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脑微透析及其在实验神经化学中的应用。

Brain microdialysis and its applications in experimental neurochemistry.

作者信息

Anderzhanova Elmira, Wotjak Carsten T

出版信息

Cell Tissue Res. 2013 Oct;354(1):27-39. doi: 10.1007/s00441-013-1709-4.

Abstract

Abstract Microdialysis is one of the most powerful neurochemistry techniques, which allows the monitoring of changes in the extracellular content of endogenous and exogenous substances in the brain of living animals. The strength as well as wide applicability of this experimental approach are based on the bulk theory of brain neurotransmission. This methodological review introduces basic principles of chemical neurotransmission and emphasizes the difference in neurotransmission types.Clear understanding of their significance and degree of engagement in regulation of physiological processes is an ultimate prerequisite not only for choosing an appropriate method of monitoring for interneuronal communication via chemical messengers but also for accurate data interpretation. The focus on the processes of synthesis/metabolism, receptor interaction/neuronal signaling or the behavioral relevance of neurochemical events sculpts the experiment design. Brain microdialysis is an important method for examining changes in the content of any substances, irrespective of their origin, in living animals. This article compares contemporary approaches and techniques that are used for monitoring neurotransmission (including in vivo brain microdialysis, voltammetric methods, etc). We highlight practical aspects of microdialysis experiments in particular to those researchers who are seeking to increase the repertoire of their experimental techniques with brain microdialysis.

摘要

摘要 微透析是最强大的神经化学技术之一,它能够监测活体动物大脑中内源性和外源性物质细胞外含量的变化。这种实验方法的优势及其广泛的适用性基于大脑神经传递的整体理论。本方法学综述介绍了化学神经传递的基本原理,并强调了神经传递类型的差异。清楚地了解它们在生理过程调节中的意义和参与程度,不仅是选择通过化学信使监测神经元间通讯的合适方法的最终前提,也是准确解释数据的最终前提。对合成/代谢过程、受体相互作用/神经元信号传导或神经化学事件的行为相关性的关注塑造了实验设计。脑微透析是检测活体动物中任何物质(无论其来源如何)含量变化的重要方法。本文比较了用于监测神经传递的当代方法和技术(包括体内脑微透析、伏安法等)。我们特别向那些试图通过脑微透析增加其实验技术种类的研究人员强调微透析实验的实际方面。

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