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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >CHOLINERGIC INTERNEURONS SUPPRESS ACTION POTENTIAL INITIATION OF MEDIUM SPINY NEURONS IN RAT NUCLEUS ACCUMBENS SHELL
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CHOLINERGIC INTERNEURONS SUPPRESS ACTION POTENTIAL INITIATION OF MEDIUM SPINY NEURONS IN RAT NUCLEUS ACCUMBENS SHELL

机译:胆碱能神经元抑制大鼠伏隔核壳中脊神经的作用电位起始。

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摘要

Acetylcholine plays a crucial role in the regulation of neural functions, including dopamine release, synap-tic activity, and intrinsic electrophysiolbgical properties of the nucleus accumbens (NAc) shell. Although the effects of acetylcholine on the action potential properties of NAc medium spiny (MS) neurons have been reported, how intrinsic acetylcholine released from NAc cholinergic interneu-rons regulates the neural activity of MS neurons is still an open issue. To explore the cholinergic effects on the sub-threshold responses and action potential properties of MS neurons in the NAc shell, we first tested the effects of carba-chol, a non-selective cholinergic agonist, on MS neuronal activity. Then, we tested the effects of the activation of cholinergic interneurons on the electrophysiological properties of MS neurons via multiple whole-cell patch-clamp recordings. Bath application of carbachol induced resting membrane potential depolarization accompanied by an increase in the voltage response to negative current injection. These increases were blocked by the pre-application of pirenzep-ine, an M_1 muscarinic receptor antagonist. In spite of the facilitative effect on voltage responses of negative current injection, carbachol diminished the characteristic slowly-depolarizing ramp potentials, which respond to positive current pulse injection. Thus, carbachol increased the rheo-base and shifted the frequency-current curve toward the right. Repetitive spike firing of a cholinergic intemeuron following positive current injection induced a similar increase in the rheobase, which delayed the action potential initiation in 38.9% MS neurons. In contrast to the bath application of carbachol, cholinergic interneuronal stimulation had little effect on the resting membrane potential in MS neurons. These results suggest that the acetylcholine released from a cholinergic interneuron is sufficient to suppress the repetitive spike firing of the adjacent MS neurons, although the depolarization of the resting membrane potential may require simultaneous activation of multiple cholinergic interneurons.
机译:乙酰胆碱在调节神经功能(包括多巴胺释放,突触活性和伏伏核(NAc)壳的固有电生理特性)中起关键作用。尽管已经报道了乙酰胆碱对NAc介质多刺(MS)神经元的动作电位特性的影响,但是从NAc胆碱能神经元释放的内在乙酰胆碱如何调节MS神经元的神经活性仍然是一个未解决的问题。为了探索胆碱能对NAc外壳中MS神经元的亚阈值响应和动作电位特性的影响,我们首先测试了非选择性胆碱能激动剂carba-chol对MS神经元活性的影响。然后,我们通过多个全细胞膜片钳记录测试了胆碱能中间神经元的激活对MS神经元电生理特性的影响。浴中加入卡巴胆碱可引起静息膜电位去极化,并伴随着对负电流注入的电压响应增加。这些增加被预先使用吡伦西平(一种M_1毒蕈碱受体拮抗剂)所阻止。尽管对负电流注入的电压响应有促进作用,但卡巴胆碱却降低了对正电流脉冲注入作出响应的缓慢去极化的斜坡电位。因此,卡巴胆碱增加了流变碱,并使频率-电流曲线向右移动。电流注入正后,胆碱能中枢的重复性激发会引起类似的流变碱增加,从而延迟了38.9%MS神经元的动作电位启动。与卡巴胆碱的洗浴相比,胆碱能神经内刺激对MS神经元的静息膜电位影响很小。这些结果表明,尽管静息膜电位的去极化可能需要同时激活多个胆碱能神经元,但从胆碱能神经元释放的乙酰胆碱足以抑制相邻MS神经元的重复性尖峰放电。

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