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基于能量转移荧光的内源性“开启”适配体传感器检测赭曲霉毒素 A

Intrinsic "Turn-On" Aptasensor Detection of Ochratoxin A Using Energy-Transfer Fluorescence.

出版信息

J Agric Food Chem. 2020 Feb 19;68(7):2249-2255. doi: 10.1021/acs.jafc.9b07391. Epub 2020 Feb 6.

Abstract

Ochratoxin A (OTA) is an intrinsically fluorescent phenolic mycotoxin that contaminates a wide range of food products and is a serious health threat to animals and humans. An OTA binding aptamer (OTABA) that folds into an antiparallel G-quadruplex (GQ) in the absence and presence of target OTA has been incorporated into a vast variety of aptasensor platforms for OTA detection. The development of a simple, aptamer-based approach would allow for detection of the toxin without the use of complex analytical instrumentation, which has been the gold standard for OTA detection thus far. However, to date, none of the aptasensor platforms have utilized the natural fluorescence of the phenolic toxin for detection. Herein, we report that OTA binding to OTABA involves π-stacking interactions that lead to GQ-to-toxin energy transfer (ET), which affords a "turn-on" fluorescence self-signaling platform in which the emission of the aptamer-target complex is enhanced in comparison to the free toxin alone. Selective excitation of the GQ-OTA complex at 256 nm leads to a 4-fold enhancement in OTA fluorescence. The GQ-OTA ET detection platform boasts a limit of detection ∼2 ng/mL, which is comparable to a previously demonstrated fluorescence resonance energy transfer immunoassay platform for OTA detection, and displays excellent OTA selectivity and recovery from red wine samples.

摘要

赭曲霉毒素 A(OTA)是一种内源性荧光酚类真菌毒素,广泛污染各种食品,对动物和人类的健康构成严重威胁。一种在不存在和存在目标 OTA 时折叠成反平行 G-四链体(GQ)的 OTA 结合适体(OTABA)已被纳入各种适体传感器平台,用于 OTA 检测。开发一种简单的基于适体的方法将允许在不使用复杂分析仪器的情况下检测毒素,到目前为止,复杂分析仪器一直是 OTA 检测的金标准。然而,迄今为止,没有一个适体传感器平台利用酚类毒素的天然荧光进行检测。在此,我们报告说,OTA 与 OTABA 的结合涉及π-堆积相互作用,导致 GQ 到毒素的能量转移(ET),这提供了一个“开启”荧光自信号平台,其中适体-靶复合物的发射与游离毒素相比得到增强。在 256nm 处选择性激发 GQ-OTA 复合物会导致 OTA 荧光增强 4 倍。GQ-OTA ET 检测平台的检测限约为 2ng/mL,与之前报道的用于 OTA 检测的荧光共振能量转移免疫分析平台相当,并且对红酒样品具有出色的 OTA 选择性和回收率。

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