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脆性 X 综合征中的病理性可塑性。

Pathological plasticity in fragile X syndrome.

机构信息

Center for Neuroscience Research, Children's National Medical Center, Washington, DC 20010, USA.

出版信息

Neural Plast. 2012;2012:275630. doi: 10.1155/2012/275630. Epub 2012 Jul 2.

Abstract

Deficits in neuronal plasticity are common hallmarks of many neurodevelopmental disorders. In the case of fragile-X syndrome (FXS), disruption in the function of a single gene, FMR1, results in a variety of neurological consequences directly related to problems with the development, maintenance, and capacity of plastic neuronal networks. In this paper, we discuss current research illustrating the mechanisms underlying plasticity deficits in FXS. These processes include synaptic, cell intrinsic, and homeostatic mechanisms both dependent on and independent of abnormal metabotropic glutamate receptor transmission. We place particular emphasis on how identified deficits may play a role in developmental critical periods to produce neuronal networks with permanently decreased capacity to dynamically respond to changes in activity central to learning, memory, and cognition in patients with FXS. Characterizing early developmental deficits in plasticity is fundamental to develop therapies that not only treat symptoms but also minimize the developmental pathology of the disease.

摘要

神经元可塑性缺陷是许多神经发育障碍的共同特征。在脆性 X 综合征 (FXS) 的情况下,单个基因 FMR1 的功能障碍导致各种与神经元可塑性网络的发育、维持和能力直接相关的神经学后果。在本文中,我们讨论了目前的研究,这些研究阐明了 FXS 中可塑性缺陷的机制。这些过程包括突触、细胞内在和动态平衡机制,它们既依赖于也独立于异常代谢型谷氨酸受体传递。我们特别强调了已确定的缺陷如何在发育关键期发挥作用,以产生神经元网络,使其对学习、记忆和认知中心活动的变化的动态反应能力永久性降低,而这正是 FXS 患者的特征。描述可塑性的早期发育缺陷对于开发治疗方法至关重要,这些方法不仅可以治疗症状,还可以最大限度地减少疾病的发育病理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a4a/3395158/bf65c83fca07/NP2012-275630.001.jpg

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