首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Interaction of olfactory ensheathing cells with astrocytes may be the key to repair of tract injuries in the spinal cord: the 'pathway hypothesis'.
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Interaction of olfactory ensheathing cells with astrocytes may be the key to repair of tract injuries in the spinal cord: the 'pathway hypothesis'.

机译:嗅鞘细胞与星形胶质细胞的相互作用可能是修复脊髓束损伤的关键:“通路假说”。

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摘要

Transplantation of cultured adult olfactory ensheathing cells has been shown to induce anatomical and functional repair of lesions of the adult rat spinal cord and spinal roots. Histological analysis of olfactory ensheathing cells, both in their normal location in the olfactory nerves and also after transplantation into spinal cord lesions, shows that they provide channels for the growth of regenerating nerve fibres. These channels have an outer, basal lamina-lined surface apposed by fibroblasts, and an inner, naked surface in contact with the nerve fibres. A crucial property of olfactory ensheathing cells, in which they differ from Schwann cells, is their superior ability to interact with astrocytes. When confronted with olfactory ensheathing cells the superficial astrocytic processes, which form the glial scar after lesions, change their configuration so that their outer pial surfaces are reflected in continuity with the outer surfaces of the olfactory ensheathing cells. The effect is to open a door into the central nervous system. We propose that this formation of a bridging pathway may be the crucial event by which transplanted olfactory ensheathing cells allow the innate growth capacity of severed adult axons to be translated into regeneration across a lesion so that functionally valuable connections can be established.
机译:已经证明,培养的成年嗅鞘细胞的移植可以诱导成年大鼠脊髓和脊髓根的损伤的解剖学和功能修复。嗅鞘细胞在嗅神经中的正常位置以及移植到脊髓损伤后的组织学分析表明,它们为再生神经纤维的生长提供了通道。这些通道有一个由成纤维细胞排列的外部基底层衬里表面和一个与神经纤维接触的内部裸露表面。嗅鞘细胞不同于雪旺细胞的一个关键特性是它们与星形胶质细胞相互作用的优越能力。当面对嗅鞘细胞时,在损伤后形成神经胶质瘢痕的浅表星形细胞过程改变其构型,从而其外皮层表面与嗅鞘细胞的外表面连续地反射。其作用是为中枢神经系统打开一扇门。我们建议这种桥接途径的形成可能是至关重要的事件,通过该过程,移植的嗅鞘细胞可使切断的成年轴突的先天生长能力转化为跨病变的再生,从而可以建立功能上有价值的连接。

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