首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Glycocalyx degradation leads to blood–brain barrier dysfunction andbrain edema after asphyxia cardiac arrest in rats
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Glycocalyx degradation leads to blood–brain barrier dysfunction andbrain edema after asphyxia cardiac arrest in rats

机译:糖萼降解导致血脑屏障功能障碍和大鼠窒息性心脏骤停后脑水肿

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摘要

The role of glycocalyx in blood–brain barrier (BBB) integrity and brain damage is poorly understood. Our study aimed to investigate the impacts of endothelial glycocalyx on BBB function in a rat model of cardiac arrest (CA) and cardiopulmonary resuscitation (CPR). Male Sprague-Dawley rats subjected to 8-min asphyxia CA/CPR. Compared to controls, glycocalyx was mildly injured by CA, severely disrupted by hyaluronidase (HAase) with CA, and mitigated by hydrocortisone (HC) with CA. More importantly, the disruption of glycocalyx caused by HAase treatment was associated with higher BBB permeability and aggravated brain edema at 24 h after return of spontaneous circulation, as well as lower survival rate and poorer neurologic outcome at seventh day. Reversely, less degradation of glycocalyx by HC treatment was accompanied by higher seven-day survival rate and better neurologic outcome. Mechanistically, HAase treatment further increased CA/CPR-induced activation of glia cells and expression of inflammatory factors, whereas HC decreased them in the brain cortex and hippocampus. Glycocalyx degradation results in BBB leakage, brain edema, and deteriorates neurologic outcome after asphyxia CA/CPR in rats. Preservation of glycocalyx by HC could improve neurologic outcome and reduce BBBpermeability, apparently through reduced gene transcription-protein synthesisand inflammation.
机译:糖萼在血脑屏障(BBB)完整性和脑损伤中的作用知之甚少。我们的研究旨在调查在心脏骤停(CA)和心肺复苏(CPR)大鼠模型中内皮糖萼对BBB功能的影响。雄性Sprague-Dawley大鼠经历8分钟窒息CA / CPR。与对照组相比,糖萼被CA轻度伤害,CA引起的透明质酸酶(HAase)严重破坏了糖萼,CA引起的氢化可的松(HC)减轻了糖萼。更重要的是,HAase处理引起的糖萼破坏与自发循环恢复后24h的BBB通透性增加和脑水肿加重有关,以及在第七天存活率降低和神经系统预后较差。相反,HC处理对糖萼的降解较少,伴随着更高的7天生存率和更好的神经系统预后。从机理上讲,HAase治疗进一步增加了CA / CPR诱导的胶质细胞激活和炎性因子的表达,而HC降低了它们在大脑皮层和海马中的表达。糖萼降解导致大鼠窒息CA / CPR后BBB渗漏,脑水肿并恶化神经系统结局。 HC保留糖萼可改善神经系统预后并减少血脑屏障通透性,显然是通过减少基因转录蛋白合成和炎症。

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