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Zinc Oxide Tetrapods Based Biohybrid Interface for Voltammetric Sensing of Helicobacter pylori

机译:基于氧化锌的螺旋杆菌伏安传感的生物冬冬孔

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摘要

Helicobacter pylori is a Gram-negative, spiral shaped, microaerophilic bacteria that colonizes human gastric mucosa and causes various gastric diseases. In this work, the utilization of ion irradiated zinc oxide tetrapods (ZnO-T) based biohybrid interface accentuates the development of an electrochemical immunosensor for the fast and sensitive detection of H. pylori. After coating of (ZnO-T) over the surface of screen printed electrode (SP-AuE) through electrodeposition, the ZnO-T/SP-AuE was irradiated with N-2(+) ion of energy 100 keV. The ion irradiation significantly enhances the conductivity of ZnO-T coated SP-AuE. The revamped SP-AuE is further used for establishing an immunosensor interface based upon immobilization of the CagA antigen on ZnO-T electrodeposited over the surface of SP-AuE. The sensing interface demonstrated good linearity (0.2 ng/mL to SO ng/mL) and limit of detection (0.2 ng/mL). The ion beam irradiated ZnO-T based immunosensor showed significantly high conductivity and enhanced the analytical properties of the working electrode in terms of the sensitivity, detection limit, and response time. A study on the comparison of irradiated and pristine electrode is performed for amperometric sensing of H. pylon. In addition, the significance of work conducted on ion irradiated ZnO-T based interfaces provides a basis of further development of electrochemical immunosensors.
机译:幽门螺杆菌是一种革兰氏阴性螺旋形的微生能细菌,使人胃粘膜殖民,并导致各种胃病。在这项工作中,基于离子照射的氧化锌四叠(ZnO-T)的生物冬冬冬孔的利用突出了电化学免疫传感器的开发,用于幽门螺杆菌的快速和敏感性检测。通过电沉积在丝网印刷电极(SP-AUE)表面上涂覆(ZnO-T)之后,用100keV的N-2(+)离子照射ZnO-T / Sp-Aue。离子辐射显着提高了ZnO-T涂层SP-Aue的电导率。改进的SP-Aue还用于基于在SP-Aue的表面上的ZnO-T上的Caga抗原固定的免疫传感器界面来建立免疫传感器界面。感测界面显示出良好的线性度(0.2ng / ml为SO ng / ml)和检测极限(0.2ng / ml)。离子束照射的基于ZnO-T的免疫传感器显示出显着高的导电性,并在灵敏度,检测极限和响应时间方面提高了工作电极的分析性质。对辐射和原始电极的比较进行研究,对H. Pylon的电流感测进行。此外,在离子照射的ZnO-T基基接口上进行的工作的重要性提供了电化学免疫调菌体进一步发展的基础。

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