Antenatal Sildenafil Treatment Attenuates Pulmonary Hypertension in Experimental Congenital Diaphragmatic Hernia

Author:

Luong Christina1,Rey-Perra Juliana1,Vadivel Arul1,Gilmour Greg1,Sauve Yves1,Koonen Debby1,Walker Don1,Todd Kathryn G.1,Gressens Pierre1,Kassiri Zamaneh1,Nadeem Khurram1,Morgan Beverly1,Eaton Farah1,Dyck Jason R.1,Archer Stephen L.1,Thébaud Bernard1

Affiliation:

1. From the Department of Pediatrics, Women and Children Health Research Institute, Cardiovascular Research Group (C.L., J.R.-P., D.K., A.V., B.M., F.E., J.R.D., B.T.), and Departments of Physiology (G.G., Y.S., Z.K., B.T.), Neuroscience (K.G.T.), and Mathematical and Statistical Sciences (K.N.), University of Alberta, Edmonton, Canada; Pharmacokinetics, Dynamics and Metabolism, Pfizer Global Research and Development, Sandwich, UK (D.W.); INSERM U676, Hôpital Robert Debré, Paris, France (P.G.); and...

Abstract

Background— Lung hypoplasia and persistent pulmonary hypertension of the newborn limit survival in congenital diaphragmatic hernia (CDH). Unlike other diseases resulting in persistent pulmonary hypertension of the newborn, infants with CDH are refractory to inhaled nitric oxide (NO). Nitric oxide mediates pulmonary vasodilatation at birth in part via cyclic GMP production. Phosphodiesterase type 5 (PDE5) limits the effects of NO by inactivation of cyclic GMP. Because of the limited success in postnatal management of CDH, we hypothesized that antenatal PDE5 inhibition would attenuate pulmonary artery remodeling in experimental nitrofen-induced CDH. Methods and Results— Nitrofen administered at embryonic day 9.5 to pregnant rats resulted in a 60% incidence of CDH in the offspring and recapitulated features seen in human CDH, including structural abnormalities (lung hypoplasia, decreased pulmonary vascular density, pulmonary artery remodeling, right ventricular hypertrophy), and functional abnormalities (decreased pulmonary artery relaxation in response to the NO donor 2-( N , N -diethylamino)-diazenolate-2-oxide). Antenatal sildenafil administered to the pregnant rat from embryonic day 11.5 to embryonic day 20.5 crossed the placenta, increased fetal lung cyclic GMP and decreased active PDE5 expression. Antenatal sildenafil improved lung structure, increased pulmonary vessel density, reduced right ventricular hypertrophy, and improved postnatal NO donor 2-( N , N -diethylamino)-diazenolate-2-oxide–induced pulmonary artery relaxation. This was associated with increased lung endothelial NO synthase and vascular endothelial growth factor protein expression. Antenatal sildenafil had no adverse effect on retinal structure/function and brain development. Conclusions— Antenatal sildenafil improves pathological features of persistent pulmonary hypertension of the newborn in experimental CDH and does not alter the development of other PDE5-expressing organs. Given the high mortality/morbidity of CDH, the potential benefit of prenatal PDE5 inhibition in improving the outcome for infants with CDH warrants further studies.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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