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二聚体 G-四链体和引发链置换反应在赭曲霉毒素 A 荧光生物传感中的应用。

Application of the Dimeric G-Quadruplex and toehold-mediated strand displacement reaction for fluorescence biosensing of ochratoxin A.

机构信息

Key Laboratory of Environmental Medicine Engineering of Ministry of Education, School of Public Health, Southeast University, Nanjing, 210009, PR China.

Key Laboratory of Environmental Medicine Engineering of Ministry of Education, School of Public Health, Southeast University, Nanjing, 210009, PR China.

出版信息

Biosens Bioelectron. 2021 Nov 15;192:113537. doi: 10.1016/j.bios.2021.113537. Epub 2021 Jul 28.

Abstract

Ochratoxin A (OTA) is one of the most toxic mycotoxins that exists in various agro-products and foods. Here, a non-label and enzyme-free fluorescence biosensor for highly specific detection of OTA has been developed by the combination of toehold-mediated strand displacement reaction (TMSD) and G-quadruplex dimer/ThT (G-dimer/ThT). The DNA duplex (aptamer-IP) is composed of the anti-OTA aptamer and a single stranded initiation probe (IP). In the presence of OTA, the attachment of target to aptamer leads to the liberation of the IP, which activates the cycle TMSD amplifications of two hairpin probes (H1 and H2) accompanied by the production of numerous H1-H2 assemblies. This double-stranded H1-H2 structure results in the proximity between the 5'-end overhang tail of H1 and the 3'-end stem of H2 to liberate the pre-blocked G-dimer sequence for lighting up ThT. In addition, the method displayed a stable fluorescence emission in the high-salt media. It was successfully applied to analyze OTA in real food samples. Hence, the constructed fluorescence biosensing platform might provide a new way for OTA and other toxin analysis detection.

摘要

赭曲霉毒素 A(OTA)是存在于各种农产品和食品中的最具毒性的霉菌毒素之一。在这里,通过结合引发链置换反应(TMSD)和 G-四联体二聚体/ThT(G-二聚体/ThT),开发了一种非标记和无酶的荧光生物传感器,用于高度特异性检测 OTA。DNA 双链体(适体-IP)由抗 OTA 适体和单链起始探针(IP)组成。在 OTA 存在下,目标物与适体的结合导致 IP 的释放,从而激活两个发夹探针(H1 和 H2)的 TMSD 循环扩增,同时产生大量 H1-H2 组装体。这种双链体 H1-H2 结构导致 H1 的 5'-端突出尾与 H2 的 3'-端茎之间的接近,从而释放预阻断的 G-二聚体序列以点亮 ThT。此外,该方法在高盐介质中显示出稳定的荧光发射。它已成功用于分析实际食品样品中的 OTA。因此,所构建的荧光生物传感平台可能为 OTA 及其他毒素分析检测提供新途径。

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