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Different kinetics govern dopaminergic transmission in the amygdala prefrontal cortex and striatum: an in vivo voltammetric study

机译:不同的动力学控制杏仁核前额叶皮层和纹状体中的多巴胺能传递:体内伏安法研究

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摘要

The regulation of extracellular dopamine (DA) concentrations was examined and compared in vivo in four projection fields of mesotelencephalic dopaminergic neurons with fast-scan cyclic voltammetry at carbon-fiber microelectrodes. Transient electrical stimulation of ascending DA fibers in a near physiological range of frequencies (10–20 Hz) elicited similar levels of extracellular DA in the medial prefrontal cortex (MPFC), basal lateral amygdaloid nucleus (BAN), caudate-putamen (CP), and nucleus accumbens (NAc) despite the documented 90-fold disparity in DA tissue levels and terminal density. However, marked differences were observed in the dynamics and overall frequency dependence of the evoked synaptic overflow of DA. These differences are due to the significantly different rates of release and uptake found in each of the four regions. For example, rate constants for the release of the four regions. For example, rate constants for the release and uptake of DA were similar in the MPFC and BAN but approximately 8 and 50 times less, respectively, than that in the CP and NAc. When the parameters were normalized to endogenous DA tissue content, a unique picture emerged: compared to all other regions, relative release was 10-fold greater in the MPFC while relative uptake was at least 10 times less in the BAN. The results further differentiate the functional characteristics of mesotelencephalic dopaminergic systems and demonstrate the regiospecific nature of DA neural transmission in the brain. In addition, the regulation of extracellular DA levels in the MPFC and BAN is suitable for the “long- range” transfer of chemical information in the brain and is consistent with a hypothesis of extrasynaptic neurotransmission.
机译:在碳纤维微电极上用快速扫描循环伏安法在中脑多巴胺能神经元的四个投影场中检查并比较了体内多巴胺(DA)浓度的调节。在近乎生理频率范围(10–20 Hz)内对上升的DA纤维进行瞬态电刺激,在内侧前额叶皮层(MPFC),基底外侧杏仁核(BAN),尾状丘脑(CP),尽管DA组织水平和终末密度之间存在90倍的差异,但伏隔核(NAc)仍然存在。但是,在DA诱发的突触溢出的动力学和总体频率依赖性方面观察到明显差异。这些差异是由于在四个区域中的每个区域发现的释放和摄取速率明显不同。例如,用于释放四个区域的速率常数。例如,MPFC和BAN中DA释放和摄取的速率常数相似,但分别比CP和NAc低约8倍和50倍。将参数标准化为内源性DA组织含量后,出现了一个独特的图景:与所有其他区域相比,MPFC中的相对释放量要大10倍,而BAN中的相对吸收量至少要低10倍。结果进一步区分了中脑脑多巴胺能系统的功能特征,并证明了DA神经传递在大脑中的区域特异性。此外,MPFC和BAN中细胞外DA水平的调节适合于大脑中化学信息的“远距离”传递,并且符合突触外神经传递的假设。

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