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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Use of UV-vis-NIR spectroscopy to monitor label-free interaction between molecular recognition elements and erythropoietin on a gold-coated polycarbonate platform
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Use of UV-vis-NIR spectroscopy to monitor label-free interaction between molecular recognition elements and erythropoietin on a gold-coated polycarbonate platform

机译:紫外可见近红外光谱技术在涂有金的聚碳酸酯平台上监测分子识别元件与促红细胞生成素之间的无标记相互作用

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Label-free-based detection is pivotal for real-time monitoring of biomolecular interactions and to eliminate the need for labeling with tags that can occupy important binding sites of biomolecules. One simplest form of label-free-based detection is ultraviolet-visible-near-infrared (UV-vis-NIR) spectroscopy, which measure changes in reflectivity as a means to monitor immobilization and interaction of biomolecules with their corresponding partners. In biosensor development, the platform used for the biomolecular interaction should be suitable for different molecular recognition elements. In this study, gold (Au)-coated polycarbonate was used as a platform and as a proof-of-concept, erythropoietin (EPO), a doping substance widely abused by the athletes was used as the target. The interaction of EPO with its corresponding molecular recognition elements (anti-EPO monoclonal antibody and anti-EPO DNA aptamer) is monitored by UV-vis-NIR spectroscopy. Prior to this, to show that UV-vis-NIR spectroscopy is a suitable method for measuring biomolecular interaction, the interaction between biotin and streptavidin was demonstrated via this strategy and reflectivity of this interaction decreased by 25%. Subsequent to this, interaction of the EPO with anti-EPO monoclonal antibody and anti-EPO DNA aptamer resulted in the decrease of reflectivity by 5% and 10%, respectively. The results indicated that Au-coated polycarbonate could be an ideal biosensor platform for monitoring biomolecular interactions using UV-vis-NIR spectroscopy. A smaller version of the Au-coated polycarbonate substrates can be derived from the recent set-up, to be applied towards detecting EPO abuse among atheletes.
机译:基于无标记的检测对于实时监控生物分子相互作用以及消除使用可能占据生物分子重要结合位点的标签进行标记的需求至关重要。基于无标记检测的一种最简单形式是紫外可见近红外(UV-vis-NIR)光谱,该光谱测量反射率的变化,以监视生物分子与其相应伙伴的固定和相互作用。在生物传感器开发中,用于生物分子相互作用的平台应适合于不同的分子识别元件。在这项研究中,镀金(Au)的聚碳酸酯被用作平台,概念验证了促红细胞生成素(EPO)(一种被运动员广泛滥用的掺杂物质)作为目标。 EPO及其相应的分子识别元件(抗EPO单克隆抗体和抗EPO DNA适体)之间的相互作用通过UV-vis-NIR光谱进行监控。在此之前,为了证明紫外可见近红外光谱是一种用于测量生物分子相互作用的合适方法,通过该策略证明了生物素与链霉亲和素之间的相互作用,并且该相互作用的反射率降低了25%。随后,EPO与抗EPO单克隆抗体和抗EPO DNA适体的相互作用导致反射率分别降低了5%和10%。结果表明,Au涂层聚碳酸酯可能是理想的生物传感器平台,用于使用UV-vis-NIR光谱监测生物分子相互作用。可以从最近的设置中获得较小版本的Au涂层聚碳酸酯基片,用于检测运动员之间的EPO滥用。

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