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首页> 外文期刊>Glia >Fibroblast-derived tenascin-C promotes Schwann cell migration through 1-integrin dependent pathway during peripheral nerve regeneration
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Fibroblast-derived tenascin-C promotes Schwann cell migration through 1-integrin dependent pathway during peripheral nerve regeneration

机译:成纤维细胞来源的腱生蛋白C在周围神经再生过程中通过1-整合素依赖性途径促进雪旺细胞迁移

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Peripheral nerve regeneration requires precise coordination and dynamic interaction among various types of cells in the tissue. It remains unclear, however, whether the cellular crosstalk between fibroblasts and Schwann cells (SCs) is related to phenotype modulation of SCs, a critical cellular process after peripheral nerve injury. In this study, microarray analysis revealed that a total of 6,046 genes were differentially expressed in the proximal nerve segment after sciatic nerve transection in rats, and bioinformatics analysis further identified tenascin-C (TNC), an extracellular matrix (ECM) protein, as a key gene regulator. TNC was abundantly produced by nerve fibroblasts accumulating at the lesion site, rather than by SCs as usually expected. TNC significantly promoted SC migration without effects on SC proliferation in primary culture. In co-culture of fibroblasts and SCs, inhibition of TNC expression either by siRNA transfection or antibody blockade could suppress SC migration, while TNC-stimulated SC migration was mediated by TNC binding to 1-integrin receptor in SCs through activation of Rac1 effectors. The in vivo evidence showed that exogenous TNC protein enhanced SC migration and axonal regrowth. Our results highlight that TNC-mediated cellular interaction between fibroblasts and SCs may regulate SC migration through 1-integrin-dependent pathway during peripheral nerve regeneration. GLIA 2016;64:374-385
机译:周围神经再生需要组织中各种类型细胞之间的精确协调和动态相互作用。然而,尚不清楚成纤维细胞与雪旺氏细胞(SCs)之间的细胞串扰是否与SCs的表型调节有关,SCs是周围神经损伤后的关键细胞过程。在这项研究中,微阵列分析显示,大鼠坐骨神经横断后,近端神经节段总共表达了6,046个基因,生物信息学分析进一步确定了细胞外基质(ECM)蛋白腱生蛋白C(TNC)是一种关键基因调节剂。 TNC由病变部位积聚的神经成纤维细胞大量产生,而不是通常所期望的SC。 TNC显着促进了SC迁移,而对原代培养中的SC增殖没有影响。在成纤维细胞和SC的共培养中,通过siRNA转染或抗体阻断抑制TNC表达可以抑制SC迁移,而TNC刺激SC迁移是通过TNC通过激活Rac1效应子与SC中的1整合素受体结合而介导的。体内证据显示外源TNC蛋白增强SC迁移和轴突再生。我们的结果强调,在周围神经再生过程中,TNC介导的成纤维细胞和SC之间的细胞相互作用可能通过1整合素依赖性途径调节SC迁移。 GLIA 2016; 64:374-385

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