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Epoxyeicosatrienoic Acid Inhibits the Apoptosis of Cerebral Microvascular Smooth Muscle Cells by Oxygen Glucose Deprivation via Targeting the JNK/c-Jun and mTOR Signaling Pathways

机译:环氧二十碳三烯酸通过靶向JNK / c-Jun和mTOR信号通路抑制氧葡萄糖剥夺来抑制脑微血管平滑肌细胞凋亡

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摘要

As a component of the neurovascular unit, cerebral smooth muscle cells (CSMCs) are an important mediator in the development of cerebral vascular diseases such as stroke. Epoxyeicosatrienoic acids (EETs) are the products of arachidonic acid catalyzed by cytochrome P450 epoxygenase. EETs are shown to exert neuroprotective effects. In this article, the role of EET in the growth and apoptosis of CSMCs and the underlying mechanisms under oxygen glucose deprivation (OGD) conditions were addressed. The viability of CMSCs was decreased significantly in the OGD group, while different subtypes of EETs, especially 14,15-EET, could increase the viability of CSMCs under OGD conditions. RAPA (serine/threonine kinase Mammalian Target of Rapamycin), a specific mTOR inhibitor, could elevate the level of oxygen free radicals in CSMCs as well as the anti-apoptotic effects of 14,15-EET under OGD conditions. However, SP600125, a specific JNK (c-Jun N-terminal protein kinase) pathway inhibitor, could attenuate oxygen free radicals levels in CSMCs as well as the anti-apoptotic effects of 14,15-EET under OGD conditions. These results strongly suggest that EETs exert protective functions during the growth and apoptosis of CSMCs, via the JNK/c-Jun and mTOR signaling pathways in vitro. We are the first to disclose the beneficial roles and underlying mechanism of 14,15-EET in CSMC under OGD conditions.
机译:作为神经血管单元的组成部分,脑平滑肌细胞(CSMC)是脑血管疾病(如中风)发展的重要介质。环氧二十碳三烯酸(EET)是由细胞色素P450环氧合酶催化的花生四烯酸的产物。 EET被证明具有神经保护作用。本文探讨了EET在CSMCs生长和凋亡中的作用以及在氧葡萄糖剥夺(OGD)条件下的潜在机制。 OGD组中CMSC的活力显着降低,而不同亚型的EET,尤其是14,15-EET,可以增加OGD条件下CSMC的活力。特异的mTOR抑制剂RAPA(雷帕霉素的丝氨酸/苏氨酸激酶哺乳动物靶标)可以提高CSMC中氧自由基的含量以及在OGD条件下14,15-EET的抗凋亡作用。然而,SP600125是一种特殊的JNK(c-Jun N末端蛋白激酶)途径抑制剂,可以减弱CSMC中的氧自由基水平以及在OGD条件下14,15-EET的抗凋亡作用。这些结果强烈表明,EET在体外通过JNK / c-Jun和mTOR信号通路在CSMC的生长和凋亡过程中发挥保护作用。我们是第一个揭示OGD条件下14,15-EET在CSMC中的有益作用和潜在机制的人。

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