Generation of human bispecific common light chain antibodies by combining animal immunization and yeast display

Simon Krah, C. Schröter, Carla Eller, Laura Rhiel, Nicolas Rasche, J. Beck, Carolin Sellmann, Ralf Günther, L. Toleikis, B. Hock, H. Kolmar, Stefan Becker
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引用次数: 37

Abstract

Bispecific antibodies (bsAbs) pave the way for novel therapeutic modes of action along with potential benefits in several clinical applications. However, their generation remains challenging due to the necessity of correct pairings of two different heavy and light chains and related manufacturability issues. We describe a generic approach for the generation of fully human IgG-like bsAbs. For this, heavy chain repertoires from immunized transgenic rats were combined with either a randomly chosen common light chain or a light chain of an existing therapeutic antibody and screened for binders against tumor-related targets CEACAM5 and CEACAM6 by yeast surface display. bsAbs with subnanomolar affinities were identified, wherein each separate binding arm mediated specific binding to the respective antigen. Altogether, the described strategy represents a combination of in vivo immunization with an in vitro selection method, which allows for the integration of existing therapeutic antibodies into a bispecific format.
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结合动物免疫和酵母展示制备人双特异性普通轻链抗体
双特异性抗体(bsAbs)在几种临床应用中具有潜在的益处,为新的治疗模式的作用铺平了道路。然而,由于需要正确配对两种不同的重链和轻链以及相关的可制造性问题,它们的生成仍然具有挑战性。我们描述了一种生成完全人igg样bsab的通用方法。为此,将免疫转基因大鼠的重链谱与随机选择的普通轻链或现有治疗性抗体的轻链结合,并通过酵母表面展示筛选针对肿瘤相关靶点CEACAM5和CEACAM6的结合物。鉴定出具有亚纳摩尔亲和力的bsab,其中每个单独的结合臂介导与各自抗原的特异性结合。总之,所描述的策略代表了体内免疫与体外选择方法的结合,该方法允许将现有的治疗性抗体整合为双特异性格式。
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