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GM-CSF reduces expression of chondroitin sulfate proteoglycan (CSPG) core proteins in TGF-β-treated primary astrocytes

机译:GM-CSF减少了硫酸软骨素硫酸酯蛋白多糖(CSPG)核心蛋白在TGF-β-处理的主要星形胶质细胞中表达

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GM-CSF plays a role in the nervous system, particularly in cases of injury. A therapeutic effect of GM-CSF has been reported in rat models of various central nervous system injuries. We previously showed that GM-CSF could enhance long-term recovery in a rat spinal cord injury model, inhibiting glial scar formation and increasing the integrity of axonal structure. Here, we investigated molecular the mechanism(s) by which GM-CSF suppressed glial scar formation in an in vitro system using primary astrocytes treated with TGF-β. GM-CSF repressed the expression of chondroitin sulfate proteoglycan (CSPG) core proteins in astrocytes treated with TGF-β. GM-CSF also inhibited the TGF-β-induced Rho-ROCK pathway, which is important in CSPG expression. Finally, the inhibitory effect of GM-CSF was blocked by a JAK inhibitor. These results may provide the basis for GM-CSF’s effects in glial scar inhibition and ultimately for its therapeutic effect on neural cell injuries.
机译:GM-CSF在神经系统中发挥作用,特别是在受伤情况下。在各种中枢神经系统损伤的大鼠模型中报道了GM-CSF的治疗作用。我们以前表明GM-CSF可以增强大鼠脊髓损伤模型中的长期回收,抑制胶质瘢痕形成并增加轴突结构的完整性。在这里,我们研究了使用用TGF-β处理的主要星形胶质细胞在体外系统中抑制了GM-CSF在体外系统中抑制了胶质瘢痕形成的机制。 GM-CSF在用TGF-β处理的星形胶质细胞中抑制了硫酸软骨素硫酸盐蛋白多糖(CSPG)核心蛋白的表达。 GM-CSF还抑制TGF-β-诱导的Rho-岩石途径,这对于CSPG表达是重要的。最后,GM-CSF的抑制作用由JAK抑制剂阻断。这些结果可以为GM-CSF对胶质瘢痕抑制的影响提供基础,并最终对其对神经细胞损伤的治疗作用。

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