医学
肺动脉
肺动脉高压
发病机制
右心室肥大
内科学
囊性纤维化
病理
心脏病学
内分泌学
作者
Hélène Le Ribeuz,Lucie To,Maria‐Rosa Ghigna,Clémence Martin,Chandran Nagaraj,Elise Dréano,Catherine Rücker‐Martin,Barbara Girerd,Jérôme Bouligand,Christine Péchoux,Mélanie Lambert,Angèle Boët,Justin Issard,Olaf Mercier,Konrad Höetzenecker,Boris Manoury,Frédéric Becq,Pierre‐Régis Burgel,Charles‐Henry Cottart,Andrea Olschewski
出处
期刊:The European respiratory journal
[European Respiratory Society]
日期:2021-04-29
卷期号:58 (5): 2000653-2000653
被引量:30
标识
DOI:10.1183/13993003.00653-2020
摘要
Introduction A reduction in pulmonary artery relaxation is a key event in the pathogenesis of pulmonary arterial hypertension (PAH). Cystic fibrosis transmembrane conductance regulator (CFTR) dysfunction in airway epithelial cells plays a central role in cystic fibrosis; CFTR is also expressed in pulmonary arteries and has been shown to control endothelium-independent relaxation. Aim and objectives We aimed to delineate the role of CFTR in PAH pathogenesis through observational and interventional experiments in human tissues and animal models. Methods and results Reverse-transcriptase quantitative PCR, confocal imaging and electron microscopy showed that CFTR expression was reduced in pulmonary arteries from patients with idiopathic PAH (iPAH) and in rats with monocrotaline-induced pulmonary hypertension (PH). Moreover, using myography on human, pig and rat pulmonary arteries, we demonstrated that CFTR activation induces pulmonary artery relaxation. CFTR-mediated pulmonary artery relaxation was reduced in pulmonary arteries from iPAH patients and rats with monocrotaline- or chronic hypoxia-induced PH. Long-term in vivo CFTR inhibition in rats significantly increased right ventricular systolic pressure, which was related to exaggerated pulmonary vascular cell proliferation in situ and vessel neomuscularisation. Pathologic assessment of lungs from patients with severe cystic fibrosis ( F508del-CFTR ) revealed severe pulmonary artery remodelling with intimal fibrosis and medial hypertrophy. Lungs from homozygous F508delCftr rats exhibited pulmonary vessel neomuscularisation. The elevations in right ventricular systolic pressure and end diastolic pressure in monocrotaline-exposed rats with chronic CFTR inhibition were more prominent than those in vehicle-exposed rats. Conclusions CFTR expression is strongly decreased in pulmonary artery smooth muscle and endothelial cells in human and animal models of PH. CFTR inhibition increases vascular cell proliferation and strongly reduces pulmonary artery relaxation.
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