首页> 外文期刊>American Journal of Physiology >BMPR-II heterozygous mice have mild pulmonary hypertension and an impaired pulmonary vascular remodeling response to prolonged hypoxia.
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BMPR-II heterozygous mice have mild pulmonary hypertension and an impaired pulmonary vascular remodeling response to prolonged hypoxia.

机译:BMPR-II杂合小鼠具有轻度的肺动脉高压,并且对长期缺氧的肺血管重塑反应受损。

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摘要

Heterozygous mutations of the bone morphogenetic protein type II receptor (BMPR-II) gene have been identified in patients with primary pulmonary hypertension. The mechanisms by which these mutations contribute to the pathogenesis of primary pulmonary hypertension are not fully elucidated. To assess the impact of a heterozygous mutation of the BMPR-II gene on the pulmonary vasculature, we studied mice carrying a mutant BMPR-II allele lacking exons 4 and 5 (BMPR-II(+/-) mice). BMPR-II(+/-) mice had increased mean pulmonary arterial pressure and pulmonary vascular resistance compared with their wild-type littermates. Histological analyses revealed that the wall thickness of muscularized pulmonary arteries (<100 mum in diameter) and the number of alveolar-capillary units were greater in BMPR-II(+/-) than in wild-type mice. Breathing 11% oxygen for 3 wk increased mean pulmonary arterial pressure, pulmonary vascular resistance, and hemoglobin concentration to similar levels in BMPR-II(+/-) and wild-type mice, but the degree of muscularization of small pulmonary arteries and formation of alveolar-capillary units were reduced in BMPR-II(+/-) mice. Our results suggest that, in mice, mutation of one copy of the BMPR-II gene causes pulmonary hypertension but impairs the ability of the pulmonary vasculature to remodel in response to prolonged hypoxic breathing.
机译:在原发性肺动脉高压患者中已鉴定出骨形态发生蛋白II型受体(BMPR-II)基因的杂合突变。这些突变导致原发性肺动脉高压的发病机理尚未完全阐明。为了评估BMPR-II基因的杂合突变对肺血管的影响,我们研究了携带缺少外显子4和5的突变BMPR-II等位基因的小鼠(BMPR-II(+/-)小鼠)。与野生型同窝仔相比,BMPR-II(+/-)小鼠的平均肺动脉压和肺血管阻力增加。组织学分析表明,BMPR-II(+/-)的肌肉化肺动脉壁厚度(直径<100毫米)和肺泡-毛细血管单位的数量大于野生型小鼠。连续3周呼吸11%的氧气会使BMPR-II(+/-)和野生型小鼠的平均肺动脉压,肺血管阻力和血红蛋白浓度增加至相似水平,但小肺动脉的肌肉化程度和在BMPR-II(+/-)小鼠中肺泡-毛细血管单位减少。我们的结果表明,在小鼠中,BMPR-II基因一个拷贝的突变会引起肺动脉高压,但会损害肺血管系统对长时间低氧呼吸的重塑能力。

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