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小鼠体感皮层中突触的昼夜节律性。

Circadian rhythmicity of synapses in mouse somatosensory cortex.

作者信息

Jasinska Malgorzata, Grzegorczyk Anna, Woznicka Olga, Jasek Ewa, Kossut Malgorzata, Barbacka-Surowiak Grazyna, Litwin Jan A, Pyza Elzbieta

机构信息

Department of Histology, Jagiellonian University Medical College, 31-034, Krakow, Poland.

Department of Animal Products Technology, University of Agriculture, 31-120, Krakow, Poland.

出版信息

Eur J Neurosci. 2015 Oct;42(8):2585-94. doi: 10.1111/ejn.13045. Epub 2015 Sep 16.

Abstract

The circadian rhythmicity displayed by motor behavior of mice: activity at night and rest during the day; and the associated changes in the sensory input are reflected by cyclic synaptic plasticity in the whisker representations located in the somatosensory (barrel) cortex. It was not clear whether diurnal rhythmic changes in synapse density previously observed in the barrel cortex resulted from changes in the activity of the animals, from daily light/dark (LD) rhythm or are driven by an endogenous clock. These changes were investigated in the barrel cortex of C57BL/6 mouse strain kept under LD 12 : 12 h conditions and in constant darkness (DD). Stereological analysis of serial electron microscopic sections was used to assess numerical density of synapses. In mice kept under LD conditions, the total density of synapses and the density of excitatory synapses located on dendritic spines was higher during the light period (rest phase). In contrast, the density of inhibitory synapses located on dendritic spines increased during the dark period (activity phase). Under DD conditions, the upregulation of the inhibitory synapses during the activity phase was retained, but the cyclic changes in the density of excitatory synapses were not observed. The results show that the circadian plasticity concerns only synapses located on spines (and not those on dendritic shafts), and that excitatory and inhibitory synapses are differently regulated during the 24 h cycle: the excitatory synapses are influenced by light, whilst the inhibitory synapses are driven by the endogenous circadian clock.

摘要

小鼠运动行为所表现出的昼夜节律性

夜间活动,白天休息;以及感觉输入的相关变化,由位于体感(桶状)皮层的触须表征中的周期性突触可塑性反映出来。此前在桶状皮层中观察到的突触密度的昼夜节律变化,是由动物活动的变化、日常光/暗(LD)节律引起的,还是由内源性生物钟驱动的,尚不清楚。在处于12:12小时LD条件和持续黑暗(DD)环境下的C57BL/6小鼠品系的桶状皮层中,对这些变化进行了研究。使用连续电子显微镜切片的体视学分析来评估突触的数值密度。在处于LD条件下的小鼠中,突触的总密度以及位于树突棘上的兴奋性突触的密度在光照期(休息阶段)更高。相反,位于树突棘上的抑制性突触的密度在黑暗期(活动阶段)增加。在DD条件下,活动阶段抑制性突触的上调得以保留,但未观察到兴奋性突触密度的周期性变化。结果表明,昼夜可塑性仅涉及位于棘上的突触(而非树突干上的突触),并且兴奋性和抑制性突触在24小时周期内受到不同的调节:兴奋性突触受光照影响,而抑制性突触由内源性昼夜生物钟驱动。

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