首页> 外文期刊>The European Journal of Neuroscience >Decorin suppresses neurocan, brevican, phosphacan and NG2 expression and promotes axon growth across adult rat spinal cord injuries.
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Decorin suppresses neurocan, brevican, phosphacan and NG2 expression and promotes axon growth across adult rat spinal cord injuries.

机译:Decorin抑制成年大鼠脊髓损伤中神经cancan,brevican,phosphacan和NG2的表达并促进轴突生长。

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摘要

Abstract The formation of misaligned scar tissue by a variety of cell types expressing multiple axon growth inhibitory proteoglycans presents a physical and molecular barrier to axon regeneration after adult spinal cord injuries. Decorin is a small, leucine-rich proteoglycan that has previously been shown to reduce astrogliosis and basal lamina formation in acute cerebral cortex stab injuries. We have therefore tested whether mini pump infusion of hr-decorin into acute stab injuries of the adult rat spinal cord can not only inhibit formation of an astroglial limitans but also deposition of the axon growth inhibitory proteoglycans neurocan, NG2, phosphacan and brevican. Combined immunohistochemical and quantitative Western blot analysis revealed major reductions in levels of core protein expression (>80% for 130-kDa neurocan, 145/80-kDa brevican, 300-kDa phosphacan) and immunoreactivity for all four chondroitin sulfate proteoglycans (CSPGs) within decorin-treated injuries compared with untreated controls. Astrogliosis within lesion margins and the accumulation of OX42+ macrophages/microglia within lesion centres were also significantly reduced. These decorin-induced changes in scar formation combined to promote the striking ability of axons from microtransplanted adult sensory neurons to enter, grow within and exit decorin-infused spinal cord injuries, in sharp contrast to the complete failure of axons to cross untreated, CSPG-rich lesions. Decorin pretreatment of meningial fibroblasts in vitro also resulted in a three-fold increase in neurite outgrowth from co-cultured adult sensory neurons and suppression of NG2 immunoreactivity. The ability of decorin to promote axon growth across acute spinal cord injuries via a coordinated suppression of inflammation, CSPG expression and astroglial scar formation make decorin treatment a promising component of future spinal cord regeneration strategies.
机译:摘要表达多种轴突生长抑制蛋白聚糖的多种细胞类型形成的错位瘢痕组织为成年脊髓损伤后轴突再生提供了物理和分子屏障。 Decorin是一种小的,富含亮氨酸的蛋白聚糖,以前已被证明可减少急性大脑皮层刺伤中的星形胶质化和基底膜形成。因此,我们已经测试了将hr-decorin微型泵输注到成年大鼠脊髓的急性刺伤中是否不仅可以抑制星形胶质限脂蛋白的形成,而且还可以抑制轴突生长抑制蛋白聚糖neurocan,NG2,phosphacan和brevican的沉积。结合免疫组织化学和定量Western印迹分析显示,核心蛋白表达水平(130 kDa神经罐,145/80 kDa brevican,300 kDa磷酸酯> 80%)显着降低,并且所有四种硫酸软骨素蛋白聚糖(CSPG)的免疫反应性降低与未处理的对照组相比,用除蛋白处理的损伤。病灶边缘的星形胶质增生和病灶中心内OX42 +巨噬细胞/小胶质细胞的积累也显着减少。这些由decorin引起的疤痕形成变化共同促进了来自微移植成年感觉神经元的轴突的攻击能力进入,在decorin注入的脊髓损伤中生长,在其内外退出,与轴突完全无法穿越未经治疗的CSPG-形成鲜明对比。病变丰富。 Decorin在体外对脑膜成纤维细胞进行预处理还导致共培养的成人感觉神经元的神经突增生三倍,并抑制了NG2免疫反应性。通过协同抑制炎症,CSPG表达和星形胶质瘢痕形成,decorin促进了急性脊髓损伤中轴突生长的能力,使decorin治疗成为未来脊髓再生策略的有希望的组成部分。

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