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A novel ratiometric fluorescent probe for specific detection of HSO3- at nanomolar level through 1, 4-Michael addition

机译:一种新型比例荧光探针,用于通过1,4-迈克尔的纳米摩尔水平特异性检测HSO3-

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摘要

A Fluorescence Resonance Energy Transfer (FRET)-based ratiometric fluorescent probe, Cy-p-Np, was reported for specificial detection of HSO3- over anions and other Reactive Sulfur Species (RSS). In free probe, naphthalimide was selected as the donor while hemicyanine acted as the acceptor and the recognition unit for HSO3-. The probe Cy-p-Np displayed a ratiometric fluorescent response (I-527/I-590 to HSO3- with response time (150s) and limit detection (98.1 nM) based on the nucleophilic attack of HSO3- toward electrically positive hemicyanine. The proposed mechanism of nucleophilic HSO3--promoted 1, 4-Michael addition reaction was proved by HRMS. The low toxicity allowed probe Cy-p-Np to be applied to detect exogenous HSO3- in living cells successfully. All the outstanding properties of probe Cy-p-Np provided the potential for the further application in live detection and even deeper biological applications.
机译:据报道,基于荧光共振能量转移(FRET)的比率荧光探针Cy-P-NP,用于对HSO3-过阴离子和其他反应性硫种类(RSS)进行粒子检测。 在自由探针中,选择萘酰亚胺作为供体,而血清氰胺作为Hso3-的受体和识别单元。 探针Cy-p-NP显示比响应时间(150s)的比率荧光响应(I-527 / I-590至HOS3-,并基于HSO3-朝向电阳性血红石的亲核侵蚀限制检测(98.1nm)。该 通过HRMS证明了亲核HSO3 - 促进的1,4-迈克尔加成反应的提出机制。低毒性使探针CY-P-NP成功地应用于生物细胞中的外源HSO3-。探针CY的所有出色特性 -P-NP提供了在实时检测和更深层次的生物应用中进一步应用的可能性。

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