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首页> 外文期刊>Molecular medicine reports >Sodium tanshinone IIA sulfonate suppresses heat stress-induced endothelial cell apoptosis by promoting NO production through upregulating the PI3K/AKT/eNOS pathway
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Sodium tanshinone IIA sulfonate suppresses heat stress-induced endothelial cell apoptosis by promoting NO production through upregulating the PI3K/AKT/eNOS pathway

机译:丹参酮IIA磺酸钠通过促进PI3K / AKT / eNOS途径促进不产生生产来抑制热应激诱导的内皮细胞凋亡

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摘要

Heat shock is a life-threatening disease involving systematic inflammation that is closely related to endothelial injury and can lead to multiple organ dysfunction syndrome. Sodium tanshinone IIA sulfonate (STS) has various functions in the vascular endothelium. In the present study, STS is presented to suppress heat stress-induced apoptosis of human umbilical vein endothelial cells (HUVECs) and high ambient temperature-induced systematic inflammation in Sprague Dawley rats. In addition, the STS apoptosis-suppression mechanism was explored. The results presented in the present study demonstrated that the PI3K/AKT pathway was stimulated by STS treatment and that eNOS phosphorylation at Ser-1177 was also upregulated, resulting in increased nitric oxide production in HUVECs under heat stress. Using specific inhibitors, the authors confirmed that STS-induced endothelial nitric oxide synthase (eNOS) phosphorylation at Ser-1177 was activated by protein kinase B phosphorylation at Ser-473, involving activation of phosphatidylinositol-3 kinase (PI3K). The results suggested that STS suppresses heat stress-induced apoptosis of HUVECs via the PI3K/AKT/eNOS pathway and may be used in heat shock treatment as a vascular endothelial protection mechanism.
机译:热休克是一种危及生命的疾病,涉及系统性炎症,与内皮损伤密切相关,可以导致多器官功能障碍综合征。丹参酮Iia磺酸钠(STS)在血管内皮中具有各种功能。在本研究中,STS被提出以抑制Sprague Dawley大鼠的人脐静脉内皮细胞(Huvecs)和高环境温度诱导的系统炎症的热应激诱导的细胞凋亡。此外,还探讨了STS凋亡抑制机制。本研究表明的结果证明了STS处理刺激了PI3K / AKT途径,并且SER-1177的eNOS磷酸化也上调,导致HUVEC在热胁迫下的一氧化氮产生增加。使用特异性抑制剂,作者证实,SER-1177的STS诱导的内皮型一氧化氮合酶(ENOS)在SER-473的蛋白激酶B磷酸化激活,涉及激活磷脂酰肌醇-3激酶(PI3K)。结果表明,STS通过PI3K / AKT / eNOS途径抑制Huvecs的热应激诱导的凋亡,可用于热休克治疗作为血管内皮保护机制。

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