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FGF-2-Responsive and Spinal Cord-Resident Cells Improve Locomotor Function after Spinal Cord Injury

机译:FGF-2-反应性和脊髓驻留细胞改善脊髓损伤后的运动功能。

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摘要

The adult central nervous system has only a limited capacity for axonal regeneration. In this study, fibroblast growth factor-2 (FGF-2) was injected once into the spinal cord tissue around the injury site immediately after complete spinal cord transection in rats. This treatment markedly improved the locomotor function of the animals. Histological analysis demonstrated that tissue composed of FGF-2-induced fibronectin-positive cells (FIFs) had infiltrated the injury site and filled large cystic cavities, into which numerous axons with growth-associated protein-43 immunoreactivity penetrated. The FIFs could also be cultured from the intact spinal cord tissue, demonstrating that they were resident in the non-injured spinal cord. They had a spindle-shaped morphology and enhanced expression of mRNAs of N-cadherin and neurotrophic factors, suggesting the beneficial properties of the FIFs for axonal regeneration. Thus, these results argue for the continual use of autologous transplantation as a novel and promising cell therapy for the treatment of spinal cord injury.
机译:成人中枢神经系统的轴突再生能力有限。在这项研究中,成纤维细胞生长因子2(FGF-2)在大鼠完全切断脊髓后立即注射到损伤部位周围的脊髓组织中。这种处理显着改善了动物的运动功能。组织学分析表明,由FGF-2诱导的纤连蛋白阳性细胞(FIFs)组成的组织已渗入损伤部位并充满了大的囊性腔,许多与生长相关的蛋白43免疫反应性的轴突渗透进去。还可以从完整的脊髓组织中培养FIF,这表明它们位于未受伤的脊髓中。它们具有纺锤形的形态,并增强了N-钙粘着蛋白和神经营养因子的mRNA表达,表明FIF对轴突再生的有益特性。因此,这些结果证明了自体移植作为治疗脊髓损伤的一种新颖且有希望的细胞疗法的持续使用。

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