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通过电化学沉积硫堇包覆的氧化铟锡(ITO)薄膜进行过氧化氢传感。

H2O2 sensing through electrochemically deposited thionine coated ITO thin film.

作者信息

Singh P, Srivastava S, Singh S K

机构信息

Department of Biotechnology, Motilal Nehru National Institute of Technology, Allahabad-211004 Uttar Pradesh, India.

Centre for Animal Sciences, School of Basic and Applied Sciences, Central University of Punjab, Bathinda-151001 Punjab, India.

出版信息

Cell Mol Biol (Noisy-le-grand). 2017 Jul 31;63(6):56-59. doi: 10.14715/cmb/2017.63.6.12.

Abstract

Progression and initiation of different diseases including pulmonary diseases, alzheimer's and tumors are linked with the oxidative stress, an important cause of cell damage. Different antioxidant enzymes are involved in detoxifying reactive oxygen species including hydrogen peroxide (H2O2) that is generated in response to various stimuli and has important role in cell activation & bio-signaling processes. Herein, we developed hydrogen peroxide electrochemical sensor based on horseradish peroxidase (HRP) entrapped polymerized thionine (PTH) film. Electrochemical deposition of thionine (dye) on indium tin oxide (ITO) surface was carried out through chornoamperometry followed by cyclic voltammetry. Deposited thionine thin film obtained was checked for its stability at different scan rates. The PTH-modified electrodes showed linear dependence of peak current with scan rate within the range of 20 to 100 mV s-1. Thionine used as electron transfer mediator between heme site of HRP and electrode. Cyclic voltammetry showed increase in the reduction peak current due to electrocatalytic reduction of H2O2. The sensor detection limit range from 10-1 _ 102 µM and limit of detection was 0.1µM. The proposed sensor has good storage response, cost effective, high sensitivity and wide linear range that could be used for the fabrication of other enzyme based biosensors.

摘要

包括肺部疾病、阿尔茨海默病和肿瘤在内的不同疾病的进展和引发都与氧化应激有关,氧化应激是细胞损伤的一个重要原因。不同的抗氧化酶参与清除活性氧,包括过氧化氢(H2O2),它是在各种刺激下产生的,在细胞激活和生物信号传导过程中起重要作用。在此,我们开发了一种基于包埋辣根过氧化物酶(HRP)的聚合硫堇(PTH)膜的过氧化氢电化学传感器。通过计时电流法随后进行循环伏安法,将硫堇(染料)电化学沉积在氧化铟锡(ITO)表面。检查所得沉积硫堇薄膜在不同扫描速率下的稳定性。PTH修饰电极在20至100 mV s-1范围内显示出峰值电流与扫描速率的线性关系。硫堇用作HRP血红素位点与电极之间的电子转移介质。循环伏安法显示由于H2O2的电催化还原,还原峰值电流增加。该传感器的检测限范围为10-1至102 µM,检测限为0.1µM。所提出的传感器具有良好的存储响应、成本效益高、灵敏度高和线性范围宽等特点,可用于制造其他基于酶的生物传感器。

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