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首页> 外文期刊>TrAC: Trends in Analytical Chemistry >Advances in functional nanomaterial-based electrochemical techniques for screening of endocrine disrupting chemicals in various sample matrices
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Advances in functional nanomaterial-based electrochemical techniques for screening of endocrine disrupting chemicals in various sample matrices

机译:用于筛选各种样品基质中内分泌的功能性纳米材料电化学技术的研究进展

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摘要

This review was organized to describe the progress made in the integration of nanostructural materials into electrochemical analytical tools for the quantification of endocrine disrupting chemicals (EDCs) in diverse sample matrices (e.g., environmental and biological samples). Here, we focused mainly on seven major EDCs: alkylphenols/phenols, bisphenol A, parabens, triclosan, phthalates, pesticides, and natural/synthetic sex hormones. All of them are known to exhibit endocrine disruption by strong binding with estrogen receptors to pose serious health risks (e.g., cancerous tumors and disorders in various organs). To realize rapid, selective, and sensitive detection of EDCs, the use of nanostructured materials has become a fascinating option due to many merits (e.g., automation, fast response, good accuracy, and high selectivity/sensitivity). Here, the performance of sensing tools built using nanomaterials was assessed for the detection of EDCs in various sample matrices. Our discussion was extended further to cover the future prospects on this fascinating research field. (C) 2019 Elsevier B.V. All rights reserved.
机译:本综述旨在描述在纳米结构材料整合到电化学分析工具中的进展,以定量在各种样品基质中(例如,环境和生物样本)中破坏化学品(EDC)。在这里,我们主要集中在七个主要EDC:烷基酚/酚,双酚A,羟基苯甲酸盐,三氯烷,邻苯二甲酸酯,杀虫剂和自然/合成性爱激素。众所周知,所有这些都是通过与雌激素受体的强烈结合来表现内分泌破坏,以造成严重的健康风险(例如,癌症肿瘤和各种​​器官的疾病)。为了实现EDC的快速,选择性和敏感性检测,由于许多优点(例如,自动化,快速响应,良好的精度和高选择性/灵敏度,使用纳米结构材料的使用已成为迷人的选择。这里,评估使用纳米材料构建的传感工具的性能,用于检测各种样品矩阵中的EDC。我们的讨论进一步扩展,以涵盖这一迷人研究领域的未来前景。 (c)2019年Elsevier B.V.保留所有权利。

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