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一种使用金纳米颗粒探针和动态光散射进行蛋白质检测的免洗涤、免扩增一步均相检测方法。

A washing-free and amplification-free one-step homogeneous assay for protein detection using gold nanoparticle probes and dynamic light scattering.

作者信息

Liu Xiong, Huo Qun

机构信息

NanoScience Technology Center, University of Central Florida, Orlando, FL 32826, United States of America.

出版信息

J Immunol Methods. 2009 Sep 30;349(1-2):38-44. doi: 10.1016/j.jim.2009.07.015. Epub 2009 Aug 6.

Abstract

In this study, we developed a one-step, washing-free and amplification-free assay for protein analysis using gold nanoparticle probes (GNPs) and dynamic light scattering (DLS) technique. The target protein concentration was determined by analyzing the level of GNP aggregation caused by antibody-antigen interactions using DLS. Two formats of assays were designed for mouse IgG detection. In the first format of assay, mouse IgG was directly mixed with GNPs conjugated to goat anti-mouse IgG. Due to the multiple binding sites of primary mouse IgG by the secondary antibody, mouse IgG caused nanoparticle aggregation. Mouse IgG can be detected at a concentration as low as 0.5 ng/mL and the dynamic range of this assay is between 0.5 and 50 ng/mL. A second format of assay developed in this study is a competitive assay conducted by using both mouse IgG and goat anti-mouse IgG conjugated GNPs. In this assay format, mouse IgG was detected within a dynamic range of 100 ng/mL to 10 microg/mL. The CV% of these assays is generally well within 10%. In conclusion, we demonstrated here that by using GNPs as a light scattering enhancer and selecting the proper assay formats, low cost, easy-to-conduct, and highly sensitive bioassays can be developed for protein detection and analysis.

摘要

在本研究中,我们使用金纳米颗粒探针(GNPs)和动态光散射(DLS)技术开发了一种用于蛋白质分析的一步法、无需洗涤和扩增的检测方法。通过使用DLS分析抗体 - 抗原相互作用引起的GNP聚集水平来确定目标蛋白质浓度。设计了两种检测形式用于小鼠IgG检测。在第一种检测形式中,将小鼠IgG直接与缀合有山羊抗小鼠IgG的GNPs混合。由于二抗对小鼠IgG的多个结合位点,小鼠IgG导致纳米颗粒聚集。小鼠IgG的检测浓度低至0.5 ng/mL,该检测方法的动态范围在0.5至50 ng/mL之间。本研究开发的第二种检测形式是一种竞争性检测,使用小鼠IgG和缀合有GNPs的山羊抗小鼠IgG进行。在这种检测形式中,小鼠IgG在100 ng/mL至10 μg/mL的动态范围内被检测到。这些检测方法的变异系数(CV%)通常在10%以内。总之,我们在此证明,通过使用GNPs作为光散射增强剂并选择合适的检测形式,可以开发出低成本、易于操作且高度灵敏的生物检测方法用于蛋白质检测和分析。

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