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初级听觉皮层第5层内在爆发性和规则发放神经元的毒蕈碱型乙酰胆碱受体依赖性持续性活动。

Muscarinic acetylcholine receptor-dependent persistent activity of layer 5 intrinsic-bursting and regular-spiking neurons in primary auditory cortex.

作者信息

Fu Xin, Ye Huan, Jia Huijuan, Wang Xin, Chomiak Taylor, Luo Feng

机构信息

Hubei Key Lab of Genetic Regulation and Integrative Biology, School of Life Sciences, Central China Normal University, Wuhan, China.

Department of Clinical Neuroscience, Hotchkiss Brain Institute, University of Calgary, Alberta, Canada.

出版信息

J Neurophysiol. 2019 Dec 1;122(6):2344-2353. doi: 10.1152/jn.00184.2019. Epub 2019 Oct 9.

Abstract

Cholinergic signaling coupled to sensory-driven neuronal depolarization is essential for modulating lasting changes in deep-layer neural excitability and experience-dependent plasticity in the primary auditory cortex. However, the underlying cellular mechanism(s) associated with coincident cholinergic receptor activation and neuronal depolarization of deep-layer cortical neurons remains unknown. Using in vitro whole cell patch-clamp recordings targeted to neurons ( = 151) in isolated brain slices containing the primary auditory cortex (AI), we investigated the effects of cholinergic receptor activation and neuronal depolarization on the electrophysiological properties of AI layer 5 intrinsic-bursting and regular-spiking neurons. Bath application of carbachol (5 µM; cholinergic receptor agonist) paired with suprathreshold intracellular depolarization led to persistent activity in these neurons. Persistent activity may involve similar cellular mechanisms and be generated intrinsically in both intrinsic-bursting and regular-spiking neurons given that it ) persisted under the blockade of ionotropic glutamatergic (kynurenic acid, 2 mM) and GABAergic receptors (picrotoxin, 100 µM), ) was fully blocked by both atropine (10 µM; nonselective muscarinic antagonist) and flufenamic acid [100 µM; nonspecific Ca-sensitive cationic channel (CAN) blocker], and ) was sensitive to the voltage-gated Ca channel blocker nifedipine (50 µM) and Ca-free artificial cerebrospinal fluid. Together, our results support a model through which coincident activation of AI layer 5 neuron muscarinic receptors and suprathreshold activation can lead to sustained changes in layer 5 excitability, providing new insight into the possible role of a calcium-CAN-dependent cholinergic mechanism of AI cortical plasticity. These findings also indicate that distinct streams of auditory processing in layer 5 intrinsic-bursting and regular-spiking neurons may run in parallel during learning-induced auditory plasticity. Cholinergic signaling coupled to sensory-driven neuronal depolarization is essential for modulating lasting changes in experience-dependent plasticity in the primary auditory cortex. Cholinergic activation together with cellular depolarization can lead to persistent activity in both intrinsic-bursting and regular-spiking layer 5 pyramidal neurons. A similar mechanism involving muscarinic acetylcholine receptor, voltage-gated Ca channel, and possible Ca-sensitive nonspecific cationic channel activation provides new insight into our understanding of the cellular mechanisms that govern learning-induced auditory cortical and subcortical plasticity.

摘要

与感觉驱动的神经元去极化相关的胆碱能信号传导对于调节初级听觉皮层深层神经元兴奋性的持久变化和经验依赖性可塑性至关重要。然而,与深层皮层神经元的胆碱能受体激活和神经元去极化同时发生相关的潜在细胞机制仍然未知。我们使用针对包含初级听觉皮层(AI)的离体脑片神经元( = 151)的体外全细胞膜片钳记录,研究了胆碱能受体激活和神经元去极化对AI第5层内在爆发性和规则放电神经元电生理特性的影响。浴用卡巴胆碱(5 μM;胆碱能受体激动剂)与阈上细胞内去极化配对导致这些神经元持续活动。鉴于()在离子型谷氨酸能(犬尿氨酸,2 mM)和GABA能受体(苦味毒,100 μM)阻断下持续存在,()被阿托品(10 μM;非选择性毒蕈碱拮抗剂)和氟芬那酸[100 μM;非特异性钙敏感阳离子通道(CAN)阻滞剂]完全阻断,并且()对电压门控钙通道阻滞剂硝苯地平(50 μM)和无钙人工脑脊液敏感,持续活动可能涉及相似的细胞机制并且在内在爆发性和规则放电神经元中内在产生。总之,我们的结果支持一个模型,通过该模型AI第5层神经元毒蕈碱受体的同时激活和阈上激活可导致第5层兴奋性的持续变化,为AI皮层可塑性的钙-CAN依赖性胆碱能机制的可能作用提供了新的见解。这些发现还表明,在学习诱导的听觉可塑性过程中,第5层内在爆发性和规则放电神经元中不同的听觉处理流可能并行运行。与感觉驱动的神经元去极化相关的胆碱能信号传导对于调节初级听觉皮层经验依赖性可塑性的持久变化至关重要。胆碱能激活与细胞去极化一起可导致内在爆发性和规则放电的第5层锥体神经元持续活动。一种涉及毒蕈碱型乙酰胆碱受体、电压门控钙通道和可能的钙敏感非特异性阳离子通道激活的相似机制为我们理解控制学习诱导的听觉皮层和皮层下可塑性的细胞机制提供了新的见解。

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