首页> 美国卫生研究院文献>Acta Pharmaceutica Sinica. B >Inhibition of FOXO3a/BIM signaling pathway contributes to the protective effect of salvianolic acid A against cerebral ischemia/reperfusion injury
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Inhibition of FOXO3a/BIM signaling pathway contributes to the protective effect of salvianolic acid A against cerebral ischemia/reperfusion injury

机译:FOXO3a / BIM信号通路的抑制有助于丹酚酸A对脑缺血/再灌注损伤的保护作用

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摘要

Salvianolic acid A (SalA) is an effective compound extracted from traditional Chinese medicine Salvia miltiorrhiza Bunge. The Forkhead box O3a (FOXO3a) signaling pathway plays crucial roles in the modulation of ischemia-induced cell apoptosis. However, no information about the regulatory effect of SalA on FoxO3a is available. To explore the anti-cerebral ischemia effect and clarify the therapeutic mechanism of SalA, SH-SY5Y cells and Sprague–Dawley rats were applied, which were exposed to oxygen glucose deprivation/reoxygenation (OGD/R) and middle cerebral artery occlusion/reperfusion (MCAO/R) injuries, respectively. The involved pathway was identified using the specific inhibitor . Results showed that SalA concentration-dependently inhibited OGD/R injury triggered cell viability loss. SalA reduced cerebral infarction, lowered brain edema, improved neurological function, and inhibited neuron apoptosis in MCAO/R rats, which were attenuated by the treatment of phosphatidylinositol-4,5-bisphosphate 3-kinase (PI3K) specific inhibitor . SalA time- and concentration-dependently upregulated the phosphorylation levels of protein kinase B (AKT) and its downstream protein FOXO3a. Moreover, the nuclear translocation of FOXO3a was inhibited by SalA both in vivo and in vitro, which was also reversed by . The above results indicated that SalA fought against ischemia/reperfusion damage at least partially via the AKT/FOXO3a/BIM pathway.
机译:丹酚酸A(SalA)是从中药丹参中提取的有效化合物。叉头箱O3a(FOXO3a)信号通路在缺血诱导的细胞凋亡的调节中起关键作用。但是,没有有关SalA对FoxO3a的调节作用的信息。为了探索抗脑缺血的作用并阐明SalA的治疗机制,应用了SH-SY5Y细胞和Sprague-Dawley大鼠,将它们暴露于氧葡萄糖剥夺/复氧(OGD / R)和大脑中动脉闭塞/再灌注( MCAO / R)受伤。使用特异性抑制剂鉴定参与的途径。结果显示,SalA浓度依赖性抑制OGD / R损伤会触发细胞活力丧失。 SalA减轻了MCAO / R大鼠的脑梗塞,降低了脑水肿,改善了神经功能并抑制了神经元凋亡,这通过使用磷脂酰肌醇4,5-双磷酸3激酶(PI3K)特异性抑制剂来减轻。 SalA时间和浓度依赖性上调蛋白激酶B(AKT)及其下游蛋白FOXO3a的磷酸化水平。此外,FOXO3a的核转位在体内和体外均受到SalA的抑制,而后者也被SalA逆转。上述结果表明,SalA至少部分地通过AKT / FOXO3a / BIM途径抵抗了缺血/再灌注损伤。

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