Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung Fibroblasts

The phosphodiesterase 4 inhibitor roflumilast prevents bleomycin- (BLM-) induced lung fibrosis in animal models. However, its mechanism of action remains unknown. We investigated whether roflumilast N-oxide (RNO), the active metabolite of roflumilast, can modulate in vitro the oxidative effects of B...

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Main Authors: Daniela Vecchio, Alessandra Acquaviva, Beatrice Arezzini, Hermann Tenor, Piero A. Martorana, Concetta Gardi
Format: Article
Language:English
Published: Hindawi Limited 2013-01-01
Series:Mediators of Inflammation
Online Access:http://dx.doi.org/10.1155/2013/745984
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spelling doaj-7364f324c1f14fd8b0ae5fb2384a4a282020-11-24T23:24:26ZengHindawi LimitedMediators of Inflammation0962-93511466-18612013-01-01201310.1155/2013/745984745984Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung FibroblastsDaniela Vecchio0Alessandra Acquaviva1Beatrice Arezzini2Hermann Tenor3Piero A. Martorana4Concetta Gardi5Department of Dermatology, Harvard Medical School, Wellman Center for Photomedicine, Massachusetts General Hospital, 40 Blossom Street, Boston, MA 02114, USADepartment of Physiopathology and Experimental Medicine, University of Siena, Via A. Moro 6, 53100 Siena, ItalyDepartment of Physiopathology and Experimental Medicine, University of Siena, Via A. Moro 6, 53100 Siena, ItalyTakeda Pharmaceuticals International, 8152 Zurich, SwitzerlandDepartment of Physiopathology and Experimental Medicine, University of Siena, Via A. Moro 6, 53100 Siena, ItalyDepartment of Physiopathology and Experimental Medicine, University of Siena, Via A. Moro 6, 53100 Siena, ItalyThe phosphodiesterase 4 inhibitor roflumilast prevents bleomycin- (BLM-) induced lung fibrosis in animal models. However, its mechanism of action remains unknown. We investigated whether roflumilast N-oxide (RNO), the active metabolite of roflumilast, can modulate in vitro the oxidative effects of BLM on human lung fibroblasts (HLF). In addition, since BLM increases the production of F2-isoprostanes that have per se fibrogenic activity, the effect of RNO on oxidative stress and fibrogenesis induced by the F2-isoprostane 8-epi-PGF2α was investigated. HLF were preincubated either with the vehicle or with RNO and exposed to either BLM or 8-epi-PGF2α. Proliferation and collagen synthesis were assessed as [3H]-thymidine and [3H]-proline incorporation. Reactive oxygen species (ROS) and F2-isoprostanes were measured. NADPH oxidase 4 (NOX4) protein and mRNA were also evaluated. BLM increased both cell proliferation and collagen synthesis and enhanced ROS and F2-isoprostane production. These effects were significantly prevented by RNO. Also, RNO significantly reduced the increase in both NOX4 mRNA and protein, induced by BLM. Finally, 8-epi-PGF2α  per se stimulated HLF proliferation, collagen synthesis, and NOX4 expression and ROS generation, and RNO prevented these effects. Thus, the antifibrotic effect of RNO observed in vivo may be related to its ability to mitigate ROS generation via downregulation of NOX4.http://dx.doi.org/10.1155/2013/745984
collection DOAJ
language English
format Article
sources DOAJ
author Daniela Vecchio
Alessandra Acquaviva
Beatrice Arezzini
Hermann Tenor
Piero A. Martorana
Concetta Gardi
spellingShingle Daniela Vecchio
Alessandra Acquaviva
Beatrice Arezzini
Hermann Tenor
Piero A. Martorana
Concetta Gardi
Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung Fibroblasts
Mediators of Inflammation
author_facet Daniela Vecchio
Alessandra Acquaviva
Beatrice Arezzini
Hermann Tenor
Piero A. Martorana
Concetta Gardi
author_sort Daniela Vecchio
title Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung Fibroblasts
title_short Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung Fibroblasts
title_full Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung Fibroblasts
title_fullStr Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung Fibroblasts
title_full_unstemmed Downregulation of NOX4 Expression by Roflumilast N-Oxide Reduces Markers of Fibrosis in Lung Fibroblasts
title_sort downregulation of nox4 expression by roflumilast n-oxide reduces markers of fibrosis in lung fibroblasts
publisher Hindawi Limited
series Mediators of Inflammation
issn 0962-9351
1466-1861
publishDate 2013-01-01
description The phosphodiesterase 4 inhibitor roflumilast prevents bleomycin- (BLM-) induced lung fibrosis in animal models. However, its mechanism of action remains unknown. We investigated whether roflumilast N-oxide (RNO), the active metabolite of roflumilast, can modulate in vitro the oxidative effects of BLM on human lung fibroblasts (HLF). In addition, since BLM increases the production of F2-isoprostanes that have per se fibrogenic activity, the effect of RNO on oxidative stress and fibrogenesis induced by the F2-isoprostane 8-epi-PGF2α was investigated. HLF were preincubated either with the vehicle or with RNO and exposed to either BLM or 8-epi-PGF2α. Proliferation and collagen synthesis were assessed as [3H]-thymidine and [3H]-proline incorporation. Reactive oxygen species (ROS) and F2-isoprostanes were measured. NADPH oxidase 4 (NOX4) protein and mRNA were also evaluated. BLM increased both cell proliferation and collagen synthesis and enhanced ROS and F2-isoprostane production. These effects were significantly prevented by RNO. Also, RNO significantly reduced the increase in both NOX4 mRNA and protein, induced by BLM. Finally, 8-epi-PGF2α  per se stimulated HLF proliferation, collagen synthesis, and NOX4 expression and ROS generation, and RNO prevented these effects. Thus, the antifibrotic effect of RNO observed in vivo may be related to its ability to mitigate ROS generation via downregulation of NOX4.
url http://dx.doi.org/10.1155/2013/745984
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