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首页> 外文期刊>The Journal of Physiology >Reciprocal regulation of inhibitory synaptic transmission by nicotinic and muscarinic receptors in rat nucleus accumbens shell
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Reciprocal regulation of inhibitory synaptic transmission by nicotinic and muscarinic receptors in rat nucleus accumbens shell

机译:尼古丁和毒蕈碱受体在伏伏核中的抑制性突触传递的相互调节

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Abstract Medium spiny neurones (MSNs) in the nucleus accumbens (NAc) are the principal neurones whose activities are regulated by GABAergic inputs from MSNs and fast-spiking interneurones (FSNs). Cholinergic interneurones play important roles in the regulation of activity in MSNs; however, how acetylcholine modulates inhibitory synaptic transmission from MSNs/FSNs to MSNs remains unknown. We performed paired whole-cell patch-clamp recordings from MSNs and FSNs in rat NAc shell slice preparations and examined cholinergic effects on unitary inhibitory postsynaptic currents (uIPSCs). Carbachol (1 μm) suppressed uIPSC amplitude by 58.3 ± 8.0% in MSN→MSN connections, accompanied by increases in paired-pulse ratio and failure rate, suggesting that acetylcholine reduces the probability of GABA release from the synaptic terminals of MSNs. Carbachol-induced uIPSC suppression was antagonised by 100 μm atropine, and was mimicked by pilocarpine (1 μm) and acetylcholine (1 μm) but not nicotine (1 μm). Application of AM251 slightly reduced carbachol-induced uIPSC suppression (30.8 ± 8.9%), suggesting an involvement of endocannabinoid signalling in muscarinic suppression of uIPSCs. In contrast, FSN→MSN connections showed that pilocarpine had little effect on the uIPSC amplitude, whereas both nicotine and acetylcholine facilitated uIPSC amplitude, with decreases in failure rate and paired-pulse ratio, suggesting that nicotine-induced uIPSC facilitation is mediated by presynaptic mechanisms. Miniature IPSC recordings support these hypotheses of presynaptic cholinergic mechanisms. These results suggest a differential role for muscarinic and nicotinic receptors in GABA release, which depends on presynaptic neuronal subtypes in the NAc shell.
机译:摘要伏伏核(NAc)中的中棘神经元(MSNs)是主要神经元,其活动受MSNs和快速掺入的中间神经元(FSNs)的GABA能输入调节。胆碱能中间神经元在MSNs的活性调节中起重要作用。但是,乙酰胆碱如何调节从MSN / FSN到MSN的抑制性突触传递。我们在大鼠NAc壳切片制剂中从MSNs和FSNs进行了全细胞膜片钳记录,并检查了胆碱能对单一抑制突触后电流(uIPSCs)的影响。 Carbachol(1μm)在MSN→MSN连接中将uIPSC幅度抑制了58.3±8.0%,同时伴随着成对脉冲比率和故障率的增加,这表明乙酰胆碱降低了GABA从MSN突触末端释放的可能性。卡巴胆碱诱导的uIPSC抑制作用被100μm阿托品拮抗,并被毛果芸香碱(1μm)和乙酰胆碱(1μm)模仿,而不是尼古丁(1μm)。 AM251的应用可稍微降低卡巴胆碱引起的uIPSC抑制(30.8±8.9%),表明内源性大麻素信号参与了uIPSC毒蕈碱抑制。相比之下,FSN→MSN连接表明毛果芸香碱对uIPSC振幅影响不大,而尼古丁和乙酰胆碱均促进uIPSC振幅,失败率和配对脉冲比降低,表明尼古丁诱导的uIPSC促进作用是由突触前机制介导的。 。微型IPSC录音支持这些关于突触前胆碱能机制的假设。这些结果表明毒蕈碱和烟碱样受体在GABA释放中的作用不同,这取决于NAc外壳中突触前神经元的亚型。

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