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Analysis of human chorionic gonadotropin-monoclonal antibody interaction in BIAcore

机译:BIAcore中人绒毛膜促性腺激素-单克隆抗体相互作用的分析

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Kinetic studies of macromolecular ligand-ligate interaction have generated ample interest since the advent of plasmon resonance based instruments like BIAcore. Most of the studies reported in literature assume a simple 1 : 1 Langmuir binding and complete reversibility of the system. However we observed that in a high affinity antigen-antibody system [human chorionic gonadotropin-monoclonal antibody (hCG-mAb)] dissociation is insignificant and the sensogram data cannot be used to measure the equilibrium and kinetic parameters. At low concentrations of mAb the complete sensogram. could be fitted to a single exponential. Interestingly we found that at higher mAb concentrations, the binding data did not conform to a simple bimolecular model. Instead, the data fitted a two-step model, which may be because of surface heterogeneity of affinity sites. In this paper, we report on the global fit of the sensograms. We have developed a method by which a single two-minute sensogram can be used in high affinity systems to measure the association rate constant of the reaction and the functional capacity of the ligand (hCG) immobilized on the chip. We provide a rational explanation for the discrepancies generally observed in most of the BIAcore sensograms.
机译:自从基于等离振子共振的仪器(如BIAcore)问世以来,大分子配体-配体相互作用的动力学研究引起了人们的极大兴趣。文献中报道的大多数研究都假定简单的1:1 Langmuir结合和系统的完全可逆性。但是,我们观察到,在高亲和力抗原抗体系统中,[人绒毛膜促性腺激素单克隆抗体(hCG-mAb)]的解离作用微不足道,并且传感图数据无法用于测量平衡和动力学参数。在低mAb浓度下,完整的传感图。可以拟合为一个指数。有趣的是,我们发现在更高的mAb浓度下,结合数据不符合简单的双分子模型。相反,数据符合两步模型,这可能是由于亲和位点的表面异质性所致。在本文中,我们报告了感官图的整体拟合。我们已经开发出一种方法,通过该方法,可以在高亲和力系统中使用单个两分钟的感应图来测量反应的缔合速率常数和固定在芯片上的配体(hCG)的功能能力。对于大多数BIAcore传感图中通常观察到的差异,我们提供了合理的解释。

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