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抗原密度对单克隆抗体识别的影响。

Impact of Antigen Density on Recognition by Monoclonal Antibodies.

机构信息

University of Grenoble-Alpes, CNRS, DCM UMR 5250, 570 rue de la chimie, CS 40700, 38058 Grenoble Cedex 9, France.

University of Leeds, School of Biomedical Sciences, Faculty of Biological Sciences, School of Physics and Astronomy, Faculty of Engineering and Physical Sciences, Astbury Center for Structural Molecular Biology, and Bragg Centre for Materials Research, Leeds LS2 9JT, United Kingdom.

出版信息

Anal Chem. 2020 Apr 7;92(7):5396-5403. doi: 10.1021/acs.analchem.0c00092. Epub 2020 Mar 26.

Abstract

Understanding antigen-antibody interactions is important to many emerging medical and bioanalytical applications. In particular, the levels of antigen expression at the cell surface may determine antibody-mediated cell death. This parameter has a clear effect on outcome in patients undergoing immunotherapy. In this context, CD20 which is expressed in the membrane of B cells has received significant attention as target for immunotherapy of leukemia and lymphoma using the monoclonal antibody rituximab. To systematically study the impact of CD20 density on antibody recognition, we designed self-assembled monolayers that display tunable CD20 epitope densities. For this purpose, we developed click chemistry to functionalize SPR sensor chips. We find that the rituximab binding affinity depends sensitively and nonmonotonously on CD20 surface density. Strongest binding, with an equilibrium dissociation constant ( = 32 nM) close to values previously reported from in vitro analysis with B cells (apparent between 5 and 19 nM), was obtained for an average inter-antigen spacing of 2 nm. This distance is required for improving rituximab recognition, and in agreement with the known requirement of CD20 to form clusters to elicit a biological response. More generally, this study offers an interesting outlook in the understanding of the necessity of epitope clusters for effective mAb recognition.

摘要

理解抗原-抗体相互作用对于许多新兴的医学和生物分析应用非常重要。特别是,细胞表面抗原的表达水平可能决定抗体介导的细胞死亡。在接受免疫治疗的患者中,这一参数对结果有明显影响。在这种情况下,在 B 细胞膜上表达的 CD20 作为使用单克隆抗体利妥昔单抗治疗白血病和淋巴瘤的免疫疗法的靶点受到了广泛关注。为了系统地研究 CD20 密度对抗体识别的影响,我们设计了自组装单层膜,以显示可调节的 CD20 表位密度。为此,我们开发了点击化学来功能化 SPR 传感器芯片。我们发现,利妥昔单抗的结合亲和力敏感且非单调地依赖于 CD20 表面密度。对于平均抗原间距为 2nm 的情况,获得了最强的结合,平衡解离常数(=32nM)接近以前在体外与 B 细胞分析中报道的值(表观值在 5 到 19nM 之间)。这种距离是提高利妥昔单抗识别能力所必需的,并且与已知的 CD20 需要形成簇以引发生物学反应的要求一致。更一般地说,这项研究为理解有效 mAb 识别所需的表位簇提供了一个有趣的前景。

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