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神经元迁移的机制与紊乱

Mechanisms and disturbances of neuronal migration.

作者信息

Gressens P

机构信息

Service de Neurologie Pédiatrique and INSERM E 9935, Hôpital Robert-Debré, F-75019 Paris, France.

出版信息

Pediatr Res. 2000 Dec;48(6):725-30. doi: 10.1203/00006450-200012000-00004.

Abstract

Neuronal migration appears as a complex ontogenic step occurring early during embryonic and fetal development. Control of neuronal migration involves different cell populations including Cajal-Retzius neurons, subplate neurons, neuronal precursors or radial glia. The integrity of multiple molecular mechanisms, such as cell cycle control, cell-cell adhesion, interaction with extracellular matrix protein, neurotransmitter release, growth factor availability, platelet-activating factor degradation or transduction pathways seems to be critical for normal neuronal migration. The complexity and the multiplicity of these mechanisms probably explain the clinical, radiologic and genetic heterogeneity of human disorders of neuronal migration. The present review will be focused on mechanisms and disturbances of migration of neurons destined to the neocortex. New insights gained from the analysis of animal models as well as from the study of human diseases will be included.

摘要

神经元迁移是胚胎和胎儿发育早期出现的一个复杂的个体发育步骤。神经元迁移的控制涉及不同的细胞群体,包括卡哈尔-雷茨乌斯神经元、板下神经元、神经元前体或放射状胶质细胞。多种分子机制的完整性,如细胞周期控制、细胞间粘附、与细胞外基质蛋白的相互作用、神经递质释放、生长因子可用性、血小板活化因子降解或转导途径,似乎对正常的神经元迁移至关重要。这些机制的复杂性和多样性可能解释了人类神经元迁移障碍的临床、放射学和遗传异质性。本综述将聚焦于注定迁移至新皮层的神经元的迁移机制和紊乱情况。还将纳入从动物模型分析以及人类疾病研究中获得的新见解。

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