing platforms and often exhibit potentially favorable drug metabolism and pharmacokinetic (DMPK) properties. However, IgG-like bispecifics do not possess target bivalency and current designs often require tedious engineering and purification to ensure appropriate chain pairing. Here, we present a near-native IgG antibody format, the 2xVH, which can create bivalency for each target or epitope and requires no engineering for cognate chain pairing. In this modality, two different variable heavy (VH) domains with distinct binding specificities are grafted onto the first constant heavy (CH1) and constant light (CL) domains, conferring the molecule with dual specificity. To determine the versatility of this format, we characterized the expression, binding, and stability of several previously identified soluble human VH domains. By grafting these domains onto an IgG scaffold, we generated several prototype 2xVH IgG and Fab molecules that display similar properties to mAbs. These molecules avoided the post-expression purification necessary for engineered bispecifics while maintaining a capacity for simultaneous dual binding. Hence, the 2xVH format represents a bivalent, bispecific design that addresses limitations of manufacturing IgG-like bispecifics while promoting biologically-relevant dual target engagement.

摘要

双特异性分子具有重要的生物学意义,但其复杂的结构给生产制造和药代动力学带来了重大挑战。尽管如此,由于与单克隆抗体(mAb)有相似之处,IgG样双特异性分子在概念上与传统的表达和生产平台契合良好,并且通常表现出潜在有利的药物代谢和药代动力学(DMPK)特性。然而,IgG样双特异性分子不具备靶标双价性,目前的设计往往需要繁琐的工程和纯化步骤以确保合适的链配对。在此,我们提出一种近乎天然的IgG抗体形式,即2xVH,它可为每个靶标或表位创造双价性,且无需进行同源链配对的工程设计。在这种形式中,将两个具有不同结合特异性的可变重链(VH)结构域嫁接到第一个恒定重链(CH1)和恒定轻链(CL)结构域上,赋予分子双重特异性。为了确定这种形式的通用性,我们对几个先前鉴定的可溶性人VH结构域的表达、结合和稳定性进行了表征。通过将这些结构域嫁接到IgG支架上,我们生成了几个原型2xVH IgG和Fab分子,它们表现出与mAb相似的特性。这些分子避免了工程化双特异性分子所需的表达后纯化,同时保持了同时进行双重结合的能力。因此,2xVH形式代表了一种双价、双特异性设计,它解决了生产IgG样双特异性分子的局限性,同时促进了与生物学相关的双靶标结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c652/7709125/93febdcf42e8/antibodies-09-00062-g001.jpg

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