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基于 ALP 介导的农药分析和 BiS@BiSnO 异质结作为光活性材料的均相光电化学生物传感器用于灵敏检测氧乐果。

Homogeneous photoelectrochemical biosensor for sensitive detection of omethoate via ALP-mediated pesticide assay and BiS@BiSnO heterojunction as photoactive material.

机构信息

School of Chemistry and Pharmaceutical Sciences, State Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources, Guangxi Normal University, Guilin, 541004, People's Republic of China.

出版信息

Anal Bioanal Chem. 2022 Oct;414(24):7277-7289. doi: 10.1007/s00216-022-04279-x. Epub 2022 Aug 19.

Abstract

A simple homogeneous photoelectrochemical (PEC) sensing platform based on an alkaline phosphatase (ALP)-mediated pesticide assay was established for the sensitive detection of omethoate (OM). The BiS@BiSnO heterojunction was used as a photoactive material to provide stable background photocurrent signals. The inhibition of OM on ALP and PEC determination was carried out in the homogeneous system. In the absence of OM, dephosphorylation of L-ascorbic acid 2-phosphate trisodium salt (AAP) was catalyzed by ALP to produce the enzyme-catalyzed product (L-ascorbic acid, AA). AA, as an electron donor, could capture photogenerated holes on the BiS@BiSnO heterojunction, thus inhibiting the recombination of electron holes to achieve an increase of the photocurrent signal. When the OM was introduced, the enzyme activity of ALP was reduced due to the organophosphorus pesticides (OPs)-based enzyme inhibition, and the AA produced by catalytic hydrolysis was also reduced, thus reducing the photocurrent signal. Compared with the traditional PEC sensor for OPs, this homogeneous PEC sensor avoided immobilization procedures, covalent labeling, separation, and the steric hindrance effect caused by immobilized biomolecules, which achieved high recognition efficiency and caused a reduction in analysis time. Additionally, an ALP-mediated pesticide assay for the determination of OPs with a simplified experimental process further improved the stability and reproducibility of the PEC sensor. The PEC sensor showed high sensitivity to the target OM within a dynamic range of 0.05 ~ 500 ng mL, and the detection limit was 0.0146 ng mL. Additionally, the PEC biosensing system showed good selectivity and anti-interference ability, and exhibited a satisfactory result in spinach and mustard samples. A homogeneous PEC biosensor based on ALP inhibition strategy was constructed for OM detection in vegetable samples via BiS@BiSnO heterojunction as the photoactive substrate material.

摘要

建立了基于碱性磷酸酶(ALP)介导的农药分析的简单均相光电化学(PEC)传感平台,用于灵敏检测氧乐果(OM)。将 BiS@BiSnO 异质结用作光活性材料,以提供稳定的背景光电流信号。在均相体系中进行了 OM 对 ALP 的抑制和 PEC 测定。在不存在 OM 的情况下,L-抗坏血酸 2-磷酸三钠盐(AAP)被 ALP 催化去磷酸化,生成酶催化产物(L-抗坏血酸,AA)。AA 作为电子供体,可以捕获 BiS@BiSnO 异质结上的光生空穴,从而抑制空穴的复合,实现光电流信号的增加。当引入 OM 时,由于有机磷农药(OPs)的酶抑制作用,ALP 的酶活性降低,并且由催化水解产生的 AA 也减少,从而减少了光电流信号。与传统的 OPs PEC 传感器相比,这种均相 PEC 传感器避免了固定化程序、共价标记、分离和固定化生物分子引起的空间位阻效应,实现了高识别效率并缩短了分析时间。此外,简化实验过程的 ALP 介导的农药测定用于测定 OPs,进一步提高了 PEC 传感器的稳定性和重现性。PEC 传感器对目标 OM 的检测具有高灵敏度,在 0.05 ~ 500ng mL 的动态范围内,检测限为 0.0146ng mL。此外,PEC 生物传感系统表现出良好的选择性和抗干扰能力,在菠菜和芥末样品中取得了令人满意的结果。基于 ALP 抑制策略,构建了基于 BiS@BiSnO 异质结作为光活性基底材料的用于蔬菜样品中 OM 检测的均相 PEC 生物传感器。

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