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Using Antigen-antibody Binding Kinetic Parameters to Understand Single-Molecule Array Immunoassay Performance

机译:使用抗原-抗体结合动力学参数来了解单分子阵列免疫测定性能

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This paper provides insights into the performance of single-molecule array (Simoa) immunoassays by examining the effects of various capture and detector antibody-antigen binding kinetic parameters. Simoa is similar to other immunoassays in that the overall Simoa performance is heavily dependent on the choice of antibodies; however, little is known about how the different properties of the antibodies result in the wide variations in assay performance. Here, we focus on antibody-antigen binding kinetics and demonstrate how the association (k(on)) and dissociation (k(off)) rate constants of the capture and detection antibodies affect Simoa performance. We compared six different antibodies with over a four-log range of equilibrium dissociation constants (K-D) and found that Simoa assay performance had an inverse relationship to the k(off) value of the detection antibody. The Simoa fluorescent signals were highest when the k(off) of the detection antibody was less than 10(-5) s(-1). The capture antibody k(off) did not have as significant an effect, but a k(off) of less than 10(-3) s(-1) was preferred. We also found that the k(on) values of the capture and detection antibodies were not important factors for Simoa performance. Therefore, the assay optimization process could be accelerated by choosing detection antibodies with the slowest k(off) values.
机译:本文通过检查各种捕获和检测器抗体-抗原结合动力学参数的影响,提供了对单分子阵列(Simoa)免疫测定性能的见解。 Simoa与其他免疫测定相似,因为Simoa的整体性能在很大程度上取决于抗体的选择。然而,对于抗体的不同特性如何导致测定性能的广泛变化知之甚少。在这里,我们专注于抗体-抗原结合动力学,并展示了捕获和检测抗体的缔合(k(on))和解离(k(off))速率常数如何影响Simoa性能。我们将六种不同的抗体与平衡解离常数(K-D)超过四对数的范围进行了比较,发现Simoa分析性能与检测抗体的k(off)值呈反比关系。当检测抗体的k(off)小于10(-5)s(-1)时,Simoa荧光信号最高。捕获抗体k(off)没有明显的作用,但是k(off)小于10(-3)s(-1)是优选的。我们还发现捕获和检测抗体的k(on)值不是Simoa性能的重要因素。因此,可以通过选择k(off)值最低的检测抗体来加速分析优化过程。

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