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Differences in cytokine gene expression profile between acute and secondary injury in adult rat spinal cord.

机译:成年大鼠脊髓急性损伤和继发损伤之间细胞因子基因表达谱的差异。

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It is likely that the environment within the injured spinal cord influences the capacity of fetal spinal cord transplants to support axonal growth. We have recently demonstrated that fetal spinal cord transplants and neurotrophin administration support axonal regeneration after spinal cord transection, and that the distance and amount of axonal growth is greater when these treatments are delayed by several weeks after injury. In this study, we sought to determine whether differences in inflammatory mediators exist between the acutely injured spinal cord and the spinal cord after a second injury and re-section, which could provide a more favorable environment for the axonal re-growth. The results of this study show a more rapid induction of transforming growth factor (TGF) beta1 mRNA expression in the re-injured spinal cord than the acutely injured spinal cord and an attenuation of proinflammatory cytokine mRNA expression. Furthermore, there was a rapid recruitment of activated microglia/macrophages in the degenerating white matter rostral and caudal to the injury but fewer within the lesion site itself. These findings suggest that the augmentation of TGFbeta-1 gene expression and the attenuation of pro-inflammatory cytokine gene expression combined with an altered distribution of activated microglia/macrophages in the re-injured spinal cord might create a more favorable milieu for transplants and axonal regrowth as compared to the acutely injured spinal cord.
机译:受损脊髓内的环境可能会影响胎儿脊髓移植物支持轴突生长的能力。我们最近已证明胎儿脊髓移植和神经营养蛋白的给药支持脊髓横断后的轴突再生,并且当这些治疗在受伤后延迟数周时,轴突生长的距离和量会更大。在这项研究中,我们试图确定急性损伤的脊髓与第二次损伤和切除后的脊髓之间是否存在炎症介质的差异,这可以为轴突的重新生长提供更有利的环境。这项研究的结果表明,与急性受伤的脊髓相比,在再受伤的脊髓中更快速地诱导了转化生长因子(TGF)beta1 mRNA的表达,并且促炎性细胞因子mRNA的表达有所减弱。此外,在退化的白质延髓和尾部迅速吸收了活化的小胶质细胞/巨噬细胞,但在病变部位本身较少。这些发现表明,TGFbeta-1基因表达的增加和促炎细胞因子基因表达的减弱,再激活的脊髓中活化的小胶质细胞/巨噬细胞分布的改变,可能为移植和轴突再生提供了更有利的环境。与急性受伤的脊髓相比。

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