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细胞色素P450 4A/20-羟二十碳四烯酸通过作用于内皮祖细胞和已有的内皮细胞来调节缺血诱导的新生血管形成。

CYP4A/20-HETE regulates ischemia-induced neovascularization via its actions on endothelial progenitor and preexisting endothelial cells.

作者信息

Chen Li, Tang Samantha, Zhang Frank F, Garcia Victor, Falck John R, Schwartzman Michal L, Arbab Ali S, Guo Austin M

机构信息

State Key Laboratory of Oncology, Collaborative Innovation Center for Cancer Medicine, Sun Yat-Sen University Cancer Center , Guangzhou , People's Republic of China.

Department of Pharmacology, New York Medical College, Valhalla, New York.

出版信息

Am J Physiol Heart Circ Physiol. 2019 Jun 1;316(6):H1468-H1479. doi: 10.1152/ajpheart.00690.2018. Epub 2019 Apr 5.

Abstract

20-Hydroxyeicosatetraenoic acid (20-HETE) was recently identified as a novel contributor of ischemia-induced neovascularization based on the key observation that pharmacological interferences of CYP4A/20-HETE decrease ischemic neovascularization. The objective of the present study is to examine whether the underlying cellular mechanisms involve endothelial progenitor cells (EPCs) and preexisting endothelial cells (ECs). We found that ischemia leads to a time-dependent increase of cyp4a12 expression and 20-HETE production, which are endothelial in origin, using immunofluorescent microscopy, Western blot analysis, and LC-MS/MS. This is accompanied by increases in the tissue stromal cell-derived factor-1α (SDF-1α) expressions as well as SDF-1α plasma levels, EPC mobilization from bone marrow, and subsequent homing to ischemic tissues. Pharmacological interferences of CYP4A/20-HETE with a 20-HETE synthesis inhibitor, dibromo-dodecenyl-methylsulfimide (DDMS), or a 20-HETE antagonist, -(20-hydroxyeicosa-6(), 15()-dienoyl) glycine (6, 15-20-HEDGE), significantly attenuated these increases. Importantly, we also determined that 20-HETE plays a novel role in maintaining EPC functions and increasing the expression of , , and , which are indicative of increased progenitor cell stemness. Flow cytometric analysis revealed that pharmacological interferences of CYP4A/20-HETE decrease the EPC population in culture, whereas 20-HETE increases the cultured EPC population. Furthermore, ischemia also markedly increased the proliferation, oxidative stress, and ICAM-1 expression in the preexisting EC in the hindlimb gracilis muscles. We found that these increases were markedly negated by DDMS and 6, 15-20-HEDGE. Taken together, CYP4A/20-HETE regulates ischemia-induced compensatory neovascularization via its combined actions on promoting EPC and local preexisting EC responses that are associated with increased neovascularization. CYP4A/20-hydroxyeicosatetraenoic acid (20-HETE) was recently discovered as a novel contributor of ischemia-induced neovascularization. However, the underlying molecular and cellular mechanisms are completely unknown. Here, we show that CYP4A/20-HETE regulates the ischemic neovascularization process via its combined actions on both endothelial progenitor cells (EPCs) and preexisting endothelial cells. Moreover, this is the first study, to the best of our knowledge, that associates CYP4A/20-HETE with EPC differentiation and stemness.

摘要

20-羟基二十碳四烯酸(20-HETE)最近被确定为缺血诱导的新生血管形成的一个新的促成因素,这基于一个关键观察结果,即CYP4A/20-HETE的药理学干扰会减少缺血性新生血管形成。本研究的目的是检查潜在的细胞机制是否涉及内皮祖细胞(EPCs)和已存在的内皮细胞(ECs)。我们发现,使用免疫荧光显微镜、蛋白质免疫印迹分析和液相色谱-串联质谱法,缺血会导致cyp4a12表达和20-HETE生成随时间增加,且它们起源于内皮细胞。这伴随着组织基质细胞衍生因子-1α(SDF-1α)表达以及SDF-1α血浆水平的增加、EPC从骨髓的动员以及随后归巢至缺血组织。用20-HETE合成抑制剂二溴-十二碳烯基-甲基磺酰亚胺(DDMS)或20-HETE拮抗剂-(20-羟基二十碳-6(),15()-二烯酰)甘氨酸(6,15-20-HEDGE)对CYP4A/20-HETE进行药理学干扰,可显著减弱这些增加。重要的是,我们还确定20-HETE在维持EPC功能以及增加表明祖细胞干性增加的、和的表达方面发挥新作用。流式细胞术分析显示,CYP4A/20-HETE的药理学干扰会减少培养中的EPC群体,而20-HETE会增加培养的EPC群体。此外,缺血还显著增加了后肢股薄肌中已存在的EC的增殖、氧化应激和ICAM-1表达。我们发现DDMS和6,15-20-HEDGE可显著消除这些增加。综上所述,CYP4A/20-HETE通过其对促进EPC和局部已存在的EC反应的联合作用来调节缺血诱导的代偿性新生血管形成,这些反应与新生血管形成增加相关。CYP4A/20-羟基二十碳四烯酸(20-HETE)最近被发现是缺血诱导的新生血管形成的一个新的促成因素。然而,潜在的分子和细胞机制完全未知。在此,我们表明CYP4A/20-HETE通过其对内皮祖细胞(EPCs)和已存在的内皮细胞的联合作用来调节缺血性新生血管形成过程。此外,据我们所知,这是第一项将CYP4A/20-HETE与EPC分化和干性联系起来的研究。

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