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首页> 外文期刊>Neurology: Official Journal of the American Academy of Neurology >The extracellular matrix affects axonal regeneration in peripheral neuropathies.
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The extracellular matrix affects axonal regeneration in peripheral neuropathies.

机译:细胞外基质影响轴突周围神经病变的再生。

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OBJECTIVE: Recent evidence in animal models suggests that components of the extracellular matrix (ECM) play a primary role in peripheral nerve degeneration and regeneration. METHODS: We investigated the expression of several ECM molecules in human sural nerves by immunohistochemistry, Western blot, and reverse transcriptase PCR analysis. To unravel the possible role of these molecules in nerve regeneration, we compared results obtained from nerves with abundant signs of regeneration with those with complete absence of axonal regeneration. The role of some ECM components on neurite extension was further tested in dorsal root ganglion cultures. RESULTS: We observed that the ECM composition significantly differs in regenerating compared with nonregenerating nerves, independently from their etiologic background. Fibronectin was abundantly expressed in regenerating nerves, whereas vitronectin and fibrin(ogen) prevailed in nonregenerating nerves. Whereas fibronectin is secreted by endoneurial cells, in vivo and vitro studies showed that the source of vitronectin and fibrin(ogen) is the bloodstream. CONCLUSIONS: These data indicate that nerve regeneration is impaired in the presence of breaches in the blood-nerve barrier or impaired extracellular matrix (ECM) degradation that leads to accumulation of plasma vitronectin and fibrin(ogen). The transformation into mature, fibronectin-enriched ECM is necessary for efficient nerve regeneration in humans.
机译:目的:在动物模型最近的证据表明,细胞外的组件矩阵(ECM)扮演一个主要角色在外围神经变性和再生。调查了几个ECM的表达分子在人类腓肠神经免疫组织化学、免疫印迹和逆转转录酶PCR分析。这些分子在神经的作用再生,我们比较结果神经与丰富的再生的迹象那些没有完整的轴突再生。进一步进行背神经突延伸根神经节的文化。ECM成分显著不同再生与nonregenerating相比神经,从病因学的独立背景。在神经再生,而vitronectin和纤维蛋白(ogen)盛行nonregenerating神经。而由endoneurial纤连蛋白分泌细胞,体内和体外研究表明vitronectin和纤维蛋白的来源(ogen)血液中。神经再生受损违反2障碍的存在或受损的细胞外基质(ECM)退化导致累积的等离子体vitronectin和纤维蛋白(ogen)。为成熟,fibronectin-enriched ECM是高效的神经再生所必需的人类。

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