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Effects of Surface Epitope Coverage on the Sensitivity of Displacement Assays that Employ Modified Nanoparticles: Using Bisphenol A as a Model Analyte

机译:表面抗原决定簇覆盖率对采用修饰的纳米粒子的位移测定灵敏度的影响:使用双酚A作为模型分析物

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摘要

With the ever-increasing use of nanoparticles in immunosensors, a fundamental study on the effect of epitope density is presented herein, with a small molecule epitope, on the performance of the displacement assay format in an enzyme-linked immunosorbent assay (ELISA). Thiolated bisphenol A (BPA) functionalized gold nanoparticles (cysBPAv-AuNPs) and specific anti-BPA antibodies are employed for this purpose. It is shown that the displacement of cysBPAv-AuNPs bound to the immobilized antibodies was influenced by both the avidity of bound cysBPAv-AuNPs and the concentration of free BPA to displace it. The importance of surface epitope density was that it changed the number of epitopes in close proximity to the antibody-binding site. This then influenced the avidity of cysBPAv-AuNPs bound to the immobilized antibody. Furthermore, the molar epitope concentration in an assay appears to affect the degree of antibody binding site saturation. Controlling surface epitope density of the functionalized nanoparticles and molar epitope concentration in an assay leads to a decrease of the concentration of free BPA required to displace the bound cysBPAv-AuNP, and hence better assay performance with regards to the D50 value and dynamic range in the displacement assay.
机译:随着纳米颗粒在免疫传感器中的日益增加,本文提出了具有小分子表位的表位密度对酶联免疫吸附测定(ELISA)中置换测定形式的性能的影响的基础研究。为此目的,使用了硫醇化双酚A(BPA)功能化的金纳米颗粒(cysBPAv-AuNPs)和特定的抗BPA抗体。结果表明,与固定化抗体结合的cysBPAv-AuNPs的置换受结合的cysBPAv-AuNPs的亲和力和游离BPA置换浓度的影响。表面表位密度的重要性在于它改变了紧邻抗体结合位点的表位数目。然后,这影响了与固定抗体结合的cysBPAv-AuNP的亲和力。此外,测定中的摩尔表位浓度似乎影响抗体结合位点饱和度。在测定中控制功能化纳米粒子的表面表位密度和摩尔表位浓度会导致置换结合的cysBPAv-AuNP所需的游离BPA浓度降低,因此在D50值和动态范围方面具有更好的测定性能位移测定。

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