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使用双偏振干涉生物传感器进行同型多价抗体-抗原相互作用动力学研究。

Homopolyvalent antibody-antigen interaction kinetic studies with use of a dual-polarization interferometric biosensor.

作者信息

Lin Shiming, Lee Chih-Kung, Lin Yin-Hang, Lee Shih-Yuan, Sheu Bor-Ching, Tsai Jui-Chang, Hsu Su-Ming

机构信息

Center for Optoelectronic Biomedicine, National Taiwan University, 1-1 Jen-Ai Road, Taipei, Taiwan.

出版信息

Biosens Bioelectron. 2006 Dec 15;22(5):715-21. doi: 10.1016/j.bios.2006.02.011. Epub 2006 Mar 29.

Abstract

We used dual-polarization interferometry (DPI) to study the interaction kinetics between a 'homopolyvalent' antigen (Ag) and a monoclonal antibody (Ab). A model system, which uses a monoclonal Ab against a homopentameric Ag, C-reactive protein (CRP), is presented with principle and experiments for the study of the interactions between an Ab and an Ag that has multiple identical epitopes. This allows evaluation of the dissociation constant (K(D)) and of the binding stoichiometry by DPI based on measurements of phase changes of Ab-Ag complexes in the transverse magnetic (TM) and transverse electric (TE) polarization modes. The average experimental value of K(D) found by the DPI technique for anti-CRP Ab was shown to be in close agreement with the value obtained by an indirect competition-enzyme-linked immunosorbent assay (ELISA). Moreover, the total number of Ab combining sites on the DPI sensor chip was calculated, and the binding stoichiometry of the surface Ag-Ab complex was obtained. This study illustrates the advantages of the DPI method in biosensing in its capacity for simultaneous evaluation of the thickness and refractive index (density, mass) of adsorbed layers. This allowed a comprehensive analysis of affinity reactions between an Ab having two binding sites and a multi-sited Ag.

摘要

我们使用双偏振干涉测量法(DPI)来研究“同多价”抗原(Ag)与单克隆抗体(Ab)之间的相互作用动力学。本文介绍了一个模型系统,该系统使用针对同五聚体抗原C反应蛋白(CRP)的单克隆抗体,阐述了研究具有多个相同表位的抗体与抗原之间相互作用的原理和实验。这使得基于横向磁(TM)和横向电(TE)偏振模式下抗体 - 抗原复合物的相变测量,通过DPI评估解离常数(K(D))和结合化学计量。DPI技术测得的抗CRP抗体的K(D)平均实验值与间接竞争酶联免疫吸附测定(ELISA)获得的值密切一致。此外,计算了DPI传感器芯片上抗体结合位点的总数,并获得了表面抗原 - 抗体复合物的结合化学计量。本研究说明了DPI方法在生物传感中的优势,即能够同时评估吸附层的厚度和折射率(密度、质量)。这使得对具有两个结合位点的抗体与多位点抗原之间的亲和反应进行全面分析成为可能。

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