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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Comparison of matrix metalloproteinase expression during Wallerian degeneration in the central and peripheral nervous systems.
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Comparison of matrix metalloproteinase expression during Wallerian degeneration in the central and peripheral nervous systems.

机译:中和周围神经系统中Wallerian变性过程中基质金属蛋白酶表达的比较。

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The matrix metalloproteinases (MMPs) are a large family of zinc-dependent enzymes which are able to degrade the protein components of the extracellular matrix. They can be placed into subgroups based on structural similarities and substrate specificity. Aberrant expression of these destructive enzymes has been implicated in the pathogenesis of immune-mediated neuroinflammatory disorders. In this study we investigate the involvement of MMPs, from each subgroup, in Wallerian degeneration in both the central and peripheral nervous systems.Wallerian degeneration describes the process initiated by transection of a nerve fibre and entails the degradation and removal of the axon and myelin from the distal stump. A similar degenerative process occurs as the final shared pathway contributing to most common neuropathies. MMP expression and localisation in the peripheral nervous system are compared with events in the CNS during Wallerian degeneration. Within 3 days after axotomy in the peripheral nervous system, MMP-9, MMP-7 and MMP-12 are elevated. These MMPs are produced by Schwann cells, endothelial cells and macrophages. The temporospatial expression of activated MMP-9 correlates with breakdown of the blood-nerve barrier.In the CNS, 1 week after optic nerve crush, four MMPs are induced and primarily localised to astrocytes, not microglia or oligodendrocytes. In the degenerating optic nerve, examined at later time points (4, 8, 12 and 18 weeks), MMP expression was down-regulated. The absence of MMPs in oligodendrocytes and mononuclear phagocytes during Wallerian degeneration may contribute to the slower removal of myelin debris observed in the CNS. The low level of the inactive pro-form of MMP-9 in the degenerating optic nerve may explain why the blood-brain barrier remains intact, while the blood-nerve barrier is rapidly broken down.We conclude that the difference in the level of expression, activation state and cellular distribution of MMPs may contribute to the different sequence of events observed during Wallerian degeneration in the peripheral compared to the CNS.
机译:基质金属蛋白酶(MMP)是一大类锌依赖性酶,它们能够降解细胞外基质的蛋白质成分。可以根据结构相似性和底物特异性将它们分为亚组。这些破坏性酶的异常表达与免疫介导的神经炎性疾病的发病机理有关。在这项研究中,我们调查了来自每个亚组的MMPs在中枢神经系统和周围神经系统中的Wallerian变性中的作用.Wallerian变性描述了神经纤维横断所引发的过程,并要求轴突和髓鞘的降解和去除远端树桩。类似的变性过程发生在最终共享的途径中,导致了大多数常见的神经病。 MMP的表达和在周围神经系统中的定位与Wallerian变性期间CNS中的事件进行了比较。周围神经系统轴突切开术后3天内,MMP-9,MMP-7和MMP-12升高。这些MMP由雪旺氏细胞,内皮细胞和巨噬细胞产生。激活的MMP-9的颞pat表达与血液神经屏障的破坏有关。在中枢神经系统中,视神经挤压后1周,诱导了4种MMP,主要定位于星形胶质细胞而非小胶质细胞或少突胶质细胞。在退化的视神经中,在随后的时间点(4、8、12和18周)检查,MMP表达下调。 Wallerian变性期间少突胶质细胞和单核吞噬细胞中缺乏MMP,可能会导致中枢神经系统中观察到的髓磷脂碎片清除较慢。退化性视神经中MMP-9失活形式的低水平可能解释了为什么血脑屏障保持完好而血神经屏障迅速被打破。我们得出结论,表达水平的差异与CNS相比,MMPs的激活状态和细胞分布可能有助于在Wallerian变性期间观察到的不同事件序列。

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