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使用基于酯酶/PANI/CNT/CuNP的电化学生物传感器检测PET瓶装饮料和湖水中的邻苯二甲酸酯。

Detection of phthalate esters in PET bottled drinks and lake water using esterase/PANI/CNT/CuNP based electrochemical biosensor.

作者信息

Annamalai Jayshree, Vasudevan Namasivayam

机构信息

Centre for Environmental Studies, Department of Civil Engineering, Anna University, CEG Campus, Chennai, 600025, India.

Centre for Environmental Studies, Department of Civil Engineering, Anna University, CEG Campus, Chennai, 600025, India.

出版信息

Anal Chim Acta. 2020 Oct 23;1135:175-186. doi: 10.1016/j.aca.2020.09.041. Epub 2020 Sep 25.

Abstract

Phthalate esters (PEs) are the most common plasticizers that tends to exhibit endocrine disruption. Since, these PEs are used in the manufacture of PET bottles and PVC products: point of exposure magnifies up on consumption of PET bottle and plastic container stored drinking water and beverages. Apart from human exposure to PEs, bioaccumulation of PEs and toxic effects among wildlife also seems to be divergent. In the present study, an enzyme-based biosensor for the detection of PEs was developed to overcome the tedious extraction procedures involving PE extraction and sophisticated instruments for the detection. Linear Sweep voltammetry analysis of Nafion (NF) surface modified glassy carbon electrode with esterase (EST) and nano-components was carried-out. Peak potential of individual PEs were in the range of -1.72 to -1.82 V at the concentration of 1 × 10 mmol L. Sensitivity of EST/PANI/CNT/CuNP-NF modified GCE was determined in terms of detection limit and was calibrated to be 0.03-0.08 nmol L. Thus, the developed enzyme based electrochemical sensor could be successfully employed in determining PE exposure in humans and bioaccumulation among aquatic flora and fauna via., consumption of PET bottle stored drinks and industrial effluents discharged into the lakes.

摘要

邻苯二甲酸酯(PEs)是最常见的增塑剂,往往具有内分泌干扰作用。由于这些PEs用于制造PET瓶和PVC产品,因此,当饮用PET瓶和塑料容器储存的饮用水及饮料时,接触点会增加。除了人类接触PEs外,PEs在野生动物中的生物累积和毒性作用似乎也有所不同。在本研究中,开发了一种基于酶的生物传感器用于检测PEs,以克服涉及PEs提取的繁琐提取程序以及用于检测的精密仪器。对用酯酶(EST)和纳米组分修饰的Nafion(NF)表面的玻碳电极进行线性扫描伏安法分析。在浓度为1×10 mmol/L时,各PEs的峰值电位在-1.72至-1.82 V范围内。根据检测限测定了EST/PANI/CNT/CuNP-NF修饰玻碳电极的灵敏度,校准后为0.03-0.08 nmol/L。因此,所开发的基于酶的电化学传感器可成功用于通过饮用PET瓶储存的饮料和排放到湖泊中的工业废水来测定人类的PEs暴露以及水生动植物中的生物累积。

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