首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Development of a novel biosensor based on a polypyrrole-dodecylbenzene sulphonate (PPy-DBS) film for the determination of amperometric cholesterol
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Development of a novel biosensor based on a polypyrrole-dodecylbenzene sulphonate (PPy-DBS) film for the determination of amperometric cholesterol

机译:基于聚吡咯-十二烷基苯磺酸膜(PPY-DBS)膜的新型生物传感器的开发,用于测定Amperometic胆固醇

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摘要

Herein a novel amperometric biosensor based on a conducting polymer with anionic dopant modified electrode was successfully developed for detection of cholesterol. Polypyrrole is deposited on a platinum surface and the sodium dodecylbenzene sulphonate (DBS) ion-doped polypyrrole film was electrochemically prepared by scanning the electrode potential between -0.8 and +0.8V at a scan rate of 20mV/s. The present electrochemical biosensor was optimized in terms of working potential, number of cycles, concentrations of monomer, and anionic dopant. Cholesterol oxidase (ChOx) was physically entrapped in PPy-DBS to construct an amperometric cholesterol biosensor. Amperometric determination is based on the electrochemical detection of H2O2 generated in the enzymatic reaction of cholesterol. Kinetic parameters, operational and storage stabilities, pH, and temperature dependencies were determined. Km and Imax were calculated as 0.11M and 0.967nM/min, respectively. The operational stability results showed that 90.0% of the response current was retained after 30 activity assays. Morphology of electrodes was characterized by SEM and AFM. Additionally, contact angle measurements were made with 1L water of polymer film and enzyme electrode. As a result, the cholesterol biosensor suggested in this study is easy to prepare and is highly cost-effective. This composite (PPy-DBS) can supply a biocompatible and electrochemical microenvironment for immobilization of the enzyme, making this material a good candidate for the fabrication of highly sensitive and selective cholesterol biosensors.
机译:本文成功地开发了一种基于具有阴离子掺杂剂改性电极的导电聚合物的新型化妆品生物传感器以检测胆固醇。在铂表面上沉积聚吡咯并通过以20mV / s的扫描速率扫描-0.8和+ 0.8V之间的电极电位,通过扫描电极电位在电化学制备的铂表面上。本发明的电化学生物传感器在工作电位,循环次数,单体浓度和阴离子掺杂剂方面进行了优化。胆固醇氧化酶(CHOX)物理捕获在PPY-DBS中以构建安培胆固醇生物传感器。安培测定基于胆固醇酶促反应中产生的H2O2的电化学检测。测定动力学参数,操作和储存稳定性,pH和温度依赖性。 KM和IMAX分别计算为0.11m和0.967nm / min。操作稳定性结果表明,在30个活性测定后保留90.0%的响应电流。通过SEM和AFM表征电极的形态。另外,用聚合物膜和酶电极的1L水制备接触角测量。因此,本研究中提出的胆固醇生物传感器易于制备并且具有高度成本效益。该复合材料(PPY-DBS)可以提供用于固定酶的生物相容性和电化学微环境,使得该材料制备高敏感和选择性胆固醇生物传感器的良好候选者。

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