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树突棘:结构和功能可塑性的位置。

Dendritic spines: the locus of structural and functional plasticity.

出版信息

Physiol Rev. 2014 Jan;94(1):141-88. doi: 10.1152/physrev.00012.2013.

Abstract

The introduction of high-resolution time lapse imaging and molecular biological tools has changed dramatically the rate of progress towards the understanding of the complex structure-function relations in synapses of central spiny neurons. Standing issues, including the sequence of molecular and structural processes leading to formation, morphological change, and longevity of dendritic spines, as well as the functions of dendritic spines in neurological/psychiatric diseases are being addressed in a growing number of recent studies. There are still unsettled issues with respect to spine formation and plasticity: Are spines formed first, followed by synapse formation, or are synapses formed first, followed by emergence of a spine? What are the immediate and long-lasting changes in spine properties following exposure to plasticity-producing stimulation? Is spine volume/shape indicative of its function? These and other issues are addressed in this review, which highlights the complexity of molecular pathways involved in regulation of spine structure and function, and which contributes to the understanding of central synaptic interactions in health and disease.

摘要

高分辨率延时成像和分子生物学工具的引入,极大地改变了我们对中枢棘突神经元突触复杂结构-功能关系的理解速度。包括导致树突棘形成、形态变化和寿命的分子和结构过程的顺序,以及树突棘在神经/精神疾病中的功能在内的一些悬而未决的问题,正在越来越多的近期研究中得到解决。关于棘突形成和可塑性仍存在一些未解决的问题:是先形成棘突,然后再形成突触,还是先形成突触,然后再出现棘突?在经历产生可塑性的刺激后,棘突特性会发生哪些即时和持久的变化?棘突的体积/形状是否与其功能相关?本文综述了这些和其他问题,强调了调节棘突结构和功能的分子途径的复杂性,有助于理解中枢突触在健康和疾病中的相互作用。

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