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发育中的视觉皮层中轴突起始段的一段结构可塑性时期。

A period of structural plasticity at the axon initial segment in developing visual cortex.

机构信息

CBTM, Medical Faculty Mannheim, Institute of Neuroanatomy, Heidelberg University Heidelberg, Germany.

AG Developmental Neurobiology, Faculty of Biology and Biotechnology, Ruhr-University Bochum, Germany.

出版信息

Front Neuroanat. 2014 Mar 11;8:11. doi: 10.3389/fnana.2014.00011. eCollection 2014.

Abstract

Cortical networks are shaped by sensory experience and are most susceptible to modifications during critical periods characterized by enhanced plasticity at the structural and functional level. A system particularly well-studied in this context is the mammalian visual system. Plasticity has been documented for the somatodendritic compartment of neurons in detail. A neuronal microdomain not yet studied in this context is the axon initial segment (AIS) located at the proximal axon segment. It is a specific electrogenic axonal domain and the site of action potential (AP) generation. Recent studies showed that structure and function of the AIS can be dynamically regulated. Here we hypothesize that the AIS shows a dynamic regulation during maturation of the visual cortex. We therefore analyzed AIS length development from embryonic day (E) 12.5 to adulthood in mice. A tri-phasic time course of AIS length remodeling during development was observed. AIS first appeared at E14.5 and increased in length throughout the postnatal period to a peak between postnatal day (P) 10 to P15 (eyes open P13-14). Then, AIS length was reduced significantly around the beginning of the critical period for ocular dominance plasticity (CP, P21). Shortest AIS were observed at the peak of the CP (P28), followed by a moderate elongation toward the end of the CP (P35). To test if the dynamic maturation of the AIS is influenced by eye opening (onset of activity), animals were deprived of visual input before and during the CP. Deprivation for 1 week prior to eye opening did not affect AIS length development. However, deprivation from P0 to 28 and P14 to 28 resulted in AIS length distribution similar to the peak at P15. In other words, deprivation from birth prevents the transient shortening of the AIS and maintains an immature AIS length. These results are the first to suggest a dynamic maturation of the AIS in cortical neurons and point to novel mechanisms in the development of neuronal excitability.

摘要

皮质网络由感觉经验塑造,在结构和功能水平上具有增强可塑性的关键期最容易发生改变。在这方面,哺乳动物视觉系统是一个特别被深入研究的系统。神经元树突和胞体的可塑性已经被详细记录。然而,在这个背景下,一个尚未被研究的神经元微域是轴突起始段(AIS),它位于近端轴突段。AIS 是一个特殊的发电轴突区域,也是动作电位(AP)产生的部位。最近的研究表明,AIS 的结构和功能可以动态调节。在这里,我们假设 AIS 在视觉皮层成熟过程中表现出动态调节。因此,我们分析了从胚胎期 12.5 天(E)到成年期的 AIS 长度发育。在发育过程中观察到 AIS 长度重塑的三阶段时程。AIS 首先在 E14.5 出现,并在整个出生后期间增加长度,直到出生后第 10 至 15 天(睁眼第 13-14 天)达到峰值。然后,在眼优势可塑性的关键期(CP,P21)开始时,AIS 长度显著减少。CP 高峰期观察到最短的 AIS(P28),然后在 CP 结束时适度延长(P35)。为了测试 AIS 的动态成熟是否受到睁眼(活动开始)的影响,动物在 CP 之前和期间被剥夺视觉输入。在睁眼之前剥夺 1 周不会影响 AIS 长度发育。然而,从出生到 28 天和从 P14 到 28 天的剥夺导致 AIS 长度分布类似于 P15 的峰值。换句话说,从出生开始的剥夺防止了 AIS 的短暂缩短,并保持了不成熟的 AIS 长度。这些结果是第一个表明皮质神经元 AIS 动态成熟的结果,并指出了神经元兴奋性发育中的新机制。

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