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Oxygen-glucose deprivation and interleukin-1α trigger the release of perlecan LG3 by cells of neurovascular unit

机译:氧 - 葡萄糖剥夺和白细胞介素-1α引发神经血管单位细胞释放perlecan LG3

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摘要

Two of the main stresses faced by cells at the neurovascular unit (NVU) as an immediate result of cerebral ischemia are oxygen-glucose deprivation (OGD)/reperfusion and inflammatory stress caused by up regulation of IL-1. As a result of these stresses, perlecan, an important component of the NVU extracellular matrix, is highly proteolyzed. In this study, we describe that focal cerebral ischemia in rats results in increased generation of laminin globular domain 3 (LG3), the c-terminal bioactive fragment of perlecan. Further, in vitro study of the cells of the NVU was performed to locate the source of this increased perlecan-LG3. Neurons, astrocytes, brain endothelial cells and pericytes were exposed to OGD/reperfusion and IL-1α/β. It was observed that neurons and pericytes showed increased levels of LG3 during OGD in their culture media. During in vitro reperfusion, neurons, astrocytes and pericytes showed elevated levels of LG3, but only after exposure to brief durations of OGD. IL-1α and IL-1β treatment tended to have opposite effects on NVU cells. While IL-1α increased or had minimal to no effect on LG3 generation, high concentrations of IL-1β decreased it in most cells studied. Finally, LG3 was determined to be neuroprotective and anti-proliferative in brain endothelial cells, suggesting a possible role for the generation of LG3 in the ischemic brain. © 2011 International Society for Neurochemistry.
机译:脑缺血的直接结果是神经血管单位(NVU)的细胞面临的两个主要压力是氧葡萄糖剥夺(OGD)/再灌注和IL-1上调引起的炎性应激。这些压力的结果是高蛋白水解了珍珠白蛋白,它是NVU细胞外基质的重要组成部分。在这项研究中,我们描述了大鼠局灶性脑缺血可导致层粘连蛋白球状结构域3(LG3)(全珠蛋白的c端生物活性片段)的生成增加。此外,对NVU细胞进行了体外研究,以定位这种增加的perlecan-LG3的来源。神经元,星形胶质细胞,脑内皮细胞和周细胞暴露于OGD /再灌注和IL-1α/β。观察到神经元和周细胞在其培养基中的OGD期间显示LG3水平升高。在体外再灌注过程中,神经元,星形胶质细胞和周细胞显示LG3水平升高,但仅在短暂的OGD暴露后才出现。 IL-1α和IL-1β处理倾向于对NVU细胞产生相反的作用。尽管IL-1α增加或对LG3产生影响微乎其微,但在大多数研究的细胞中,高浓度的IL-1β使其减少。最后,确定LG3在脑内皮细胞中具有神经保护作用和抗增殖作用,提示在缺血性脑中LG3的产生可能具有作用。 ©2011国际神经化学学会。

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