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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Novel detection platform for insulin based on dual-cycle signal amplification by Exonuclease III
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Novel detection platform for insulin based on dual-cycle signal amplification by Exonuclease III

机译:基于外切核酸酶III的双循环信号扩增胰岛素的新型检测平台

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摘要

A novel detection platform based on Exonuclease III dual-cycle signal amplification with graphene oxide as quenching agent and DNA labelling as recognition element has been developed for the fluorometric determination of insulin. Specific DNA sequences were cut by Exo III to control the fluorescence recovery of the system. Fluorescence intensity analysis was carried out by fluorescence spectrophotometer to obtain the fluorescence intensity corresponding to different concentrations of insulin. When insulin is added to the system, insulin binds to the adaptor and the fluorescence is quenched, whereas in the absence of insulin the fluorescence is restored. The sensor platform achieved multiple signal amplification affording rapid and sensitive detection of insulin with a detection range of 0.048-2.15 U/ml. The methodology is rapid, sensitive, of low cost and convenient to perform and has potential for routine screening of insulin in blood, and also has prospects for the detection of other proteins and biomolecules.
机译:一种新的基于外切核酸酶III双循环信号放大的新型检测平台,作为淬火剂和DNA标记作为识别元件的缺失测定,缺乏测定胰岛素。通过EXO III切割特异性DNA序列以控制系统的荧光恢复。通过荧光分光光度计进行荧光强度分析,得到对应于不同浓度的胰岛素的荧光强度。当将胰岛素添加到系统中时,胰岛素与适配器结合,荧光淬火,而在没有胰岛素的情况下,荧光恢复。传感器平台实现了多个信号放大,其具有0.048-2.15 U / mL的检测范围的快速和敏感的胰岛素。该方法是快速,敏感的,低成本,表现低,表现低,并且具有常规筛查血液中胰岛素的潜力,并且还具有检测其他蛋白质和生物分子的前景。

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