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Molecular mechanisms and cell signaling of 20-hydroxyeicosatetraenoic acid in vascular pathophysiology

机译:20-羟基二十碳四烯酸在血管病理生理中的分子机制和细胞信号转导

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摘要

Cytochrome P450s enzymes catalyze the metabolism of arachidonic acid to epoxyeicosatrienoic acids (EETs), dihydroxyeicosatetraenoic acid and hydroxyeicosatetraeonic acid (HETEs). 20-HETE is a vasoconstrictor that depolarizes vascular smooth muscle cells by blocking K+ channels. EETs serve as endothelial derived hyperpolarizing factors. Inhibition of the formation of 20-HETE impairs the myogenic response and autoregulation of renal and cerebral blood flow. Changes in the formation of EETs and 20-HETE have been reported in hypertension and drugs that target these pathways alter blood pressure in animal models. Sequence variants in CYP4A11 and CYP4F2 that produce 20-HETE, UDP-glucuronosyl transferase involved in the biotransformation of 20-HETE and soluble epoxide hydrolase that inactivates EETs are associated with hypertension in human studies. 20-HETE contributes to the regulation of vascular hypertrophy, restenosis, angiogenesis and inflammation. It also promotes endothelial dysfunction and contributes to cerebral vasospasm and ischemia-reperfusion injury in the brain, kidney and heart. This review will focus on the role of 20-HETE in vascular dysfunction, inflammation, ischemic and hemorrhagic stroke and cardiac and renal ischemia reperfusion injury.
机译:细胞色素P450s酶催化花生四烯酸代谢为环氧二十碳三烯酸(EET),二羟基二十碳四烯酸和羟基二十碳四烯酸(HETE)。 20-HETE是一种血管收缩剂,可通过阻断K + 通道使血管平滑肌细胞去极化。 EETs是内皮衍生的超极化因子。抑制20-HETE的形成会损害肌源性反应以及肾和脑血流的自动调节。据报道,高血压中EET和20-HETE的形成发生了变化,靶向这些途径的药物在动物模型中会改变血压。 CYP4A11和CYP4F2中产生20-HETE,UDP-葡萄糖醛糖基转移酶的20-HETE的生物转化和使EET失活的可溶性环氧化物水解酶的序列变异与高血压有关。 20-HETE有助于调节血管肥大,再狭窄,血管生成和炎症。它还会促进内皮功能障碍,并导致脑,肾和心脏的脑血管痉挛和局部缺血-再灌注损伤。这篇综述将集中在20-HETE在血管功能障碍,炎症,缺血性和出血性中风以及心脏和肾脏缺血再灌注损伤中的作用。

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