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嗅鞘细胞在发育和再生过程中的迁移。

The migration of olfactory ensheathing cells during development and regeneration.

作者信息

Ekberg Jenny A K, Amaya Daniel, Mackay-Sim Alan, St John James A

机构信息

Eskitis Institute for Cell and Molecular Therapies, Griffith University, Brisbane, Qld, Australia.

出版信息

Neurosignals. 2012;20(3):147-58. doi: 10.1159/000330895. Epub 2012 Mar 27.

Abstract

The primary olfactory nervous system is unique in that it continuously renews itself and regenerates after injury. These properties are attributed to the presence of olfactory glia, termed olfactory ensheathing cells (OECs). Evidence is now emerging that individual OEC populations exist with distinct anatomical localisations and physiological properties, but their differential roles have not been determined. Unlike other glia, OECs can migrate from the periphery into the central nervous system, and organised OEC migration can enhance axonal extension after injury. Despite this, the mechanisms regulating OEC migration are largely unknown. Here, we provide an overview of the roles of OECs in development and adulthood. We review the latest research describing the differences between individual OEC subpopulations and discuss potential regulatory mechanisms for OEC guidance and migration. Using advanced time lapse techniques, we have obtained novel insights into how OECs behave in a complex multicellular environment which we discuss here with particular focus on cell-cell interactions. Significantly, transplantation of OECs constitutes a promising novel therapy for nerve injuries, but results are highly variable and the method needs improvement. We here review the roles of transplanted OECs in neural repair of damaged neuronal tracts distinct from the primary olfactory nervous system.

摘要

初级嗅觉神经系统的独特之处在于它能持续自我更新,并在损伤后再生。这些特性归因于嗅觉胶质细胞的存在,即嗅鞘细胞(OECs)。现在有证据表明,存在具有不同解剖定位和生理特性的单个OEC群体,但其不同作用尚未确定。与其他胶质细胞不同,OECs可以从外周迁移到中枢神经系统,有组织的OEC迁移可以增强损伤后的轴突延伸。尽管如此,调节OEC迁移的机制在很大程度上仍不清楚。在这里,我们概述了OECs在发育和成年期的作用。我们回顾了描述单个OEC亚群之间差异的最新研究,并讨论了OEC引导和迁移的潜在调节机制。使用先进的延时技术,我们对OECs在复杂多细胞环境中的行为有了新的认识,我们在此特别关注细胞间相互作用进行讨论。值得注意的是,OECs移植构成了一种有前景的神经损伤新疗法,但结果差异很大,该方法需要改进。我们在此回顾移植的OECs在与初级嗅觉神经系统不同的受损神经束神经修复中的作用。

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