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Electrochemical biosensor based on integrated assembly of dehydrogenase enzymes and gold nanoparticles

机译:基于脱氢酶与金纳米颗粒集成组装的电化学生物传感器

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Development of a highly sensitive nanostructured electrochemical biosensor based on the integrated assembly of dehydrogenase enzymes and gold (Au) nanoparticle is described. The Au nanoparticles (AuNPs) have been self-assembled on a thiol-terminated, sol- gel-derived, 3-D, silicate network and enlarged by hydroxylamine seeding. The AuNPs on the silicate network efficiently catalyze the oxidation of NADH with a decrease in overpotential of similar to 915 mV in the absence of any redox mediator. The surface oxides of AuNP function as an excellent mediator, and a special inverted "V" shape voltammogram at less positive potential was observed for the oxidation of NADH. The AuNP self-assembled sol- gel network behaves like a nanoelectrode ensemble. The nanostructured electrode shows high sensitivity (0.056 +/- 0.001 nA/nM) toward NADH with an amperometric detection limit of 5 nM. The electrode displays excellent operational and storage stability. A novel methodology for the fabrication of a NADH-dependent dehydrogenase biosensor based on the integration of dehydrogenase enzyme and AuNPs with the silicate network is developed. The enzymatically generated NADH is, in turn, electrocatalytically detected by the AuNPs on the silicate network. The integrated assembly has been successfully used for the amperometric biosensing of lactate and ethanol at a potential of - 5 mV. The biosensor is very stable and highly sensitive, and it has a fast response time. The excellent performance validates the integrated assembly as an attractive sensing element for the development of new dehydrogenase biosensors.
机译:本文介绍了一种基于脱氢酶和金(Au)纳米颗粒集成组装的高灵敏度纳米结构电化学生物传感器的开发。Au纳米颗粒(AuNPs)在硫醇封端的溶胶凝胶衍生的3-D硅酸盐网络上自组装,并通过羟胺晶种扩大。硅酸盐网络上的AuNPs有效地催化了NADH的氧化,在没有任何氧化还原介质的情况下,过电位降低到类似于915 mV。AuNP的表面氧化物起到优良介质的作用,在NADH的氧化过程中观察到了具有较低正电位的特殊倒“V”形伏安图。AuNP自组装溶胶-凝胶网络的行为类似于纳米电极集合。纳米结构电极对NADH具有高灵敏度(0.056 +/- 0.001 nA/nM),安培检测限为5 nM。该电极具有出色的操作和储存稳定性。开发了一种基于脱氢酶和AuNPs与硅酸盐网络整合的NADH依赖性脱氢酶生物传感器的制备新方法。酶促生成的NADH又被硅酸盐网络上的AuNPs电催化检测。该集成组件已成功用于乳酸和乙醇的电化学生物传感,电位为 - 5 mV。生物传感器非常稳定且灵敏度高,响应时间快。出色的性能验证了集成组件作为开发新型脱氢酶生物传感器的有吸引力的传感元件。

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