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从头发现针对人免疫球蛋白 G 的 Fab 片段的基于肽的亲和配体。

De novo discovery of peptide-based affinity ligands for the fab fragment of human immunoglobulin G.

机构信息

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27695, United States.

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27695, United States; Biomanufacturing Training and Education Center (BTEC), North Carolina State University, Raleigh, NC 27695, United States.

出版信息

J Chromatogr A. 2022 Apr 26;1669:462941. doi: 10.1016/j.chroma.2022.462941. Epub 2022 Mar 6.

Abstract

Antibody fragments and their engineered variants show true potential as next-generation therapeutics as they combine excellent targeting with superior biodistribution and blood clearance. Unlike full antibodies, however, antibody fragments do not yet have a standard platform purification process for large-scale production. Short peptide ligands are viable alternatives to protein ligands in affinity chromatography. In this work, an integrated computational and experimental scheme is described to de novo design 9-mer peptides that bind to Fab fragments. The first cohort of designed sequences was tested experimentally using human polyclonal Fab, and the top performing sequence was selected as a prototype for a subsequent round of ligand refinement in silico. The resulting peptides were conjugated to chromatographic resins and evaluated via equilibrium and dynamic binding studies using human Fab-κ and Fab-λ. The equilibrium studies returned values of binding capacities up to 32 mg of Fab per mL of resin with mild affinity (K ∼ 10 M) that are conducive to high product capture and recovery. Dynamic studies returned values of product yield up to ∼90%. Preliminary purification studies provided purities of 83-93% and yields of 11-89%. These results lay the groundwork for future development of these ligands towards biomanufacturing translation.

摘要

抗体片段及其工程变体作为下一代治疗药物具有真正的潜力,因为它们将出色的靶向性与优越的生物分布和血液清除率结合在一起。然而,与完整抗体不同,抗体片段还没有用于大规模生产的标准平台纯化工艺。短肽配体是亲和层析中蛋白质配体的可行替代品。在这项工作中,描述了一种集成的计算和实验方案,用于从头设计与 Fab 片段结合的 9 -mer 肽。第一组设计的序列通过使用人多克隆 Fab 进行了实验测试,表现最佳的序列被选为随后在计算机上进行配体精修的原型。所得肽被连接到色谱树脂上,并通过使用人 Fab-κ 和 Fab-λ 的平衡和动态结合研究进行评估。平衡研究返回的结合容量值高达每毫升树脂 32 毫克 Fab,亲和力适中(K∼10 M),有利于高产物捕获和回收。动态研究返回的产物产率高达约 90%。初步纯化研究提供了 83-93%的纯度和 11-89%的产率。这些结果为这些配体在生物制造转化方面的未来发展奠定了基础。

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