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Vascular Biology and Microcirculation: Elevated 20-HETE impairs coronary collateral growth in metabolic syndrome via endothelial dysfunction

机译:血管生物学和微循环:通过内皮功能障碍升高20-HETE损害代谢综合征的冠状动脉抵押生长

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Joseph G, Soler A, Hutcheson R, Hunter I, Bradford C, Hutcheson B, Gotlinger KH, Jiang H, Falck JR, Proctor S, Schwartzman ML, Rocic P. Elevated 20-HETE impairs coronary collateral growth in metabolic syndrome via endothelial dysfunction. km J Physiol Heart Circ Physiol 312: H528-H540, 2017. First published December 23, 2016; doi:10.1152/ajpheart.00561.2016.— Coronary collateral growth (CCG) is impaired in metabolic syndrome (MetS). microRNA-145 (miR-145-Adv) delivery to our rat model of MetS (JCR) completely restored and neutrophil depletion significantly improved CCG. We determined whether low endogenous levels of miR-145 in MetS allowed for elevated production of 20-hydroxyei-cosatetraenoic acid (20-HETE), which, in turn, resulted in excessive neutrophil accumulation and endothelial dysfunction leading to impaired CCG. Rats underwent 0-9 days of repetitive ischemia (RI). Rl-induced cardiac CYP4F (neutrophil-specific 20-HETE synthase) expression and 20-HETE levels were increased (4-fold) in JCR vs. normal rats. miR-145-Adv and 20-HETE antagonists abolished and neutrophil depletion (blocking antibodies) reduced (~60%) RI-in-duced increases in CYP4F expression and 20-HETE production in JCR rats. Impaired CCG in JCR rats (collateral-dependent blood flow using microspheres) was completely restored by 20-HETE antagonists [collateral-dependent zone (CZ)/normal zone (NZ) flow ratio was 0.76 ± 0.07 in JCR + 20-SOLA, 0.84 ± 0.05 in JCR + 20-HEDGE vs. 0.11 ± 0.02 in JCR vs. 0.84 ± 0.03 in normal rats]. In JCR rats, elevated 20-HETE was associated with excessive expression of endothelial adhesion molecules and neutrophil infiltration, which were reversed by miR-145-Adv. Endothelium-dependent vasodilation of coronary arteries, endothelial nitric oxide synthase (eNOS) Ser1179 phosphorylation, eNOS -dependent NO~- production and endothelial cell survival were compromised in JCR rats. These parameters of endothelial dysfunction were completely reversed by 20-HETE antagonism or miR-145-Adv delivery, whereas neutrophil depletion resulted in partial reversal (~70%). We conclude that low miR-145 in MetS allows for increased 20-HETE, mainly from neutrophils, which compromises endothelial cell survival and function leading to impaired CCG. 20-HETE antagonists could provide viable therapy for restoration of CCG in MetS. NEW & NOTEWORTHY Elevated 20-hydroxyeicosatetraenoic acid (20-HETE) impairs coronary collateral growth (CCG) in metabolic syndrome by eliciting endothelial dysfunction and apoptosis via excessive neutrophil infiltration. 20-HETE antagonists completely restore coronary collateral growth in metabolic syndrome, microRNA-145 (miR-145) is an upstream regulator of 20-HETE production in metabolic syndrome; low expression of miR-145 in metabolic syndrome promotes elevated production of 20-HETE.
机译:Joseph G,Soler A,Hutcheson R,Hunter I,Bradford C,Hutcheson B,Gotlinger Kh,江H,猎鹰JR,Proctor S,Schwartzman ML,腐败的20-HETE通过内皮功能障碍造成代谢综合征的冠状动脉抵押生长。 KM j j j j Physiol心脏Circ Physiol 312:H528-H540,2017。2016年12月23日第一次出版; DOI:10.1152 / Ajpheart.00561.2016.-冠状动脉抵押品(CCG)在代谢综合征(METS)中受损。 MicroRNA-145(MIR-145-ADV)递送给我们大鼠METS(JCR)的大鼠模型(JCR)完全恢复,中性粒细胞耗尽显着改善了CCG。我们确定了MIR-145在MET中的低内源性水平允许升高的20-羟基 - 溶胶四烯酸(20-HETE),这反过来又导致过量的中性粒细胞积累和内皮功能障碍导致CCG受损。大鼠经历了0-9天的重复缺血(RI)。 rl诱导的心脏CYP4F(中性粒细胞特异性20-HETE合酶)表达和20-HETE水平在JCR和正常大鼠中增加(4倍)。消除了和20-HETE拮抗剂的MIR-145-ADV和20-HETE拮抗剂(阻断抗体)降低了(〜60%)CYP4F表达和JCR大鼠20-HETE生产的含量增加。通过20-HETE拮抗剂完全恢复JCR大鼠中的CCG(使用微球的旁拷贝血流量)(依赖于副分区(CZ)/正常区(NZ)流量比为0.76±0.07,0.84 ±0.05在JCR + 20-HEDGE与0.11±0.02的正常大鼠中的0.11±0.03。在JCR大鼠中,升高的20-HETE与内皮粘附分子和中性粒细胞渗透过多的表达有关,其被MIR-145-ADV逆转。冠状动脉的内皮依赖性血管舒张,内皮一氧化氮合酶(ENOS)Ser1179磷酸化,ENOS - 依赖性NO〜 - 生产和内皮细胞存活率在JCR大鼠中受到损害。内皮功能障碍的这些参数完全逆转20-HETE拮抗作用或MIR-145-ADV递送,而中性粒细胞耗尽导致部分逆转(〜70%)。我们得出结论,Mets中的低miR-145允许增加20-hete,主要来自中性粒细胞,这损害了内皮细胞存活率和导致CCG受损的功能。 20-HETE拮抗剂可以提供可行的治疗,以恢复CCG。通过引发内皮功能障碍和细胞凋亡,通过过量的中性粒细胞渗透引发内皮功能障碍和细胞凋亡,新的和值得注意的20-羟基喹喔啉酸(20-HETE)在代谢综合征中损害代谢综合征中的冠状动脉侧副生长(CCG)。 20-HETE拮抗剂完全恢复代谢综合征的冠状抵押生长,MicroRNA-145(miR-145)是代谢综合征20-hete生产的上游调节因子; MiR-145在代谢综合征中的低表达促进了20-HETE的升高。

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