首页> 外文期刊>Vascular pharmacology >Simvastatin activates Akt/glycogen synthase kinase-3beta signal and inhibits caspase-3 activation after experimental subarachnoid hemorrhage.
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Simvastatin activates Akt/glycogen synthase kinase-3beta signal and inhibits caspase-3 activation after experimental subarachnoid hemorrhage.

机译:实验性蛛网膜下腔出血后,辛伐他汀激活Akt /糖原合酶激酶3beta信号并抑制caspase-3激活。

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摘要

This study was designed to explore the role of simvastatin and its effects on the Akt/GSK3beta survival signal and apoptosis pathway after experimental subarachnoid hemorrhage (SAH). SAH was induced by blood injection into the cisterna magna in New Zealand white rabbits. Increased expression of phospho-Akt and phospho-GSK3beta was observed in brain tissue after SAH. Apoptosis and related proteins, including P53, apoptosis-inducing factor (AIF), cytochrome C, and cleaved caspase-3, were also activated. Simvastatin, at both low dose (10 mg/kg) and high dose (40 mg/kg), further increased expression of phospho-Akt and phospho-GSK3beta, decreased activation of caspase-3, and inhibited apoptosis. Preserved blood-brain barrier and attenuated brain edema were observed following simvastatin treatment. In addition, the neuroprotective effects of simvastatin were blocked by wortmannin (2.5 microg/kg/min), an irreversible PIK3 inhibitor. P53, AIF, and cytochrome C were not affected by simvastatin treatment. Findings from the present study suggest that simvastatin ameliorates acute brain injury after SAH. The potential mechanisms of action include activation of the Akt/GSK3beta survival signal and inhibition of caspase-dependent apoptosis pathway.
机译:本研究旨在探讨辛伐他汀的作用及其对实验性蛛网膜下腔出血(SAH)后对Akt / GSK3beta存活信号和凋亡通路的影响。 SAH是通过向新西兰白兔的大水罐中注射血液诱导的。 SAH后在脑组织中观察到磷酸化Akt和磷酸化GSK3beta的表达增加。凋亡和相关蛋白,包括P53,凋亡诱导因子(AIF),细胞色素C和裂解的caspase-3也被激活。辛伐他汀在低剂量(10 mg / kg)和高剂量(40 mg / kg)时均进一步增加了磷酸化Akt和磷酸化GSK3beta的表达,降低了caspase-3的活化并抑制了细胞凋亡。辛伐他汀治疗后观察到血脑屏障得以保留和脑水肿减弱。此外,辛伐他汀的神经保护作用被不可逆的PIK3抑制剂渥曼青霉素(2.5 microg / kg / min)阻断。辛伐他汀治疗不影响P53,AIF和细胞色素C。从本研究中发现,辛伐他汀可改善SAH后的急性脑损伤。潜在的作用机制包括激活Akt / GSK3beta生存信号和抑制caspase依赖性凋亡途径。

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