首页> 外文OA文献 >Carbachol induces burst firing of dopamine cells in the ventral tegmental area by promoting calcium entry through L-type channels in the rat
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Carbachol induces burst firing of dopamine cells in the ventral tegmental area by promoting calcium entry through L-type channels in the rat

机译:卡巴胆碱通过促进大鼠L型通道中的钙进入而诱发腹侧被盖区多巴胺细胞的爆发放电

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摘要

Enhanced activity of the central dopamine system has been implicated in many psychiatric disorders including schizophrenia and addiction. Besides terminal mechanisms that boost dopamine levels at the synapse, the cell body of dopamine cells enhances terminal dopamine concentration through encoding action potentials in bursts. This paper presents evidence that burst firing of dopamine cells in the ventral tegmental area was under cholinergic control using nystatin-perforated patch clamp recording from slice preparations. The non-selective cholinergic agonist carbachol excited the majority of recorded neurones, an action that was not affected by blocking glutamate and GABA ionotropic receptors. Twenty per cent of dopamine cells responded to carbachol with robust bursting, an effect mediated by both muscarinic and nicotinic cholinoceptors postsynaptically. Burst firing induced as such was completely dependent on calcium entry as it could be blocked by cadmium and more specifically the L-type blocker nifedipine. In the presence of the sodium channel blocker tetrodotoxin, carbachol induced membrane potential oscillation that had similar kinetics and frequency as burst firing cycles and could also be blocked by cadmium and nifedipine. Direct activation of the L-type channel with Bay K8644 induced strong bursting which could be blocked by nifedipine but not by depleting internal calcium stores. These results indicate that carbachol increases calcium entry into the postsynaptic cell through L-type channels to generate calcium-dependent membrane potential oscillation and burst firing. This could establish the L-type channel as a target for modulating the function of the central dopamine system in disease conditions.
机译:中枢多巴胺系统的活性增强与许多精神疾病有关,包括精神分裂症和成瘾。除了增加突触中多巴胺水平的末端机制外,多巴胺细胞的细胞体还通过编码突触的动作电位来提高末端多巴胺浓度。本文提供了证据,表明使用制霉菌素穿孔的膜片钳记录切片制备物,可以在腹侧被盖区多巴胺细胞的爆发性放电进行胆碱能控制。非选择性胆碱能激动剂卡巴胆碱能激发大多数记录的神经元,这种作用不受谷氨酸和GABA离子受体的阻滞作用的影响。 20%的多巴胺细胞对卡巴胆碱产生强烈的爆发反应,毒蕈碱和烟碱胆碱受体在突触后介导这种作用。如此引发的爆炸射击完全取决于钙的进入,因为它可能被镉(更具体地说是L型阻滞剂硝苯地平)阻止。在存在钠通道阻滞剂河豚毒素的情况下,卡巴胆碱引起的膜电位振荡具有与爆发周期相似的动力学和频率,并且也可能被镉和硝苯地平所阻止。用Bay K8644直接激活L型通道会引起强烈的爆发,这可能被硝苯地平阻止,但不能通过消耗内部钙存储来阻止。这些结果表明,卡巴胆碱可增加钙通过L型通道进入突触后细胞,从而产生钙依赖性膜电位振荡和爆发放电。这可以建立L型通道作为在疾病条件下调节中央多巴胺系统功能的靶标。

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