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首页> 外文期刊>International journal of molecular medicine >Elevated intracranial pressure induces IL?1β and IL?18 overproduction via activation of the NLRP3 inflammasome in microglia of ischemic adult rats
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Elevated intracranial pressure induces IL?1β and IL?18 overproduction via activation of the NLRP3 inflammasome in microglia of ischemic adult rats

机译:颅内压升高诱导IL?1β和IL?18过量通过激活缺血成年大鼠的微胶质细胞的NLRP3炎性

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摘要

Elevated intracranial pressure (ICP) is one of the most common complications following an ischemic stroke, and has implications for the clinical and neurological outcomes. The aim of the present study was to examine whether elevated ICP may increase IL?1β and IL?18 secretion by activating the NOD?like receptor protein?3 (NLRP3) inflammasome in microglia of ischemic adult rats. Sprague?Dawley rats that underwent middle cerebral artery occlusion were used for assessment of ICP. Reactive oxygen species (ROS) production was detected, and western blotting and immunofluorescence staining were used to determine the expression levels of Caspase?1, gasdermin?D?N domains (GSDMD?N), IL?1β and IL?18 in microglial cells. ICP levels were significantly increased, which was accompanied by ROS overproduction, in the brain tissue following ischemia?reperfusion (IR) injury in rats. Treatment with 10% hypertonic saline by intravenous injection significantly reduced the ICP and ROS levels of the rats. Furthermore, high pressure (20?mmHg) combined with oxygen?glucose deprivation?(OGD) treatment resulted in increased ROS production in BV?2 microglial cells compared with those subjected to OGD treatment alone in?vitro. Elevated pressure upregulated the expression of Caspase?1, GSDMD?N, IL?18 and IL?1β in IR?treated or OGD?treated microglia both in?vivo and in?vitro. More importantly, Caspase?1, GSDMD?N, IL?18 and IL?1β expression in microglia was significantly downregulated when elevated pressure was reduced or removed. These results suggested that elevated ICP?induced IL?1β and IL?18 overproduction via activation of the NLRP3 inflammasome by ischemia?activated microglia may augment neuroinflammation.
机译:颅内压(ICP)升高是缺血性卒中后最常见的并发症之一,对临床和神经原因有影响。本研究的目的是检查升高的ICP是否可以通过激活NODα1β和ILα18分泌物,如缺血成年大鼠的小胶质细胞中的受体蛋白β3(NLRP3)炎症。 Sprague?Dawley大鼠接受中间脑动脉闭塞的大鼠用于评估ICP。检测反应性氧物质(ROS)生产,并使用蛋白质印迹和免疫荧光染色来确定Caspaseα1的表达水平,汽笛αdαdαdαdα1,ILα1β和IL?18在微胶质细胞中。 ICP水平显着增加,伴随着脑组织在缺血后的ROS生产力伴随着血液组织(IR)损伤大鼠损伤。通过静脉注射用10%高渗盐水处理显着降低了大鼠的ICP和ROS水平。此外,与氧气结合的高压(20?mmHg)与氧气剥夺?(OGD)处理导致BVα2微胶质细胞中的ROS产生增加,与单独进行OGD治疗的那些。升高的压力上调了Caspaseα1,GSDMDα1,ILα1,ILα1,ILα1β,IRα1β1β(IMD)在α体内和在β体外处理的微胶质。更重要的是,当升高压力或除去时,微胶质酶α1,GSDMD?1,ILα1,ILα1,ILα1,ILα1β1β1β1β1b,ILα1b,IL?1β表达。这些结果表明,升高的ICP?诱导IL?1β和IL?18通过缺血活化NLRP3炎症的过量产生?活化的微胶质可能增加神经炎性炎症。

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