DUOX1-mediated hydrogen peroxide release regulates sodium transport in H441 bronchiolar epithelial cells

Author:

Mies Frédérique1,Virreira Myrna2,Goolaerts Arnaud1,Djerbib Sami2,Beauwens Renaud2,Shlyonsky Vadim1ORCID,Boom Alain2

Affiliation:

1. Laboratory of Physiology and Pharmacology; Université libre de Bruxelles; Brussels Belgium

2. Laboratory of Cell and Molecular Physiology; Université libre de Bruxelles; Brussels Belgium

Funder

Fund Alphonse and Jean Forton

Fund Crawez

“Fonds d'Encouragement à la Recherche” of ULB

Publisher

Wiley

Subject

Physiology

Reference33 articles.

1. Differentiation of epithelial Na+ channel function. An in vitro model;Shlyonsky;J Biol Chem,2005

2. A glucocorticoid-induced Na+ conductance in human airway epithelial cells identified by perforated patch recording;Clunes;J Physiol,2004

3. Nitric oxide inhibits highly selective sodium channels and the Na+/K+-ATPase in H441 cells;Althaus;Am J Respir Cell Mol Biol,2011

4. An optimised human cell culture model for alveolar epithelial transport;Ren;PLoS One,2016

5. Developmental regulation of DUOX1 expression and function in human fetal lung epithelial cells;Fischer;Am J Physiol,2007

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1. Polyamines, metabolites and metabolomics;Acta Physiologica;2020-05-10

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