Concomitant in Vivo Voltammetric and Electrophysiological Analysis Indicate that Nociceptin/Orphanin FQ Affects Dopamine and then Serotonin Activities in Brain Substancia Nigra.

F. Crespi
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Abstract

Nociceptin/orphanin-FQ (NOCI) together with its receptor NOP are widely expressed in cortical and subcortical motor areas and it is known that NOCI acts as an anxiolytic attenuating the behavioral inhibition of animals acutely exposed to stressful/anxiogenic conditions. Influence of NOCI upon the dopaminergic system has been observed in the ventral tegmental area and in the nucleus accumbens as well as an inhibitory action of NOCI is described upon serotoninergic mechanisms at cells and terminal levels. In particular, it is known that serotoninergic fibers from the raphe system project to the substancia nigra (SN) and that this modulation is behaviourally relevant. In the present work, the effect of exogenous NOCI injected into the SN upon DA and 5-HT levels have been analyzed by means of differential pulse voltammetry and nafion-carbon fiber microelectrodes. Electrophysiological monitoring of multicell activity was concomitantly performed with the same microsensor. It appeared that both levels of these biogenic amines were specularly altered, with possibly a driving influence of the DA activity upon the serotoninergic function(s).
同时的体内伏安和电生理分析表明,痛觉啡肽/孤啡肽FQ影响脑黑质多巴胺和血清素的活性。
Nociceptin/orphanin-FQ (NOCI)及其受体NOP广泛表达于皮质和皮质下运动区,已知NOCI可作为抗焦虑药,减轻急性应激/焦虑条件下动物的行为抑制。在腹侧被盖区和伏隔核观察到NOCI对多巴胺能系统的影响,并在细胞和终末水平上描述了NOCI对血清素能机制的抑制作用。特别是,已知从中缝系统的血清素能纤维投射到黑质(SN),并且这种调节与行为相关。本研究采用差分脉冲伏安法和钠-碳纤维微电极分析了外源NOCI注入SN对DA和5-HT水平的影响。多细胞活动的电生理监测与同一微传感器同时进行。这两种生物胺的水平似乎都发生了明显的改变,可能是DA活性对血清素能功能的驱动影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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