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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Amperometric sulfide detection using Coprinus cinereus peroxidase immobilized on screen printed electrode in an enzyme inhibition based biosensor
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Amperometric sulfide detection using Coprinus cinereus peroxidase immobilized on screen printed electrode in an enzyme inhibition based biosensor

机译:在基于酶抑制的生物传感器中使用固定在丝网印刷电极上的灰粉鬼伞过氧化物酶进行安培硫化物检测

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摘要

In the present work, an amperometric inhibition biosensor for the determination of sulfide has been fabricated by immobilizing Coprinus cinereus peroxidase (CIP) on the surface of screen printed electrode (SPE). Chitosan/acrylamide was applied for immobilization of peroxidase on the working electrode. The amperometric measurement was performed at an applied potential of -150. mV versus Ag/AgCl with a scan rate of 100. mV in the presence of hydroquinone as electron mediator and 0.1. M phosphate buffer solution of pH 6.5. The variables influencing the performance of sensor including the amount of substrate, mediator concentration and electrolyte pH were optimized. The determination of sulfide can be achieved in a linear range of 1.09-16.3 μM with a detection limit of 0.3 μM. Developed sensor showed quicker response to sulfide compared to the previous developed sulfide biosensors. Common anions and cations in environmental water did not interfere with sulfide detection by the developed biosensor. Cyanide interference on the enzyme inhibition caused 43.25% error in the calibration assay which is less than the amounts reported by previous studies. Because of high sensitivity and the low-cost of SPE, this inhibition biosensor can be successfully used for analysis of environmental water samples.
机译:在目前的工作中,通过将灰粉鬼伞过氧化物酶(CIP)固定在丝网印刷电极(SPE)的表面上,制得了用于测定硫化物的安培抑制生物传感器。壳聚糖/丙烯酰胺用于将过氧化物酶固定在工作电极上。在-150的施加电势下进行安培测量。在存在氢醌作为电子介体的情况下,扫描速度为100 mV,相对于Ag / AgCl的mV为0.1。 M磷酸盐缓冲溶液的pH值为6.5。优化了影响传感器性能的变量,包括底物量,介体浓度和电解质pH。硫化物的测定可以在1.09-16.3μM的线性范围内完成,检出限为0.3μM。与以前开发的硫化物生物传感器相比,开发的传感器对硫化物的响应更快。环境水中的常见阴离子和阳离子不会干扰已开发的生物传感器对硫化物的检测。氰化物对酶抑制的干扰在校准分析中引起43.25%的误差,该误差小于先前研究报告的数量。由于高灵敏度和SPE的低成本,这种抑制生物传感器可以成功地用于环境水样的分析。

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