首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Gap Junctions Link Regular-Spiking and Fast-Spiking Interneurons in Layer 5 Somatosensory Cortex
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Gap Junctions Link Regular-Spiking and Fast-Spiking Interneurons in Layer 5 Somatosensory Cortex

机译:间隙连接在第5层体感皮层中链接规则加标和快速加标的中间神经元。

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摘要

Gap junctions form electrical synapses that modulate neuronal activity by synchronizing action potential (AP) firing of cortical interneurons (INs). Gap junctions are thought to form predominantly within cortical INs of the same functional class and are therefore considered to act within discrete neuronal populations. Here, we challenge that view and show that the probability of electrical coupling is the same within and between regular-spiking (RS) and fast-spiking (FS) cortical INs in 16–21 days old mice. Firing properties of these two populations were distinct from other INs types including neurogliaform and low-threshold spiking (LTS) cells. We also demonstrate that pre-junctional APs can depolarize post-junctional neurons and increase the probability of firing. Our findings of frequent gap junction coupling between functionally distinct IN subtypes suggest that cortical IN networks are much more extensive and heterogeneous than previously thought. This may have implications on mechanisms ranging from cognitive functions to modulation of pathological states in epilepsy and other neurological disorders.
机译:间隙连接形成电突触,通过同步皮层神经元(IN)的动作电位(AP)发射来调节神经元活动。间隙连接被认为主要在相同功能类别的皮质IN中形成,因此被认为在离散的神经元群体中起作用。在这里,我们向该观点提出挑战,并表明在16-21天大的小鼠中,常规加标(RS)和快速加标(FS)皮质IN内部和之间的电耦合概率相同。这两个种群的射击特性与其他IN类型(包括神经胶质和低阈值尖峰(LTS)细胞)不同。我们还证明了结前AP可以使结后神经元去极化并增加放电的可能性。我们在功能上不同的IN亚型之间频繁的间隙连接偶联的发现表明,皮质IN网络比以前认为的要广泛和异质。这可能对从认知功能到癫痫和其他神经系统疾病的病理状态调节的机制产生影响。

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