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Preparation of Electrochemical Biosensor for Detection of Organophosphorus Pesticides

机译:电化学生物传感器检测有机磷农药的制备

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摘要

Polyvinyl chloride (PVC) can be used to develop reaction beaker which acts as electrochemical cell for the measurement of OP pesticides. Being chemically inert, corrosion resistant, and easy in molding to various shapes and size, PVC can be used for the immobilization of enzyme. Organophosphorus hydrolase was immobilized covalently onto the chemically activated inner surface of PVC beaker by using glutaraldehyde as a coupling agent. The carbon nanotubes paste working electrode was constructed for amperometric measurement at a potential of +0.8 V. The biosensor showed optimum response at pH 8.0 with incubation temperature of 40°C. K m and I max for substrate (methyl parathion) were 322.58 µM and 1.1 µA, respectively. Evaluation study showed a correlation of 0.985, which was in agreement with the standard method. The OPH biosensor lost 50% of its initial activity after its regular use for 25 times over a period of 50 days when stored in 0.1 M sodium phosphate buffer, pH 8.0 at 4°C. No interference was observed by interfering species.
机译:聚氯乙烯(PVC)可用于开发反应烧杯,该烧杯充当电化学池,用于测量OP农药。 PVC具有化学惰性,耐腐蚀并且易于成型为各种形状和尺寸,可用于固定酶。通过使用戊二醛作为偶联剂,将有机磷水解酶共价固定在PVC烧杯的化学活化内表面上。构建碳纳米管糊状工作电极,用于在+0.8 V的电位下进行安培测量;在40℃的孵育温度下,pH 8.0时,生物传感器显示出最佳响应。底物(甲基对硫磷)的K m和I max分别为322.58μm和1.1μA。评估研究显示相关系数为0.985,与标准方法一致。将OPH生物传感器保存在4°C的0.1 M磷酸钠缓冲液(pH 8.0)中后,在50天内定期使用25次后,其初始活性下降了50%。干扰物种未观察到干扰。

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