首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Monitoring gold nanoparticle conjugation and analysis of biomolecular binding with nanoparticle tracking analysis (NTA) and dynamic light scattering (DLS)
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Monitoring gold nanoparticle conjugation and analysis of biomolecular binding with nanoparticle tracking analysis (NTA) and dynamic light scattering (DLS)

机译:监测金纳米粒子的缀合,并通过纳米粒子跟踪分析(NTA)和动态光散射(DLS)分析生物分子结合

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Protein-conjugated gold nanoparticles (AuNPs) have been extensively explored for the development of many novel protein assays. In this article, we demonstrate that nanoparticle tracking analysis (NTA) can be used as a rapid and simple analytical tool to monitor bioconjugation and to study protein-protein interactions. The adsorption of protein A onto gold nanoparticles was analyzed using NTA. The conjugation resulted in a measurable increase in hydrodynamic radius that correlated with protein A concentration, allowing conditions for complete conjugation to be elucidated. NTA was then used to investigate the binding of mouse IgG to protein A-conjugated AuNPs and the K_a was measured as 2.00 × 10~7 M~(-1). Furthermore, an assay for the detection of mouse IgG was developed using NTA to detect the binding to antibody-AuNP conjugates. This assay provided a detection limit of 3.2 ng mL-1; however, the formation of aggregates resulting from the use of a polyclonal antibody and multiple binding sites on the antigen prevented the determination of binding affinity for this antibody-antigen system. To measure the binding affinity for this antibody-antigen system the IgG antigen was conjugated to the AuNPs and NTA was used to monitor the binding of the antibody. In this configuration aggregation of conjugates was not detected and a binding affinity constant of 2.80 × 10~8 M~(-1) was measured. NTA results obtained in this work were validated by comparison to DLS. This work represents the first evaluation of NTA as an analytical tool for characterizing AuNP bioconjugates, investigating protein-protein binding, and detecting low levels of antigen in a bioassay.
机译:蛋白质缀合的金纳米颗粒(AuNPs)已被广泛探索用于开发许多新颖的蛋白质检测方法。在本文中,我们证明了纳米颗粒跟踪分析(NTA)可以用作一种快速,简单的分析工具来监视生物结合并研究蛋白质之间的相互作用。使用NTA分析蛋白质A在金纳米颗粒上的吸附。缀合导致与蛋白A浓度相关的流体动力学半径的可测量增加,从而可以阐明完全缀合的条件。然后用NTA研究小鼠IgG与结合蛋白A的AuNPs的结合,测量的K_a为2.00×10〜7 M〜(-1)。此外,使用NTA开发了一种检测小鼠IgG的检测方法,以检测与抗体-AuNP共轭物的结合。该检测方法的检测限为3.2 ng mL-1。然而,由于使用多克隆抗体和抗原上的多个结合位点而形成的聚集体阻碍了对该抗体-抗原系统的结合亲和力的测定。为了测量对该抗体-抗原系统的结合亲和力,将IgG抗原缀合到AuNP上,并且使用NTA监测抗体的结合。在这种配置中,未检测到缀合物的聚集,并且测得的结合亲和常数为2.80×10〜8 M〜(-1)。通过与DLS的比较验证了这项工作中获得的NTA结果。这项工作代表了对NTA的首次评估,NTA是用于表征AuNP生物结合物,研究蛋白质与蛋白质结合以及在生物测定中检测低水平抗原的分析工具。

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