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Pulmonary prostacyclin synthase overexpression in transgenic mice protects against development of hypoxic pulmonary hypertension

机译:肺前列环素合酶在转基因小鼠中的过度表达可预防低氧性肺动脉高压的发展

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摘要

Prostacyclin synthase (PGIS) is the final committed enzyme in the metabolic pathway leading to prostacyclin (PGI2) production. Patients with severe pulmonary hypertension have a PGIS deficiency of their precapillary vessels, but the importance of this deficiency for lung vascular remodeling remains unclear. We hypothesized that selective pulmonary overexpression of PGIS may prevent the development of pulmonary hypertension. To study this hypothesis, transgenic mice were created with selective pulmonary PGIS overexpression using a construct of the 3.7-kb human surfactant protein-C (SP-C) promoter and the rat PGIS cDNA. Transgenic mice (Tg+) and nontransgenic littermates (Tg) were subjected to a simulated altitude of 17,000 ft for 5 weeks, and right ventricular systolic pressure (RVSP) was measured. Histology was performed on the lungs. The Tg+ mice produced 2-fold more pulmonary 6-keto prostaglandin F1α (PGF1α) levels than did Tg mice. After exposure to chronic hypobaric hypoxia, Tg+ mice have lower RVSP than do Tg mice. Histologic examination of the lungs revealed nearly normal arteriolar vessels in the Tg+ mice in comparison with vessel wall hypertrophy in the Tg mice. These studies demonstrate that Tg+ mice were protected from the development of pulmonary hypertension after exposure to chronic hypobaric hypoxia. We conclude that PGIS plays a major role in modifying the pulmonary vascular response to chronic hypoxia. This has important implications for the pathogenesis and treatment of severe pulmonary hypertension.
机译:前列环素合酶(PGIS)是导致前列环素(PGI2)产生的代谢途径中的最终定型酶。患有严重肺动脉高压的患者的毛细血管前血管有PGIS缺陷,但这种缺陷对肺血管重构的重要性仍不清楚。我们假设选择性的PGIS肺过度表达可能阻止了肺动脉高压的发展。为了研究这个假设,使用3.7-kb人表面活性剂蛋白C(SP-C)启动子和大鼠PGIS cDNA的构建体,通过选择性肺PGIS过表达来创建转基因小鼠。将转基因小鼠(Tg + )和非转基因同窝仔动物(Tg )置于17,000 ft的模拟高度下5周,并测量右心室收缩压(RVSP) 。组织学在肺上进行。与Tg 小鼠相比,Tg + 小鼠产生的肺6-酮前列腺素F1α(PGF1α)水平高2倍。暴露于慢性低压缺氧后,Tg + 小鼠的RVSP低于Tg 小鼠。肺的组织学检查显示,与Tg 小鼠的血管壁肥大相比,Tg + 小鼠的动脉小血管几乎正常。这些研究表明,Tg + 小鼠在暴露于慢性低压缺氧后免受肺动脉高压的发展。我们得出的结论是,PGIS在修饰对慢性缺氧的肺血管反应中起主要作用。这对严重肺动脉高压的发病机理和治疗具有重要意义。

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