A novel secreted-cAMP pathway inhibits pulmonary hypertension via a feed-forward mechanism
Cardiovascular Research

Abstract
Cyclic adenosine monophosphate (cAMP) is the predominant intracellular second messenger that transduces signals from Gs-coupled receptors. Intriguingly, there is evidence from various cell types that an extracellular cAMP pathway is active in the extracellular space. Herein, we investigated the role of extracellular cAMP in the lung and examined whether it may act on pulmonary vascular cell proliferation and pulmonary vasculature remodelling in the pathogenesis of pulmonary hypertension (PH).
The expression of cyclic AMP-metabolizing enzymes was increased in lungs from patients with PH as well as in rats treated with monocrotaline and mice exposed to Sugen/hypoxia. We report that inhibition of the endogenous extracellular cAMP pathway exacerbated Sugen/hypoxia-induced lung remodelling. We found that application of extracellular cAMP induced an increase in intracellular cAMP levels and inhibited proliferation and migration of pulmonary vascular cells
Taken together, our data reveal the presence of an extracellular cAMP pathway in pulmonary arteries that attempts to protect the lung during PH, and suggest targeting of the extracellular cAMP signalling pathway to limit pulmonary vascular remodelling and PH.
Contributors

Carly Jones
Author

Malik Bisserier
Author

Carlos Bueno-Beti
Author

Guillaume Bonnet
Author

Susana Neves-Zaph
Author

Sang-Yong Lee
Author

Javier Milara
Author

Peter Dorfmüller
Author

Jane A Leopold
Author

Lahouaria Hadri
Author

Roger J Hajjar
Author

Yassine Sassi
Author
Icahn School of Medicine at Mount Sinai New York City , United States of America
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