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首页> 外文期刊>New Journal of Chemistry >An in situ assay of nerve agents enabled by a self-assembled bienzymatic electrochemical biosensor
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An in situ assay of nerve agents enabled by a self-assembled bienzymatic electrochemical biosensor

机译:由自组装的酶酶电化学生物传感器启用神经剂的原位测定

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摘要

Nerve agents (NAs) are a group of organophosphorus compounds with acute lethal toxicity, but the knowledge of NA simulants is insufficient to clarify the toxicity of NAs. Herein, we introduce a self-assembled bienzymatic electrochemical biosensor, in which acetylcholinesterase (AChE) and choline oxidase were immobilized to a poly(o-phenylenediamine)-modified Au electrode. This as-presented biosensor is competent in the in situ detection of NAs and in the recording of the inhibition and reactivation processes of AChE. The limit of detection for soman (GD), sarin (GB), VX, and tabun (GA) can reach as low as 2.9, 1.1, 3.1, and 41 nM, respectively. Besides, the in situ characterized inhibition processes are achieved using a one-step protocol, where the inhibition rate constants for GD, GB, VX, and GA were calculated to be 1.36 x 10(7), 3.9 x 10(6), 3.2 x 10(6) and 1.7 x 10(5) M-1 min(-1). We further investigated the reactivation efficiency of oximes against NA-inhibited AChE. HI-6 and obidoxime possess better reactivation capacity for GB- and VX-inhibited AChE. Insights into NA inhibition and reactivation processes with such an electrochemical biosensor may benefit in the better designing of an early detection system with high sensitivity and selectivity for NAs and for understanding poisoning and detoxification of other chemical warfare agents.
机译:神经剂(NAS)是一组有机磷酸化合物,具有急性致命毒性,但NA模拟剂的知识不足以阐明NAS的毒性。在此,我们介绍一种自组装的酶酶电化学生物传感器,其中将乙酰胆碱酯酶(ACHE)和胆碱氧化酶固定在聚(O-苯二胺) - 涂覆的Au电极上。这种呈现的生物传感器在NAS的原位检测中具有胜能,并记录疼痛的抑制和再活化过程。 Soman(GD),Sarin(GB),VX和Tabun(GA)的检测限度分别达到2.9,1.1,3.1和41nm。此外,使用单步方案实现原位特征抑制过程,其中Gd,Gb,Vx和Ga的抑制率常数计算为1.36×10(7),3.9×10(6),3.2 X 10(6)和1.7×10(5)m-1 min(-1)。我们进一步研究了肟抑制疼痛的肟的再活化效率。 Hi-6和Obidoxime对GB和VX抑制疼痛具有更好的再激活能力。具有这种电化学生物传感器的Na抑制和再活化过程的见解可以在更好地设计具有高灵敏度和NAS的选择性和用于了解其他化学战剂的中毒和解毒的早期检测系统中受益。

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