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活动依赖性胼胝体轴突投射在新生小鼠大脑皮层中的作用。

Activity-dependent callosal axon projections in neonatal mouse cerebral cortex.

机构信息

Department of Biophysics, Kyoto University Graduate School of Science, Kitashirakawa-Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Neural Plast. 2012;2012:797295. doi: 10.1155/2012/797295. Epub 2012 Nov 19.

Abstract

Callosal axon projections are among the major long-range axonal projections in the mammalian brain. They are formed during the prenatal and early postnatal periods in the mouse, and their development relies on both activity-independent and -dependent mechanisms. In this paper, we review recent findings about the roles of neuronal activity in callosal axon projections. In addition to the well-documented role of sensory-driven neuronal activity, recent studies using in utero electroporation demonstrated an essential role of spontaneous neuronal activity generated in neonatal cortical circuits. Both presynaptic and postsynaptic neuronal activities are critically involved in the axon development. Studies have begun to reveal intracellular signaling pathway which works downstream of neuronal activity. We also review several distinct patterns of neuronal activity observed in the developing cerebral cortex, which might play roles in activity-dependent circuit construction. Such neuronal activity during the neonatal period can be disrupted by genetic factors, such as mutations in ion channels. It has been speculated that abnormal activity caused by such factors may affect activity-dependent circuit construction, leading to some developmental disorders. We discuss a possibility that genetic mutation in ion channels may impair callosal axon projections through an activity-dependent mechanism.

摘要

胼胝体轴突投射是哺乳动物大脑中的主要长程轴突投射之一。它们在小鼠的产前和产后早期形成,其发育依赖于非活动依赖和活动依赖的机制。本文综述了神经元活动在胼胝体轴突投射中的作用的最新发现。除了有充分文献记录的感觉驱动神经元活动的作用外,最近使用子宫内电穿孔的研究表明,新生儿皮质回路中产生的自发性神经元活动是必不可少的。突触前和突触后神经元活动都在轴突发育中起关键作用。研究已经开始揭示神经元活动下游的细胞内信号通路。我们还综述了在发育中的大脑皮层中观察到的几种不同的神经元活动模式,它们可能在活动依赖性回路构建中发挥作用。新生儿期的这种神经元活动可能会被遗传因素(如离子通道突变)破坏。有人推测,此类因素引起的异常活动可能会影响活动依赖性回路的构建,从而导致一些发育障碍。我们讨论了离子通道遗传突变可能通过活动依赖性机制损害胼胝体轴突投射的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0bc/3507157/a8c2f128121e/NP2012-797295.001.jpg

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