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初级视觉皮层中脊柱和丝状伪足运动的发育调控:活动和感觉剥夺的影响减弱

Developmental regulation of spine and filopodial motility in primary visual cortex: reduced effects of activity and sensory deprivation.

作者信息

Konur Sila, Yuste Rafael

机构信息

Department of Biological Sciences, Columbia University, 1212 Amsterdam Avenue, New York, New York 10027, USA.

出版信息

J Neurobiol. 2004 May;59(2):236-46. doi: 10.1002/neu.10306.

Abstract

Dendritic protrusions are highly motile during postnatal development. Although spine morphological plasticity could be associated with synaptic plasticity, the function of rapid spine/filopodial motility is still unknown. To investigate the role of spine motility in the development of the visual cortex and its relation with critical periods, we used two-photon imaging of neurons from layers receiving visual input in developing mouse primary visual cortex and compared motility between control and visually deprived animals. Spine and filopodia motility was prominent during early synaptogenesis (P11-P13) but greatly decreased after P15. This "switch" was coincident with a 2.5-fold increase in protrusion density and spine formation. Spine motility was not regulated during the critical period for monocular deprivation (P19-P34). Moreover, delaying the critical period by dark rearing did not delay the normal developmental decrease of spine motility, but caused a modest further reduction in motility at P28-P35. Dark rearing and enucleation also mildly reduced spine motility before eye opening and dark rearing reduced the proportion of filopodia. We conclude that (1) rapid spine motility is not related to critical period plasticity, but is likely to play a role in early synaptogenesis, and (2) neuronal activity stimulates spine motility during synaptogenesis and promotes the appearance of dendritic filopodia.

摘要

树突状突起在出生后发育过程中具有高度的运动性。尽管棘突形态可塑性可能与突触可塑性相关,但棘突/丝状伪足快速运动的功能仍不清楚。为了研究棘突运动性在视觉皮层发育中的作用及其与关键期的关系,我们对发育中小鼠初级视觉皮层中接受视觉输入的各层神经元进行了双光子成像,并比较了对照动物和视觉剥夺动物之间的运动性。在早期突触形成阶段(P11 - P13),棘突和丝状伪足的运动性很显著,但在P15之后大幅下降。这种“转变”与突起密度和棘突形成增加2.5倍相吻合。在单眼剥夺的关键期(P19 - P34),棘突运动性不受调控。此外,通过暗饲养延迟关键期并没有延迟棘突运动性正常的发育性下降,但在P28 - P35时导致运动性适度进一步降低。暗饲养和眼球摘除在睁眼之前也轻微降低了棘突运动性,并且暗饲养降低了丝状伪足的比例。我们得出结论:(1)快速的棘突运动性与关键期可塑性无关,但可能在早期突触形成中起作用;(2)神经元活动在突触形成过程中刺激棘突运动性并促进树突状丝状伪足的出现。

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