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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dopamine D1 receptor actions in layers V-VI rat prefrontal cortex neurons in vitro: modulation of dendritic-somatic signal integration.
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Dopamine D1 receptor actions in layers V-VI rat prefrontal cortex neurons in vitro: modulation of dendritic-somatic signal integration.

机译:多巴胺D1受体在体外V-VI层大鼠前额叶皮层神经元中的作用:调节树突状体信号整合。

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The ionic mechanisms by which dopamine (DA) regulates the excitability of layers V-VI prefrontal cortex (PFC) output neurons (including those that project to the nucleus accumbens) were investigated in rat brain slices using in vitro intracellular recording techniques. DA or the D1 receptor agonist SKF38393, but not the D2 agonist quinpirole, reduced the first spike latency and lowered the firing threshold of the PFC neurons in response to depolarizing current pulses. This was accomplished by enhancing the duration of a tetradotoxinsensitive, slowly inactivating Na+ current and attenuating a slowly inactivating, outwardly rectifying, dendrotoxin-sensitive K+ current. Furthermore, D1 receptor stimulation attenuated high-threshold Ca2+ spike(s) (HTS) evoked primarily from the apical dendrites of these PFC neurons. Taken together, these data suggest that D1 receptor stimulation on layers V-VI pyramidal PFC neurons: (1) restricts the effects of inputs to the apical dendrites of these neurons by attenuatingthe dendritic HTS-mediated amplification of such inputs; and (2) potentiates the influence of local inputs from neighboring deep layers V-VI neurons by enhancing the slowly inactivating Na+ current and attenuating the slowly inactivating K+ current. By influencing the input/output characteristics of PFC-->NAc neurons, DA may play an important role in the processes through which PFC signals are translated into action.
机译:使用体外细胞内记录技术,在大鼠脑切片中研究了多巴胺(DA)调节V-VI前额叶皮层(PFC)输出神经元(包括投射到伏隔核的神经元)的兴奋性的离子机制。 DA或D1受体激动剂SKF38393,而不是D2激动剂喹吡罗,减少了第一尖峰潜伏期并降低了PFC神经元对去极化电流脉冲的触发阈值。这是通过增加对四毒毒素敏感的,缓慢失活的Na +电流的持续时间,并减弱缓慢失活的,向外整流的对树突毒素敏感的K +电流来实现的。此外,D1受体刺激减弱了主要由这些PFC神经元的顶端树突引起的高阈值Ca2 +尖峰(HTS)。综上所述,这些数据表明在V-VI金字塔形PFC神经元上的D1受体刺激:(1)通过减弱树突状HTS介导的此类输入的扩增来限制输入对这些神经元的顶端树突的影响; (2)通过增强缓慢失活的Na +电流并减弱缓慢失活的K +电流来增强来自相邻深层V-VI神经元的局部输入的影响。通过影响PFC-> NAc神经元的输入/输出特性,DA可能在将PFC信号转化为作用的过程中发挥重要作用。

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