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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Application of fast-scan cyclic voltammetry for the in vivo characterization of optically evoked dopamine in the olfactory tubercle of the rat brain
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Application of fast-scan cyclic voltammetry for the in vivo characterization of optically evoked dopamine in the olfactory tubercle of the rat brain

机译:快速扫描循环伏安法在大鼠脑嗅结节中光学诱发多巴胺体内表征中的应用

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The olfactory tubercle (OT), as a component of the ventral striatum, serves as an important multisensory integration center for reward-related processes in the brain. Recent studies show that dense dopaminergic innervation from the ventral tegmental area (VTA) into the OT may play an outsized role in disorders such as psychostimulant addiction and disorders of motivation, increasing recent scientific interest in this brain region. However, due to its anatomical inaccessibility, relative small size, and proximity to other dopamine-rich structures, neurochemical assessments using conventional methods cannot be readily employed. Here, we investigated dopamine (DA) regulation in the OT of urethane-anesthetized rats using in vivo fast-scan voltammetry (FSCV) coupled with carbon-fiber microelectrodes, following optogenetic stimulation of the VTA. The results were compared with DA regulation in the nucleus accumbens (NAc), a structure located adjacent to the OT and which also receives dense DA innervation from the VTA. FSCV coupled with optically evoked release allowed us to investigate the spatial distribution of DA in the OT and characterize OT DA dynamics (release and clearance) with subsecond temporal and micrometer spatial resolution for the first time. In this study, we demonstrated that DA transporters play an important role in regulating DA in the OT. However, the control of extracellular DA by uptake in the OT was less than in the NAc. The difference in DA transmission in the terminal fields of the OT and NAc may be involved in region-specific responses to drugs of abuse and contrasting roles in mediating reward-related behavior.
机译:嗅结节(OT)作为腹侧纹状体的组成部分,是大脑中与奖励相关的过程的重要的多感觉整合中心。最近的研究表明,从腹侧被盖区(VTA)进入OT的密集的多巴胺能神经支配可能在诸如精神刺激成瘾和动机障碍之类的疾病中发挥巨大作用,从而增加了对该脑区域的近期科学兴趣。然而,由于其解剖学上难以接近,相对较小的尺寸以及与其他富含多巴胺的结构的接近性,使用常规方法进行神经化学评估不能轻易进行。在这里,我们研究了VTA的光遗传学刺激后,使用体内快速扫描伏安法(FSCV)与碳纤维微电极结合,对氨基甲酸乙酯麻醉大鼠的OT中的多巴胺(DA)调节。将结果与伏隔核(NAc)中的DA调节相比较,伏隔核(OT)位于OT附近,并且还从VTA接受密集的DA神经支配。 FSCV结合光学诱发释放使我们能够首次研究亚秒级时间和微米级空间分辨率中OT中DA的空间分布,并表征OT DA动态(释放和清除)。在这项研究中,我们证明了DA转运蛋白在OT中调节DA中起着重要作用。但是,OT吸收对细胞外DA的控制作用小于NAc。在OT和NAc的末端区域中DA传递的差异可能涉及对滥用药物的区域特定反应以及在介导奖励相关行为中的对比作用。

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