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成年皮质中树突棘的长期稳定性。

Long-term dendritic spine stability in the adult cortex.

作者信息

Grutzendler Jaime, Kasthuri Narayanan, Gan Wen-Biao

机构信息

Molecular Neurobiology Program, Skirball Institute, Department of Physiology and Neuroscience, New York University School of Medicine, 540 First Avenue, New York, New York 10016, USA.

出版信息

Nature. 2002;420(6917):812-6. doi: 10.1038/nature01276.

Abstract

The structural dynamics of synapses probably has a crucial role in the development and plasticity of the nervous system. In the mammalian brain, the vast majority of excitatory axo-dendritic synapses occur on dendritic specializations called 'spines'. However, little is known about their long-term changes in the intact developing or adult animal. To address this question we developed a transcranial two-photon imaging technique to follow identified spines of layer-5 pyramidal neurons in the primary visual cortex of living transgenic mice expressing yellow fluorescent protein. Here we show that filopodia-like dendritic protrusions, extending and retracting over hours, are abundant in young animals but virtually absent from the adult. In young mice, within the 'critical period' for visual cortex development, approximately 73% of spines remain stable over a one-month interval; most changes are associated with spine elimination. In contrast, in adult mice, the overwhelming majority of spines (approximately 96%) remain stable over the same interval with a half-life greater than 13 months. These results indicate that spines, initially plastic during development, become remarkably stable in the adult, providing a potential structural basis for long-term information storage.

摘要

突触的结构动力学可能在神经系统的发育和可塑性中起着关键作用。在哺乳动物大脑中,绝大多数兴奋性轴突-树突突触发生在称为“棘”的树突特化结构上。然而,对于完整的发育中或成年动物体内它们的长期变化却知之甚少。为了解决这个问题,我们开发了一种经颅双光子成像技术,以追踪表达黄色荧光蛋白的活体转基因小鼠初级视觉皮层中第5层锥体神经元的特定棘。我们在此表明,丝状伪足样树突突起在数小时内伸展和回缩,在幼小动物中很丰富,但在成年动物中几乎不存在。在幼鼠中,处于视觉皮层发育的“关键期”内,约73%的棘在一个月的间隔内保持稳定;大多数变化与棘的消除有关。相比之下,在成年小鼠中,绝大多数棘(约96%)在相同间隔内保持稳定,半衰期超过13个月。这些结果表明,棘在发育过程中最初具有可塑性,在成年后变得非常稳定,为长期信息存储提供了潜在的结构基础。

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