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轴突信号传导与嗅鞘细胞的形成:一种假说。

Axonal signalling and the making of olfactory ensheathing cells: a hypothesis.

作者信息

Wewetzer Konstantin, Brandes Gudrun

机构信息

University of Veterinary Medicine Hannover, Department of Pathology, Bunteweg 17, 30559 Hannover, Germany.

出版信息

Neuron Glia Biol. 2006 Aug;2(3):217-24. doi: 10.1017/S1740925X06000305.

Abstract

Olfactory ensheathing cells (OECs) are Schwann cell-like glial cells of the olfactory system that promote neural repair under experimental conditions. It is a matter of debate in how far OECs resemble Schwann cells and whether they possess specific properties. Although OECs have been characterized mainly with respect to their regenerative effects after transplantation, both their cellular identity and the regulating factors involved have remained vague. The aim of this article is to define OEC and Schwann-cell identity in molecular terms, and to discuss crucial factors that are involved in determination in vitro and in vivo. Distinct OEC features such as the down-regulation of the low affinity neurotrophin receptor p75(NTR) by neuronal contact are apparent in vivo under physiological conditions, whereas OECs acquire a Schwann cell-like phenotype and up-regulate p75(NTR) expression in vitro and following transplantation into the lesioned spinal cord. This might indicate that establishment of the OEC phenotype depends on specific axonal stimuli. In this review we hypothesize that OECs and Schwann cells possess malleable cellular phenotypes that acquire distinct features only upon specific interaction with their natural neuronal partner.This concept is consistent with previous findings in vitro and in vivo, and might be relevant for studies that use OECs and Schwann cells for nervous system repair.

摘要

嗅鞘细胞(OECs)是嗅觉系统中类似施万细胞的神经胶质细胞,在实验条件下可促进神经修复。OECs与施万细胞的相似程度以及它们是否具有特定属性仍存在争议。尽管OECs主要根据其移植后的再生效应进行了表征,但其细胞身份和相关调节因子仍不明确。本文旨在从分子角度定义OECs和施万细胞的身份,并讨论在体外和体内决定过程中涉及的关键因素。在生理条件下,体内明显存在一些独特的OEC特征,如神经元接触会导致低亲和力神经营养因子受体p75(NTR)下调,而在体外以及移植到损伤脊髓后,OECs会获得类似施万细胞的表型并上调p75(NTR)表达。这可能表明OEC表型的建立取决于特定的轴突刺激。在本综述中,我们假设OECs和施万细胞具有可塑性细胞表型,只有在与天然神经元伙伴发生特定相互作用时才会获得独特特征。这一概念与之前的体外和体内研究结果一致,可能与使用OECs和施万细胞进行神经系统修复的研究相关。

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