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Elevated pressure induced astrocyte damage in the optic nerve.

机译:压力升高引起视神经中的星形胶质细胞损伤。

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Astrocytes maintain an intimate relationship with central nervous system (CNS) neurons and play a crucial role in regulating their biochemical environment. A rise in neural tissue pressure in the CNS is known to lead to axonal degeneration however the response of astrocytes during the early stages of neural injury has not been studied in great detail. The optic nerve is a readily accessible model in which to study CNS axonal injury. Previous work from our laboratory has shown that an acute increase in intraocular pressure (IOP) results in axonal cytoskeleton changes and axonal transport retardation within the optic nerve head. Axonal changes occurred in a time-dependent manner with the magnitude of change being proportional to the duration of the IOP rise. Using glial fibrillary acidic protein (GFAP) as a marker of astrocytes we have now studied pressure induced changes in astrocyte structure in the optic nerve head. Using confocal microscopy we found that an increase in IOP resulted in morphological changes in the astrocytes that were consistent with previous reports of swelling. In addition there was also a decrease in GFAP intensity within these astrocytes. These changes occurred in a time-dependent manner with the chronology of change coinciding with that of axonal change. There was no evidence of apoptosis in regions where astrocyte changes were found. The present results provide evidence that in the early stages of neural tissue pressure rise there are both astrocyte and axonal injury.
机译:星形胶质细胞与中枢神经系统(CNS)神经元保持密切关系,并在调节其生化环境中起关键作用。已知中枢神经系统中神经组织压力的升高会导致轴突变性,但是尚未详细研究神经损伤早期阶段星形胶质细胞的反应。视神经是一种易于研究的模型,可用于研究中枢神经系统轴突损伤。我们实验室的先前工作表明,眼内压(IOP)急剧增加会导致视神经元内的轴突细胞骨架变化和轴突运输阻滞。轴突变化以时间依赖的方式发生,并且变化的幅度与IOP上升的持续时间成比例。现在,我们使用神经胶质纤维酸性蛋白(GFAP)作为星形胶质细胞的标志物,研究了压力引起的视神经头星形胶质细胞结构的变化。使用共聚焦显微镜,我们发现IOP的增加导致星形胶质细胞的形态变化,这与以前的肿胀报道一致。另外,这些星形胶质细胞中的GFAP强度也降低了。这些变化以时间依赖的方式发生,变化的时间顺序与轴突的变化时间一致。在发现星形胶质细胞变化的区域没有凋亡的迹象。目前的结果提供了证据,表明在神经组织压力升高的早期阶段,星形胶质细胞和轴突均受到损伤。

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