5 -羟色胺能介导全脑神经发生:区域依赖性和受体类型在神经细胞转化中的特定作用

Yuki Higuchi, Hiroyuki Arakawa
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引用次数: 0

摘要

大脑血清素(5-羟色胺,5-HT)是调节抑郁症相关大脑状态的关键分子,但5-HT调节的神经机制需要进一步研究。治疗性抗抑郁作用的一个可能机制是神经源性细胞的产生,由5-HT信号刺激。神经发生、神经干细胞(NSCs)增殖以及细胞分化和成熟发生在整个人的一生中的大脑区域,特别是海马齿状回和室下区。5-HT在神经发生过程的介导中起着重要作用,这反过来又导致了对抑郁症相关状态的治疗效果。在这篇综述文章中,我们旨在确定神经元5-HT系统如何介导神经发生过程,包括细胞增殖、细胞类型分化和成熟。首先,我们将概述在含有或缺乏神经干细胞的大脑区域发生的神经源性细胞转化。其次,我们将通过比较定位于神经干细胞的区域,即海马和室下区,与不含神经干细胞区域,来综述5-HT介导的神经发生的脑区域特异性机制。强调这些以脑区特异性方式介导神经原性细胞产生过程的5-HT机制,将为5-HT在神经发生中的作用及其对抑郁症的相关影响提供独特的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Serotonergic mediation of the brain-wide neurogenesis: Region-dependent and receptor-type specific roles on neurogenic cellular transformation

Brain serotonin (5-hydroxytryptamine, 5-HT) is a key molecule for the mediation of depression-related brain states, but the neural mechanisms underlying 5-HT mediation need further investigation. A possible mechanism of the therapeutic antidepressant effects is neurogenic cell production, as stimulated by 5-HT signaling. Neurogenesis, the proliferation of neural stem cells (NSCs), and cell differentiation and maturation occur across brain regions, particularly the hippocampal dentate gyrus and the subventricular zone, throughout one's lifespan. 5-HT plays a major role in the mediation of neurogenic processes, which in turn leads to the therapeutic effect on depression-related states. In this review article, we aim to identify how the neuronal 5-HT system mediates the process of neurogenesis, including cell proliferation, cell-type differentiation and maturation. First, we will provide an overview of the neurogenic cell transformation that occurs in brain regions containing or lacking NSCs. Second, we will review brain region-specific mechanisms of 5-HT-mediated neurogenesis by comparing regions localized to NSCs, i.e., the hippocampus and subventricular zone, with those not containing NSCs. Highlighting these 5-HT mechanisms that mediate neurogenic cell production processes in a brain-region-specific manner would provide unique insights into the role of 5-HT in neurogenesis and its associated effects on depression.

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