首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Synergistic effect of hydroxypropyl-β-cyclodextrin encapsulated soluble ferrocene and the gold nanocomposite modified glassy carbon electrode for the estimation of NO in biological systems
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Synergistic effect of hydroxypropyl-β-cyclodextrin encapsulated soluble ferrocene and the gold nanocomposite modified glassy carbon electrode for the estimation of NO in biological systems

机译:羟丙基-β-环糊精包埋的可溶性二茂铁与金纳米复合修饰玻碳电极协同估算生物系统中的NO

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摘要

An electrochemical assay for sensing NO in biological systems is described in this paper. The ferrocene mediated reduction of NO, facilitated by the gold nanocomposite modified glassy carbon electrode is followed by an amperometric procedure. The analytical protocol involves the modification of a glassy carbon electrode by an overlayer of Au nanocomposites prepared through galvanic reduction. Additional overlayers can be built on the surface by repetition of the procedure. The modification leads to the decrease of the over-potential required for the analysis and results in a non-biofouling surface. Since the procedure is based on the electrochemical reduction of NO, the potential interferences from species like dopamine, ascorbic acid, etc., are overcome. The sensitivity, detection limit and response time achieved through this protocol for the modified electrode containing three Au overlayers are 0.03 nAM, 25.75 nM and <5 s. Analysis of NO has been carried out in real samples like liver extract, peripheral blood mononuclear cells (PBMCs) and miconazole nitrate ointment and the values obtained are comparable with that obtained by Griess analysis.
机译:本文介绍了用于检测生物系统中NO的电化学检测方法。由金纳米复合物修饰的玻璃碳电极促进的二茂铁介导的NO还原,然后进行安培法。分析方案涉及通过电镀还原法制备的金纳米复合材料覆盖层对玻璃碳电极的改性。通过重复该过程,可以在表面上构建其他叠加器。修饰导致分析所需的过电势降低,并导致非生物污染的表面。由于该程序基于NO的电化学还原,因此可以克服来自多巴胺,抗坏血酸等物质的潜在干扰。通过此协议,对于包含三个Au覆盖层的修饰电极,其灵敏度,检测限和响应时间为0.03 nA / nM,25.75 nM和<5 s。已经在诸如肝提取物,外周血单核细胞(PBMC)和硝酸咪康唑软膏的真实样品中进行了NO分析,所得值与通过Griess分析获得的值相当。

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