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基于VHH的IgG样双特异性和三特异性抗体平台的生物物理和生化特性

Biophysical and biochemical characterization of a VHH-based IgG-like bi- and trispecific antibody platform.

作者信息

Pekar Lukas, Busch Michael, Valldorf Bernhard, Hinz Steffen C, Toleikis Lars, Krah Simon, Zielonka Stefan

机构信息

Institute for Organic Chemistry and Biochemistry , Technische Universität Darmstadt, Darmstadt, Germany.

Discovery Pharmacology, Merck KGaA , Darmstadt, Germany.

出版信息

MAbs. 2020 Jan-Dec;12(1):1812210. doi: 10.1080/19420862.2020.1812210.

Abstract

Here, we report the characterization of a VHH-derived IgG-like bi- and trispecific antibody platform that essentially relies on the replacement of the VH and VL regions of a conventional antibody by two independently functioning VHH domains. Consequently, a VHH is engrafted onto constant region CH1 while the other VHH-based paratope is engrafted on the constant region of the light chain, Cκ or Cλ, resulting in a tetravalent bispecific IgG-like molecule. Combined with a heavy chain heterodimerization technique, this platform allows facile engineering of bi- and trispecific antibodies with flexible valencies. We demonstrate the general applicability of this generic platform approach and elaborate on the limitations of specific formats.

摘要

在此,我们报道了一种源自VHH的IgG样双特异性和三特异性抗体平台的特性,该平台主要依赖于用两个独立发挥功能的VHH结构域替换传统抗体的VH和VL区域。因此,一个VHH被嫁接到恒定区CH1上,而另一个基于VHH的互补决定区被嫁接到轻链的恒定区Cκ或Cλ上,从而产生一个四价的双特异性IgG样分子。结合重链异源二聚化技术,该平台允许轻松构建具有灵活价态的双特异性和三特异性抗体。我们展示了这种通用平台方法的普遍适用性,并阐述了特定形式的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e9b/7531565/e5193df9c7e9/KMAB_A_1812210_F0001_OC.jpg

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