首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Endothelial Cell Tetrahydrobiopterin Modulates Sensitivity to Ang (Angiotensin) II-Induced Vascular Remodeling, Blood Pressure, and Abdominal Aortic Aneurysm
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Endothelial Cell Tetrahydrobiopterin Modulates Sensitivity to Ang (Angiotensin) II-Induced Vascular Remodeling, Blood Pressure, and Abdominal Aortic Aneurysm

机译:内皮细胞四氢纤维调节敏感性(血管紧张素)II诱导的血管重塑,血压和腹主动脉瘤

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摘要

GTPCH (GTP cyclohydrolase 1, encoded by Gch1) is required for the synthesis of tetrahydrobiopterin; a critical regulator of endothelial NO synthase function. We have previously shown that mice with selective loss of Gch1 in endothelial cells have mild vascular dysfunction, but the consequences of endothelial cell tetrahydrobiopterin deficiency in vascular disease pathogenesis are unknown. We investigated the pathological consequence of Ang (angiotensin) II infusion in endothelial cell Gch1 deficient (Gch1(fl/fl)Tie2cre) mice. Ang II (0.4 mg/kg per day, delivered by osmotic minipump) caused a significant decrease in circulating tetrahydrobiopterin levels in Gch1(fl/fl)Tie2cre mice and a significant increase in the N-nitro-L-arginine methyl ester inhabitable production of H2O2 in the aorta. Chronic treatment with this subpressor dose of Ang II resulted in a significant increase in blood pressure only in Gch1(fl/fl)Tie2cre mice. This finding was mirrored with acute administration of Ang II, where increased sensitivity to Ang II was observed at both pressor and subpressor doses. Chronic Ang II infusion in Gch1(fl/fl)Tie2ce mice resulted in vascular dysfunction in resistance mesenteric arteries with an enhanced constrictor and decreased dilator response and medial hypertrophy. Altered vascular remodeling was also observed in the aorta with an increase in the incidence of abdominal aortic aneurysm formation in Gch1(fl/fl)Tie2ce mice. These findings indicate a specific requirement for endothelial cell tetrahydrobiopterin in modulating the hemodynamic and structural changes induced by Ang II, through modulation of blood pressure, structural changes in resistance vessels, and aneurysm formation in the aorta.
机译:GCTPCH(GCH1编码的GTP环加氢酶1)是四氢替替替替替替替替替替替替林的合成所必需的;内皮临界调节剂无合成酶功能。我们之前已经表明,内皮细胞中选择性丧失的小鼠具有轻度血管功能障碍,但内皮细胞四氢纤维缺乏在血管疾病发病机制中的后果是未知的。我们研究了昂(血管紧张素)II输注在内皮细胞GCH1缺陷(GCH1(FL / FL)Tie2cr)小鼠中的病理后果。 Ang II(每天0.4mg / kg通过渗透Minipump递送)导致GCH1(FL / FL)Tie2Cre小鼠中循环四氢螺旋蛋白水平的显着降低,并在N-NITRO-L-精氨酸甲酯中居住的含量显着增加H2O2在主动脉中。慢性治疗具有该压制剂的Ang II,导致仅在GCH1(FL / FL)Tie2cre小鼠中显着增加。该发现镜像急性施用Ang II,其中在两个压力机和后压器剂量下观察到对Ang II的敏感性增加。 GCH1(FL / FL)Tie2Ce小鼠中的慢性Ang II输注导致抗性肠系膜中的血管功能障碍,具有增强的收缩器和降低的扩张响应和内侧肥大。在主动脉中也观察到改变的血管重塑,随着GCH1(FL / FL)Tie2Ce小鼠的腹主动脉瘤形成的发生率而增加。这些发现表明,通过调节血压,抗性容器的结构变化以及主动脉中的动脉瘤形成,调节Ang II诱导的血流动力学和结构变化的特定要求。

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