首页> 美国卫生研究院文献>eNeuro >Acetylcholine Acts through Nicotinic Receptors to Enhance the Firing Rate of a Subset of Hypocretin Neurons in the Mouse Hypothalamus through Distinct Presynaptic and Postsynaptic Mechanisms
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Acetylcholine Acts through Nicotinic Receptors to Enhance the Firing Rate of a Subset of Hypocretin Neurons in the Mouse Hypothalamus through Distinct Presynaptic and Postsynaptic Mechanisms

机译:乙酰胆碱通过烟碱受体起作用通过不同的突触前和突触后机制增强小鼠下丘脑中促胰降血糖素神经元亚群的发射速率。

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摘要

Hypocretin/orexin neurons regulate many behavioral functions, including addiction. Nicotine acts through nicotinic acetylcholine receptors (nAChRs) to alter firing rate of neurons throughout the brain, leading to addiction-related behaviors. While nAChRs are expressed in the hypothalamus and cholinergic fibers project to this structure, it is unclear how acetylcholine modulates the activity of hypocretin neurons. In this study, we stimulated hypocretin neurons in mouse brain slices with ACh in the presence of atropine to dissect presynaptic and postsynaptic modulation of these neurons through nAChRs. Approximately one-third of tested hypocretin neurons responded to pressure application of ACh (1 mM) with an increase in firing frequency. Stimulation of postsynaptic nAChRs with ACh or nicotine resulted in a highly variable inward current in approximately one-third of hypocretin neurons. In contrast, ACh or nicotine (1 µM) reliably decreased the frequency of miniature EPSCs (mEPSCs). Antagonism of nAChRs with mecamylamine also suppressed mEPSC frequency, suggesting that an endogenous, tonic activation of presynaptic nAChRs might be required for maintaining functional mEPSC frequency. Antagonism of heteromeric (α4β2) or homomeric (α7) nAChRs alone suppressed mEPSCs to a lesser extent. Finally, blocking internal calcium release reduced the frequency of mEPSCs, occluding the suppressive effect of presynaptic ACh. Taken together, these data provide a mechanism by which phasic ACh release enhances the firing of a subset of hypocretin neurons through postsynaptic nAChRs, but disrupts tonic, presynaptic nAChR-mediated glutamatergic inputs to the overall population of hypocretin neurons, potentially enhancing the signal-to-noise ratio during the response of the nAChR-positive subset of neurons.
机译:降钙素/食欲素神经元调节许多行为功能,包括成瘾。尼古丁通过烟碱乙酰胆碱受体(nAChRs)起作用,以改变整个大脑中神经元的放电速率,从而导致与成瘾相关的行为。虽然nAChRs在下丘脑中表达,胆碱能纤维投射到该结构,但尚不清楚乙酰胆碱如何调节降钙素神经元的活性。在这项研究中,我们在存在阿托品的情况下用ACh刺激了小鼠大脑切片中的降钙素神经元,以通过nAChRs解剖这些神经元的突触前和突触后调节。大约三分之一的测试过的降钙素神经元对ACh的压力施加(1 mM)有反应,并激发频率增加。用ACh或尼古丁刺激突触后nAChRs,在大约三分之一的降钙素神经元中产生高度可变的内向电流。相反,ACh或尼古丁(1 µM)可靠地降低了微型EPSC(mEPSC)的频率。 nAChRs与美甲胺的拮抗作用也抑制了mEPSC频率,提示维持内源性mEPSC频率可能需要突触前nAChRs的内源性强直激活。单独的异聚(α4β2)或同聚(α7)nAChRs的拮抗作用在较小程度上抑制了mEPSC。最后,阻止内部钙释放降低了mEPSC的频率,从而阻止了突触前ACh的抑制作用。综上所述,这些数据提供了一种机制,通过这种方式,阶段性ACh释放可增强通过突触后nAChR激活的亚胰泌素神经元子集的发射,但会扰乱滋补,由突触前nAChR介导的谷氨酸能输入到整个胰岛降钙素神经元中,可能会增强信号转导。 -nAChR阳性神经元子集的响应过程中的噪声比。

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