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嗅鞘细胞的形态学和功能可塑性。

Morphological and functional plasticity of olfactory ensheathing cells.

作者信息

Vincent Adele J, West Adrian K, Chuah Meng Inn

机构信息

NeuroRepair Group, Discipline of Anatomy and Physiology, University of Tasmania Hobart, Private Bag 24, Tasmania, Australia 7001.

出版信息

J Neurocytol. 2005 Mar;34(1-2):65-80. doi: 10.1007/s11068-005-5048-6.

Abstract

In the primary olfactory pathway, olfactory ensheathing cells (OECs) extend processes to envelop bundles of olfactory axons as they course towards their termination in the olfactory bulb. The expression of growth-promoting adhesion and extracellular matrix molecules by OECs, and their spatially close association with olfactory axons are consistent with OECs being involved in promoting and guiding olfactory axon growth. Because of this, OECs have been employed as a possible tool for inducing axonal regeneration in the injured adult CNS, resulting in significant functional recovery in some animal models and promising outcomes from early clinical applications. However, fundamental aspects of OEC biology remain unclear. This brief review discusses some of the experimental data that have resulted in conflicting views with regard to the identity of OECs. We present here recent findings which support the notion of OECs as a single but malleable phenotype which demonstrate extensive morphological and functional plasticity depending on the environmental stimuli. The review includes a discussion of the normal functional role of OECs in the developing primary olfactory pathway as well as their interaction with regenerating axons and reactive astrocytes in the novel environment of the injured CNS. The use of OECs to induce repair in the injured nervous system reflects the functional plasticity of these cells. Finally, we will explore the possibility that recent microarray data could point to OECs assuming an innate immune function or playing a role in modulating neuroinflammation.

摘要

在初级嗅觉通路中,嗅鞘细胞(OECs)伸出突起包裹嗅轴突束,这些嗅轴突束在向嗅球的终末行进过程中。嗅鞘细胞表达促进生长的黏附分子和细胞外基质分子,并且它们与嗅轴突在空间上紧密关联,这与嗅鞘细胞参与促进和引导嗅轴突生长是一致的。正因如此,嗅鞘细胞已被用作诱导成年中枢神经系统损伤后轴突再生的一种可能工具,在一些动物模型中实现了显著的功能恢复,并且早期临床应用也取得了有前景的结果。然而,嗅鞘细胞生物学的基本方面仍不清楚。这篇简短综述讨论了一些导致对嗅鞘细胞身份存在相互矛盾观点的实验数据。我们在此呈现最近的研究发现,这些发现支持嗅鞘细胞是单一但具有可塑性的表型这一观点,即嗅鞘细胞根据环境刺激表现出广泛的形态和功能可塑性。该综述包括对嗅鞘细胞在发育中的初级嗅觉通路中的正常功能作用的讨论,以及它们在损伤的中枢神经系统新环境中与再生轴突和反应性星形胶质细胞的相互作用。利用嗅鞘细胞诱导损伤神经系统的修复反映了这些细胞的功能可塑性。最后,我们将探讨最近的微阵列数据是否可能表明嗅鞘细胞具有先天免疫功能或在调节神经炎症中发挥作用的可能性。

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