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Tracking tonic dopamine levels in vivo using multiple cyclic square wave voltammetry

机译:使用多周期方波伏安法跟踪体内补品多巴胺水平

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摘要

For over two decades, fast-scan cyclic voltammetry (FSCV) has served as a reliable analytical method for monitoring dopamine release in near real-time in vivo. However, contemporary FSCV techniques have been limited to measure only rapid (on the order of seconds, i.e. phasic) changes in dopamine release evoked by either electrical stimulation or elicited by presentation of behaviorally salient stimuli, and not slower changes in the tonic extracellular levels of dopamine (i.e. basal concentrations). This is because FSCV is inherently a differential method that requires subtraction of prestimulation tonic levels of dopamine to measure phasic changes relative to a zeroed baseline. Here, we describe the development and application of a novel voltammetric technique, multiple cyclic square wave voltammetry (M-CSWV), for analytical quantification of tonic dopamine concentrations in vivo with relatively high temporal resolution (10 s). M-CSWV enriches the electrochemical information by generating two dimensional voltammograms which enable high sensitivity (limit of detection, 0.17 nM) and selectivity against ascorbic acid, and 3,4-dihydroxyphenylacetic acid (DOPAC), including changes in pH. Using M-CSWV, a tonic dopamine concentration of 120 ± 18 nM (n = 7 rats, ± SEM) was determined in the striatum of urethane anethetized rats. Pharmacological treatments to elevate dopamine by selectively inhibiting dopamine reuptake and to reduce DOPAC by inhibition of monoamine oxidase supported the selective detection of dopamine in vivo. Overall, M-CSWV offers a novel voltammetric technique to quantify levels and monitor changes in tonic dopamine concentrations in the brain to further our understanding of the role of dopamine in normal behavior and neuropsychiatric disorders.
机译:在过去的二十多年中,快速扫描循环伏安法(FSCV)已成为一种可靠的分析方法,用于在体内近实时地监测多巴胺的释放。然而,当代的FSCV技术仅限于仅测量由电刺激引起的或行为显着刺激引起的多巴胺释放的快速变化(以秒为单位,即阶段性),而不是缓慢地测量多巴胺的滋补细胞外水平变化。多巴胺(即基础浓度)。这是因为FSCV本质上是一种差分方法,需要减去多巴胺的预刺激补品水平以测量相对于调零基线的相位变化。在这里,我们描述了一种新颖的伏安技术的开发和应用,多循环方波伏安法(M-CSWV),用于以相对较高的时间分辨率(10 s)对体内多巴胺浓度进行分析量化。 M-CSWV通过生成二维伏安图来丰富电化学信息,该二维伏安图可实现高灵敏度(检测极限,0.17 nM)和对抗坏血酸和3,4-二羟基苯乙酸(DOPAC)的选择性,包​​括pH值的变化。使用M-CSWV,在尿烷化的大鼠纹状体中确定了120±18 nM的补品多巴胺浓度(n = 7只大鼠,±SEM)。通过选择性抑制多巴胺再摄取来提高多巴胺和通过抑制单胺氧化酶来降低DOPAC的药理学治疗支持体内多巴胺的选择性检测。总体而言,M-CSWV提供了一种新颖的伏安技术,可量化大脑中的多巴胺水平并监测其浓度变化,从而进一步了解多巴胺在正常行为和神经精神疾病中的作用。

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