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Improved techniques for examining rapid dopamine signaling with iontophoresis

机译:改进用于检查具有离子电渗疗法的快速多巴胺信号的技术

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摘要

Dopamine is a neurotransmitter that is utilized in brain circuits associated with reward processing and motor activity. Advances in microelectrode techniques and cyclic voltammetry have enabled its extracellular concentration fluctuations to be examined on a subsecond time scale in the brain of anesthetized and freely moving animals. The microelectrodes can be attached to micropipettes that allow local drug delivery at the site of measurement. Drugs that inhibit dopamine uptake or its autoreceptors can be evaluated while only affecting the brain region directly adjacent to the electrode. The drugs are ejected by iontophoresis in which an electrical current forces the movement of molecules by a combination of electrical migration and electroosmosis. Using electroactive tracer molecules, the amount ejected can be measured with cyclic voltammetry. In this review we will give an introduction to the basic principles of iontophoresis, including a historical account on the development of iontophoresis. It will also include an overview of the use of iontophoresis to study neurotransmission of dopamine in the rat brain. It will close by summarizing the advantages of iontophoresis and how the development of quantitative iontophoresis will facilitate future studies.
机译:多巴胺是一种神经递质,可用于与奖赏处理和运动活动相关的大脑回路。微电极技术和循环伏安法的进步使得能够在亚秒级的时间范围内对麻醉和自由活动的动物的大脑检查其细胞外浓度波动。可以将微电极连接到微量移液器上,以允许在测量部位进行局部药物递送。可以评估抑制多巴胺摄取或其自身受体的药物,同时仅影响与电极直接相邻的大脑区域。药物通过离子电渗疗法排出,其中电流通过电迁移和电渗作用迫使分子运动。使用电活性示踪剂分子,可以通过循环伏安法测量喷射量。在本文中,我们将介绍离子电渗疗法的基本原理,包括对离子电渗疗法发展的历史介绍。它还将概述使用离子电渗疗法研究大鼠脑中多巴胺的神经传递的情况。最后将总结离子电渗疗法的优势以及定量离子电渗疗法的发展将如何促进未来的研究。

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