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用于实时监测脑组织氧的碳糊电极的特性描述。

Characterisation of carbon paste electrodes for real-time amperometric monitoring of brain tissue oxygen.

机构信息

Department of Chemistry, National University of Ireland Maynooth, Maynooth, Co. Kildare, Ireland.

出版信息

J Neurosci Methods. 2011 Feb 15;195(2):135-42. doi: 10.1016/j.jneumeth.2010.11.013. Epub 2010 Nov 27.

Abstract

Tissue O₂ can be monitored using a variety of electrochemical techniques and electrodes. In vitro and in vivo characterisation studies for O₂ reduction at carbon paste electrodes (CPEs) using constant potential amperometry (CPA) are presented. Cyclic voltammetry indicated that an applied potential of -650 mV is required for O₂ reduction at CPEs. High sensitivity (-1.49 ± 0.01 nA/μM), low detection limit (ca. 0.1 μM) and good linear response characteristics (R² > 0.99) were observed in calibration experiments performed at this potential. There was also no effect of pH, temperature, and ion changes, and no dependence upon flow/fluid convection (stirring). Several compounds (e.g. dopamine and its metabolites) present in brain extracellular fluid were tested at physiological concentrations and shown not to interfere with the CPA O₂ signal. In vivo experiments confirmed a sub-second response time observed in vitro and demonstrated long-term stability extending over twelve weeks, with minimal O₂ consumption (ca. 1 nmol/h). These results indicate that CPEs operating amperometrically at a constant potential of -650 mV (vs. SCE) can be used reliably to continuously monitor brain extracellular tissue O₂.

摘要

组织中的氧气可以使用多种电化学技术和电极进行监测。本文介绍了使用恒电位安培法(CPA)在碳糊电极(CPE)上对氧气还原进行体外和体内特征研究的结果。循环伏安法表明,在 CPE 上还原氧气需要施加-650 mV 的应用电位。在该电位下进行的校准实验观察到高灵敏度(-1.49 ± 0.01 nA/μM)、低检测限(约 0.1 μM)和良好的线性响应特性(R²>0.99)。此外,pH 值、温度和离子变化均无影响,也不依赖于流动/流体对流(搅拌)。在生理浓度下测试了脑细胞外液中存在的几种化合物(如多巴胺及其代谢物),结果表明它们不会干扰 CPA 氧气信号。体内实验证实了在体外观察到的亚秒级响应时间,并证明了长达十二周的长期稳定性,氧气消耗最小(约 1 nmol/h)。这些结果表明,在恒电位为-650 mV(相对于 SCE)下进行恒电流操作的 CPE 可用于可靠地连续监测脑细胞外组织中的氧气。

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