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Asymmetric Fc Engineering for Bispecific Antibodies with Reduced Effector Function

机译:具有降低的效应子功能的双特异性抗体的不对称Fc工程

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摘要

Asymmetric bispecific antibodies are a rapidly expanding therapeutic antibody class, designed to recognize two different target epitopes concurrently to achieve novel functions not available with normal antibodies. Many therapeutic designs require antibodies with reduced or silenced effector function. Although many solutions have been described in the literature to knockout effector function, to date all of them have involved the use of a specific antibody subtype (e.g., IgG2 or IgG4), or symmetric mutations in the lower hinge or CH2 domain of traditional homodimeric monospecific antibodies. In the context of a heterodimeric Fc, we describe novel asymmetric Fc mutations with reduced or silenced effector function in this article. These heteromultimeric designs contain asymmetric charged mutations in the lower hinge and the CH2 domain of the Fc. Surface plasmon resonance showed that the designed mutations display much reduced binding to all of the Fc gamma receptors and C1q. Ex vivo ADCC and CDC assays showed a consistent reduction in activity. Differential scanning calorimetry showed increased thermal stability for some of the designs. Finally, the asymmetric nature of the introduced charged mutations allowed for separation of homodimeric impurities by ion exchange chromatography, providing, as an added benefit, a purification strategy for the production of bispecific antibodies with reduced or silenced effector function.
机译:非对称双特异性抗体是一种快速发展的治疗性抗体,旨在同时识别两个不同的目标表位,以实现普通抗体无法提供的新功能。许多治疗设计需要具有降低或沉默的效应子功能的抗体。尽管文献中已经描述了许多敲除效应子功能的解决方案,但迄今为止,所有解决方案都涉及使用特定抗体亚型(例如IgG2或IgG4)或传统同型二聚体单特异性抗体的下铰链或CH2结构域中的对称突变抗体。在异二聚体Fc的背景下,我们在本文中描述了具有减少或沉默的效应子功能的新型不对称Fc突变。这些异源多聚体设计在Fc的下部铰链和CH2域中包含不对称带电突变。表面等离振子共振表明,设计的突变显示与所有Fcγ受体和C1q的结合大大减少。离体ADCC和CDC分析显示活性持续降低。差示扫描量热法显示了某些设计的增加的热稳定性。最后,引入的带电突变的不对称性质允许通过离子交换色谱分离同二聚体杂质,作为额外的好处,提供了一种纯化策略,用于生产效应子功能降低或沉默的双特异性抗体。

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