星形胶质细胞、神经元、突触:皮层回路发育的三方观点。

IF 4 3区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Isabella Farhy-Tselnicker, Nicola J Allen
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引用次数: 234

摘要

在哺乳动物的大脑皮层中,神经元排列在特定的层中,并在皮层内和与其他大脑区域形成连接,从而形成由不同回路组成的特殊突触连接的复杂网络。在发育过程中,这些连接的正确建立对大脑的正常功能至关重要。星形胶质细胞是一种主要的胶质细胞,在发育过程中对突触的形成和功能起着重要的调节作用。虽然皮层的神经发生先于星形胶质细胞发生,但神经元突触只有在星形胶质细胞产生后才开始形成,与神经元分支和过程的细化同时发生。在这里,我们提供了在啮齿动物皮层突触和电路形成的发育过程的综合概述,强调了神经元和星形胶质细胞的发育和成熟的时间表。我们进一步讨论了星形胶质细胞在突触中的作用,重点关注星形胶质细胞-突触的接触以及突触相关蛋白在促进不同皮层回路形成中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Astrocytes, neurons, synapses: a tripartite view on cortical circuit development.

Astrocytes, neurons, synapses: a tripartite view on cortical circuit development.

Astrocytes, neurons, synapses: a tripartite view on cortical circuit development.

Astrocytes, neurons, synapses: a tripartite view on cortical circuit development.

In the mammalian cerebral cortex neurons are arranged in specific layers and form connections both within the cortex and with other brain regions, thus forming a complex mesh of specialized synaptic connections comprising distinct circuits. The correct establishment of these connections during development is crucial for the proper function of the brain. Astrocytes, a major type of glial cell, are important regulators of synapse formation and function during development. While neurogenesis precedes astrogenesis in the cortex, neuronal synapses only begin to form after astrocytes have been generated, concurrent with neuronal branching and process elaboration. Here we provide a combined overview of the developmental processes of synapse and circuit formation in the rodent cortex, emphasizing the timeline of both neuronal and astrocytic development and maturation. We further discuss the role of astrocytes at the synapse, focusing on astrocyte-synapse contact and the role of synapse-related proteins in promoting formation of distinct cortical circuits.

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来源期刊
Neural Development
Neural Development 生物-发育生物学
CiteScore
6.60
自引率
0.00%
发文量
11
审稿时长
>12 weeks
期刊介绍: Neural Development is a peer-reviewed open access, online journal, which features studies that use molecular, cellular, physiological or behavioral methods to provide novel insights into the mechanisms that underlie the formation of the nervous system. Neural Development aims to discover how the nervous system arises and acquires the abilities to sense the world and control adaptive motor output. The field includes analysis of how progenitor cells form a nervous system during embryogenesis, and how the initially formed neural circuits are shaped by experience during early postnatal life. Some studies use well-established, genetically accessible model systems, but valuable insights are also obtained from less traditional models that provide behavioral or evolutionary insights.
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