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RESEARCH PRODUCT
JAK2 mediates lung fibrosis, pulmonary vascular remodelling and hypertension in idiopathic pulmonary fibrosis: an experimental study
Javier Milara PayáAnselm MorellJuan EscriváFrancisco Perez-vizcainoEstrella FernándezEsteban J. MorcilloEnrique ArtiguesAngel CogolludoJulio CortijoJose Luis OrtizBeatriz BallesterEnrique Pastorsubject
0301 basic medicinePulmonary and Respiratory Medicinemedicine.medical_specialtyHypertension PulmonaryBlotting WesternMyocytes Smooth MuscleFluorescent Antibody TechniqueVasodilationVascular RemodelingReal-Time Polymerase Chain ReactionVascular remodelling in the embryo03 medical and health sciencesIdiopathic pulmonary fibrosisTransforming Growth Factor betaRight ventricular hypertrophyInternal medicinepulmonary hypertensionAnimalsHumansMedicineRNA Small InterferingRats WistarCells CulturedCell ProliferationBKCaJanus kinase 2biologybusiness.industryEndothelial CellsJanus Kinase 2idiopathic pulmonary fibrosismedicine.diseaseImmunohistochemistryPulmonary hypertensionIdiopathic Pulmonary FibrosisTriterpenesRatsPhenotype030104 developmental biologyJAK2biology.proteinCardiologyAnimal studiesJanus kinasebusinessSignal TransductionPulmonary artery smooth muscle cells Pulmonary artery endothelial cells.description
BackgroundPulmonary hypertension (PH) is a common disorder in patients with idiopathic pulmonary fibrosis (IPF) and portends a poor prognosis. Recent studies using vasodilators approved for PH have failed in improving IPF mainly due to ventilation (V)/perfusion (Q) mismatching and oxygen desaturation. Janus kinase type 2 (JAK2) is a non-receptor tyrosine kinase activated by a broad spectrum of profibrotic and vasoactive mediators, but its role in PH associated to PH is unknown.ObjectiveThe study of JAK2 as potential target to treat PH in IPF.Methods and resultsJAK2 expression was increased in pulmonary arteries (PAs) from IPF (n=10; 1.93-fold; P=0.0011) and IPF+PH (n=9; 2.65-fold; P<0.0001) compared with PA from control subjects (n=10). PA remodelling was evaluated in human pulmonary artery endothelial cells (HPAECs) and human pulmonary artery smooth muscle cells (HPASMCs) from patients with IPF in vitro treated with the JAK2 inhibitor JSI-124 or siRNA-JAK2 and stimulated with transforming growth factor beta. Both JSI-124 and siRNA-JAK2 inhibited the HPAEC to mesenchymal transition and the HPASMCs to myofibroblast transition and proliferation. JAK2 inhibition induced small PA relaxation in precision-cut lung slice experiments. PA relaxation was dependent of the large conductance calcium-activated potassium channel (BKCa). JAK2 inhibition activated BKCa channels and reduced intracellular Ca2+. JSI-124 1 mg/kg/day, reduced bleomycin-induced lung fibrosis, PA remodelling, right ventricular hypertrophy, PA hypertension and V/Q mismatching in rats. The animal studies followed the ARRIVE guidelines.ConclusionsJAK2 participates in PA remodelling and tension and may be an attractive target to treat IPF associated to PH.
year | journal | country | edition | language |
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2018-01-01 | Thorax |