The process using a synthetic library that generates multiple diverse human single domain antibodies.

Q2 Medicine
Antibody Therapeutics Pub Date : 2024-08-03 eCollection Date: 2024-10-01 DOI:10.1093/abt/tbae020
Mark A Tornetta, Brian P Whitaker, Olivia M Cantwell, Eileen D Pisors, Lu Han, Maria P MacWilliams, Hao Jiang, Fulai Zhou, Mark L Chiu
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引用次数: 0

Abstract

Background: Single domain antibodies (sdAbs) possess unique characteristics that make them highly effective for developing complex therapeutics.

Methods: Our process uses a fully synthetic phage display library to generate single domain antibodies that can bind to disease relevant antigen conformations. A human IGHV3 family scaffold makes up the phage display libraries, and these VHO libraries are applied to diverse phage biopannings against target antigens. After NGS processing, unique VHOs undergo automated cloning into expression constructs followed by transfections and purifications. Binding assays were used to determine VHO binding behaviors to the target proteins. Additional VHO interactions are measured against endogenous targets on cells by way of flow cytometry, cell internalization, and activation assays.

Results: We show that a fully synthetic phage display library can generate VHOs that bind to disease relevant antigen conformations. The diverse biopanning methods and processing of next-generation sequencing generated many VHO paratopes. These different VHO sequences can be expressed as Fc fusion proteins. Various screening assays resulted in VHOs representing different epitopes or activities. During the hit evaluation, we demonstrate how screening can identify distinct VHO activities that have been used to generate differentiated drug molecules in various bispecific and multispecific antibody formats.

Conclusion: We demonstrate how screening can identify distinct VHO activities that have been used to generate differentiated drug molecules in various bispecific and multispecific antibody formats.

该过程利用合成库生成多种不同的人类单域抗体。
背景:单域抗体(sdAbs单域抗体(sdAbs)具有独特的特性,使其在开发复杂疗法时非常有效:我们的方法是利用完全合成的噬菌体展示文库生成能与疾病相关抗原构象结合的单结构域抗体。人类 IGHV3 家族支架构成了噬菌体展示文库,这些 VHO 文库应用于针对目标抗原的各种噬菌体生物印迹。经过 NGS 处理后,独特的 VHO 被自动克隆到表达构建体中,然后进行转染和纯化。结合测定用于确定 VHO 与目标蛋白的结合行为。此外,还通过流式细胞术、细胞内化和活化试验等方法来测定 VHO 与细胞内源性靶标的相互作用:结果:我们发现,完全合成的噬菌体展示文库可以产生与疾病相关抗原构象结合的 VHO。不同的生物平分方法和下一代测序处理产生了许多 VHO 旁位。这些不同的 VHO 序列可以表达为 Fc 融合蛋白。各种筛选测定产生了代表不同表位或活性的 VHO。在命中评估过程中,我们展示了如何通过筛选确定不同的 VHO 活性,这些活性已被用于生成各种双特异性和多特异性抗体形式的差异化药物分子:我们展示了如何通过筛选确定不同的 VHO 活性,这些活性已被用于在各种双特异性和多特异性抗体形式中生成差异化的药物分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Antibody Therapeutics
Antibody Therapeutics Medicine-Immunology and Allergy
CiteScore
8.70
自引率
0.00%
发文量
30
审稿时长
8 weeks
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