Bioplatform for Detecting Organophosphorus Compound Exposure.

IF 1.6 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Tobias Ramiro Filippini, Andres Hunt, M Gabriela Lagorio, Gabriela Cordon, Virginia Diz, Graciela A González
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引用次数: 0

Abstract

This article presents results from The Plant Biomarker Challenge, an initiative funded by the Organization for the Prohibition of Chemical Weapons. The proposed platform-a plant species and measurement methodology-distinguishes between unexposed plants and those exposed to chlorpyrifos, a model organophosphorus pesticide. These compounds are active ingredients in pesticides and chemical warfare agents. Plants expressing acetylcholinesterase activity are affected by such compounds and can serve as biomarkers for accidental or criminal exposures, which is the focus of this study. An electrochemical method is proposed to assess pesticide exposure by analyzing alterations in acetylcholinesterase enzymatic activity. Initial assays in aqueous phase validate the mechanism, complemented by infrared spectrometry, before transitioning to plant samples. Chicory extracts exposed to varying chlorpyrifos concentrations are analyzed, enabling differentiation between nonexposed plants and those subjected to doses exceeding one-tenth of the manufacturer's recommended mean dose. Electrochemical impedance spectroscopy evaluates acetylcholinesterase activity indirectly via its reaction with acetylthiocholine chloride and the subsequent interaction between generated thiocholine and silver nanoparticles. This comprehensive system integrates plant species and a measurement method to detect environments exposed to organophosphates.

有机磷化合物暴露检测的生物平台。
本文介绍了由禁止化学武器组织资助的“植物生物标志物挑战”项目的结果。这个被提议的平台——一种植物种类和测量方法——区分了未暴露于毒死蜱(一种典型的有机磷农药)的植物和暴露于毒死蜱的植物。这些化合物是杀虫剂和化学战剂的有效成分。表达乙酰胆碱酯酶活性的植物受到这些化合物的影响,可以作为意外或犯罪暴露的生物标志物,这是本研究的重点。提出了一种通过分析乙酰胆碱酯酶活性变化来评估农药暴露的电化学方法。在过渡到植物样品之前,在水相中进行的初步分析验证了机理,并辅以红外光谱法。对暴露于不同毒死蜱浓度的菊苣提取物进行了分析,从而能够区分未暴露的植物和受到超过制造商推荐平均剂量十分之一剂量的植物。电化学阻抗法通过乙酰胆碱酯酶与乙酰硫代氯化胆碱的反应以及随后生成的硫代胆碱与纳米银的相互作用间接评价乙酰胆碱酯酶的活性。这个综合系统集成了植物种类和测量方法来检测暴露于有机磷酸盐的环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Health Security
Health Security PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH-
CiteScore
4.80
自引率
6.10%
发文量
70
期刊介绍: Health Security is a peer-reviewed journal providing research and essential guidance for the protection of people’s health before and after epidemics or disasters and for ensuring that communities are resilient to major challenges. The Journal explores the issues posed by disease outbreaks and epidemics; natural disasters; biological, chemical, and nuclear accidents or deliberate threats; foodborne outbreaks; and other health emergencies. It offers important insight into how to develop the systems needed to meet these challenges. Taking an interdisciplinary approach, Health Security covers research, innovations, methods, challenges, and ethical and legal dilemmas facing scientific, military, and health organizations. The Journal is a key resource for practitioners in these fields, policymakers, scientific experts, and government officials.
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