出生后神经发生的胆碱能回路控制。

Neurogenesis (Austin, Tex.) Pub Date : 2016-01-01 Epub Date: 2016-01-13 DOI:10.1080/23262133.2015.1127310
Brent Asrican, Patricia Paez-Gonzalez, Joshua Erb, Chay T Kuo
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引用次数: 23

摘要

在出生后/成年哺乳动物大脑中,通过持续的神经发生增加新的神经元,呈现出一种独特的神经系统可塑性形式。在胚胎发育过程中,精确的时间和空间模式的神经发生是必要的,以创造神经系统的结构。类似于胚胎和出生后阶段,神经源性增殖是由神经干细胞(NSC)调控的,这是一种基于局部微环境的内在机制。在发育组装之后,仍然相对不清楚的是,在出生后/成年大脑中,维持神经元持续产生的关键驱动力是什么。最近的实验证据表明,特定神经回路的模式活动也可以直接控制出生后/成人的神经发生。在这里,我们回顾了揭示胆碱能调节的实验结果,以及神经元活动和乙酰胆碱释放模式如何差异或协同激活NSCs中的下游信号。高阶兴奋性和抑制性输入调节胆碱能神经元放电,及其在神经发生控制中的意义也被考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cholinergic Circuit Control of Postnatal Neurogenesis.

Cholinergic Circuit Control of Postnatal Neurogenesis.

Cholinergic Circuit Control of Postnatal Neurogenesis.

Cholinergic Circuit Control of Postnatal Neurogenesis.

New neuron addition via continued neurogenesis in the postnatal/adult mammalian brain presents a distinct form of nervous system plasticity. During embryonic development, precise temporal and spatial patterns of neurogenesis are necessary to create the nervous system architecture. Similar between embryonic and postnatal stages, neurogenic proliferation is regulated by neural stem cell (NSC)-intrinsic mechanisms layered upon cues from their local microenvironmental niche. Following developmental assembly, it remains relatively unclear what may be the key driving forces that sustain continued production of neurons in the postnatal/adult brain. Recent experimental evidence suggests that patterned activity from specific neural circuits can also directly govern postnatal/adult neurogenesis. Here, we review experimental findings that revealed cholinergic modulation, and how patterns of neuronal activity and acetylcholine release may differentially or synergistically activate downstream signaling in NSCs. Higher-order excitatory and inhibitory inputs regulating cholinergic neuron firing, and their implications in neurogenesis control are also considered.

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