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Detection of Nitric Oxide from Living Cells Using Polymeric Zinc Organic Framework-Derived Zinc Oxide Composite with Conducting Polymer

机译:用聚合物锌有机骨架衍生的氧化锌复合材料检测与导电聚合物的氧化锌复合物的一氧化氮

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摘要

Sensitive and selective detection of nitric oxide (NO) in the human body is crucial since it has the vital roles in the physiological and pathological processes. This study reports a new type of electrochemical NO biosensor based on zinc-dithiooxamide framework derived porous ZnO nanoparticles and polyterthiophene-rGO composite. By taking advantage of the synergetic effect between ZnO and poly(TTBA-rGO) (TTBA = 3'-(p-benzoic acid)-2,2': 5',2"-terthiophene, rGO = reduced graphene oxide) nanocomposite layer, the poly(TTBA-rGO)/ZnO sensor probe displays excellent electrocatalytic activity and explores to detect NO released from normal and cancer cell lines. The ZnO is immobilized on a composite layer of poly(TTBA-rGO). The highly porous ZnO offers a high electrolyte accessible surface area and high ion-electron transport rates that efficiently catalyze the NO reduction reaction. Amperometry with the modified electrode displays highly sensitive response and wide dynamic range of 0.019-76 x 10(-6) m with the detection limit of 7.7 +/- 0.43 x 10(-9) m. The sensor probe is demonstrated to detect NO released from living cells by drug stimulation. The proposed sensor provides a powerful platform for the low detection limit that is feasible for real-time analysis of NO in a biological system.
机译:人体中一氧化氮(NO)的敏感性和选择性检测是至关重要的,因为它具有生理和病理过程中的重要作用。本研究报告了一种基于锌 - 二硫代氧酰胺框架衍生多孔ZnO纳米颗粒和聚任噻吩-RGO复合材料的新型电化学无生物传感器。通过利用ZnO和Poly(TTBA-RGO)(TTBA = 3' - (对苯甲酸)-2,2':5',2“ - 噻吩,RGO =的氧化烯氧化物)纳米复合材料层之间的协同效应,聚(TTBA-RGO)/ ZnO传感器探针显示出优异的电催化活性,并探索从正常和癌细胞系中释放出没有释放的。ZnO固定在聚(TTBA-RGO)的复合层上。高度多孔ZnO提供高电解质可接近的表面积和高离子电子传输速率,可有效地催化无减少反应。与改进电极的安培测定,具有0.019-76 x 10(-6)m的高灵敏度响应和宽动态范围,检测限7.7 +/- 0.43 x 10(-9)m。证明传感器探针通过药物刺激检测从活细胞释放的。所提出的传感器为低检测极限提供了强大的平台,可行的实时分析是可行的在生物系统中没有。

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