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同时电化学检测小鼠肾脏器官组织产生的一氧化氮和一氧化碳。

Simultaneous electrochemical detection of nitric oxide and carbon monoxide generated from mouse kidney organ tissues.

作者信息

Lee Youngmi, Kim Jiyeon

机构信息

Department of Chemistry, The University of Tennessee, Knoxville, Tennessee 37996-1600, USA.

出版信息

Anal Chem. 2007 Oct 15;79(20):7669-75. doi: 10.1021/ac070814z. Epub 2007 Sep 19.

Abstract

A planar-type amperometric dual microsensor for simultaneous detection of nitric oxide and carbon monoxide is presented. The sensor consists of a dual platinum microdisk-based working electrode (WE) and a Ag/AgCl counter/reference electrode covered with an expanded poly(tetrafluoroethylene) (Tetra-tex) gas-permeable membrane. The dual WE possesses two different platinized platinum disks (WE1 and WE2, 250 and 25 microm in diameter, respectively). The larger WE1 is further modified with electrochemical deposition of tin. Use of two sensing disks different in their size as well as in their surface modification produces apparently different sensitivity ratios of NO to CO at WE1 and at WE2 (approximately 2 and approximately 10, respectively) that are induced by favorable CO oxidation on the surface of tin versus platinum. Anodic currents independently measured at WE1 and at WE2 are successfully converted to the concentrations of NO and CO in the co-presence of these gases using the differentiated sensitivities at each electrode. The sensor is evaluated in terms of its analytical performance: respectable linear dynamic range (sub nM to microM); low detection limit (approximately 1 nM for NO and <5 nM for CO); selectivity (over nitrite up to approximately 1 mM); and sensitivity (sufficient for analyzing physiological levels of NO and CO). Using the NO/CO dual microsensor, real-time, simultaneous, direct, and quantitative measurements of NO and CO generated from living biological tissue (mouse, c57, kidney) surfaces, for the first time, are reported.

摘要

本文介绍了一种用于同时检测一氧化氮和一氧化碳的平面型安培双微传感器。该传感器由基于双铂微盘的工作电极(WE)和覆盖有膨化聚四氟乙烯(Tetra-tex)透气膜的Ag/AgCl对电极/参比电极组成。双工作电极拥有两个不同的镀铂铂盘(WE1和WE2,直径分别为250和25微米)。较大的WE1进一步通过电化学沉积锡进行修饰。使用尺寸和表面修饰不同的两个传感盘,在WE1和WE2处产生了明显不同的NO与CO灵敏度比(分别约为2和约10),这是由锡表面与铂表面上有利的CO氧化作用引起的。利用每个电极的不同灵敏度,在WE1和WE2处独立测量的阳极电流成功地转换为这些气体共存时NO和CO的浓度。对该传感器的分析性能进行了评估:具有可观的线性动态范围(亚纳摩尔至微摩尔);低检测限(NO约为1纳摩尔,CO小于5纳摩尔);选择性(对亚硝酸盐高达约1毫摩尔);以及灵敏度(足以分析生理水平的NO和CO)。首次报道了使用NO/CO双微传感器对活体生物组织(小鼠,C57,肾脏)表面产生的NO和CO进行实时、同时、直接和定量测量。

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