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用于体内应用的碳纤维微电极。

Carbon-fiber microelectrodes for in vivo applications.

作者信息

Huffman Megan L, Venton B Jill

机构信息

Department of Chemistry, University of Virginia, P.O. Box 400319, Charlottesville, VA 22904, USA.

出版信息

Analyst. 2009 Jan;134(1):18-24. doi: 10.1039/b807563h. Epub 2008 Oct 31.

Abstract

Carbon-fiber microelectrodes (CFMEs) have been a useful tool for measuring rapid changes in neurotransmitters because of their small size, sensitivity, and good electrochemical properties. In this article, we highlight recent advances using CFMEs for measuring neurotransmitters in vivo. Dopamine has been a primary neurotransmitter of interest but direct electrochemical detection of other neurochemicals including nitric oxide and adenosine has also been investigated. Surface treatments have been studied to enhance electrode sensitivity, such as covalent modification or the addition of a layer of carbon nanotubes. Enzyme-modified microelectrodes that detect non-electroactive compounds further extend the usefulness of CFMEs beyond the traditional monoamines. CFMEs continue to be used in vivo to understand basic neurobiological mechanisms and the actions of pharmacological agents, including drugs of abuse. Advances in sensitivity and instrumentation now allow CFMEs to be used for measurements of natural dopamine release that occur during behavioral experiments. A new technique combining electrochemistry with electrophysiology at a single microelectrode facilitates a better understanding of neurotransmitter concentrations and their effects on cell firing. Future research in this field will likely concentrate on fabricating smaller electrodes and electrode arrays, as well as expanding the use of CFMEs in neuroscience beyond dopamine.

摘要

碳纤维微电极(CFMEs)因其尺寸小、灵敏度高和良好的电化学性能,一直是测量神经递质快速变化的有用工具。在本文中,我们重点介绍了使用CFMEs进行体内神经递质测量的最新进展。多巴胺一直是主要关注的神经递质,但对包括一氧化氮和腺苷在内的其他神经化学物质的直接电化学检测也已得到研究。人们研究了表面处理以提高电极灵敏度,如共价修饰或添加一层碳纳米管。检测非电活性化合物的酶修饰微电极进一步扩展了CFMEs的用途,使其超越了传统的单胺类物质。CFMEs继续用于体内研究,以了解基本的神经生物学机制和药理剂的作用,包括滥用药物。灵敏度和仪器设备的进步现在使CFMEs能够用于测量行为实验期间自然发生的多巴胺释放。一种在单个微电极上将电化学与电生理学相结合的新技术有助于更好地理解神经递质浓度及其对细胞放电的影响。该领域未来的研究可能会集中在制造更小的电极和电极阵列,以及将CFMEs在神经科学中的应用扩展到多巴胺以外的领域。

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Carbon-fiber microelectrodes for in vivo applications.用于体内应用的碳纤维微电极。
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