A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in mice

<p>Abstract</p> <p>Background</p> <p>Recent development in the field of COPD has focused on strategies aimed at reducing the underlying inflammation through selective inhibition of the phosphodiesterase type IV (PDE4) isoform. Although the anti-inflammatory and bronchod...

Full description

Bibliographic Details
Main Authors: Séguin Rosanne, Séguin Serge, Mouissi Sonia, Moktefi Kamel, Aubé Paméla, Gougeon Jasmine, Higgins Marie-Ève, D'Anjou Hélène, Fortin Marylène, Renzi Paolo M, Paquet Luc, Ferrari Nicolay
Format: Article
Language:English
Published: BMC 2009-05-01
Series:Respiratory Research
Online Access:http://respiratory-research.com/content/10/1/39
id doaj-fc2f438750f648f48e1210698d98aeef
record_format Article
spelling doaj-fc2f438750f648f48e1210698d98aeef2020-11-25T00:09:24ZengBMCRespiratory Research1465-99212009-05-011013910.1186/1465-9921-10-39A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in miceSéguin RosanneSéguin SergeMouissi SoniaMoktefi KamelAubé PamélaGougeon JasmineHiggins Marie-ÈveD'Anjou HélèneFortin MarylèneRenzi Paolo MPaquet LucFerrari Nicolay<p>Abstract</p> <p>Background</p> <p>Recent development in the field of COPD has focused on strategies aimed at reducing the underlying inflammation through selective inhibition of the phosphodiesterase type IV (PDE4) isoform. Although the anti-inflammatory and bronchodilator activity of selective PDE4 inhibitors has been well documented, their low therapeutic ratio and dose-dependent systemic side effects have limited their clinical utility. This study examined the effect of 2'-deoxy-2'-Fluoro-β-D-Arabinonucleic Acid (FANA)-containing antisense oligonucleotides (AON) targeting the mRNA for the PDE4B/4D and 7A subtypes on lung inflammatory markers, both <it>in vitro </it>and <it>in vivo</it>.</p> <p>Methods</p> <p>Normal human bronchial epithelial (NHBE) cells were transfected with FANA AON against PDE4B/4D and 7A alone or in combination. mRNA levels for target PDE subtypes, as well as secretion of pro-inflammatory chemokines were then measured following cell stimulation. Mice were treated with combined PDE4B/4D and 7A AON via endo-tracheal delivery, or with roflumilast via oral delivery, and exposed to cigarette smoke for one week. Target mRNA inhibition, as well as influx of inflammatory cells and mediators were measured in lung lavages. A two-week smoke exposure protocol was also used to test the longer term potency of PDE4B/4D and 7A AONs.</p> <p>Results</p> <p>In NHBE cells, PDE4B/4D and 7A AONs dose-dependently and specifically inhibited expression of their respective target mRNA. When used in combination, PDE4B/4D and 7A AONs significantly abrogated the cytokine-induced secretion of IL-8 and MCP-1 to near baseline levels. In mice treated with combined PDE4B/4D and 7A AONs and exposed to cigarette smoke, significant protection against the smoke-induced recruitment of neutrophils and production of KC and pro-MMP-9 was obtained, which was correlated with inhibition of target mRNA in cells from lung lavages. In this model, PDE AONs exerted more potent and broader anti-inflammatory effects against smoke-induced lung inflammation than roflumilast. Moreover, the protective effect of PDE4B/4D and 7A AON was maintained when a once-weekly treatment schedule was used.</p> <p>Conclusion</p> <p>These results indicate that inhaled AON against PDE4B/4D and 7A have unique effects on biomarkers that are believed to be important in the pathophysiology of COPD, which supports further development as a potential therapy in this disease.</p> http://respiratory-research.com/content/10/1/39
collection DOAJ
language English
format Article
sources DOAJ
author Séguin Rosanne
Séguin Serge
Mouissi Sonia
Moktefi Kamel
Aubé Paméla
Gougeon Jasmine
Higgins Marie-Ève
D'Anjou Hélène
Fortin Marylène
Renzi Paolo M
Paquet Luc
Ferrari Nicolay
spellingShingle Séguin Rosanne
Séguin Serge
Mouissi Sonia
Moktefi Kamel
Aubé Paméla
Gougeon Jasmine
Higgins Marie-Ève
D'Anjou Hélène
Fortin Marylène
Renzi Paolo M
Paquet Luc
Ferrari Nicolay
A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in mice
Respiratory Research
author_facet Séguin Rosanne
Séguin Serge
Mouissi Sonia
Moktefi Kamel
Aubé Paméla
Gougeon Jasmine
Higgins Marie-Ève
D'Anjou Hélène
Fortin Marylène
Renzi Paolo M
Paquet Luc
Ferrari Nicolay
author_sort Séguin Rosanne
title A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in mice
title_short A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in mice
title_full A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in mice
title_fullStr A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in mice
title_full_unstemmed A multi-target antisense approach against PDE4 and PDE7 reduces smoke-induced lung inflammation in mice
title_sort multi-target antisense approach against pde4 and pde7 reduces smoke-induced lung inflammation in mice
publisher BMC
series Respiratory Research
issn 1465-9921
publishDate 2009-05-01
description <p>Abstract</p> <p>Background</p> <p>Recent development in the field of COPD has focused on strategies aimed at reducing the underlying inflammation through selective inhibition of the phosphodiesterase type IV (PDE4) isoform. Although the anti-inflammatory and bronchodilator activity of selective PDE4 inhibitors has been well documented, their low therapeutic ratio and dose-dependent systemic side effects have limited their clinical utility. This study examined the effect of 2'-deoxy-2'-Fluoro-β-D-Arabinonucleic Acid (FANA)-containing antisense oligonucleotides (AON) targeting the mRNA for the PDE4B/4D and 7A subtypes on lung inflammatory markers, both <it>in vitro </it>and <it>in vivo</it>.</p> <p>Methods</p> <p>Normal human bronchial epithelial (NHBE) cells were transfected with FANA AON against PDE4B/4D and 7A alone or in combination. mRNA levels for target PDE subtypes, as well as secretion of pro-inflammatory chemokines were then measured following cell stimulation. Mice were treated with combined PDE4B/4D and 7A AON via endo-tracheal delivery, or with roflumilast via oral delivery, and exposed to cigarette smoke for one week. Target mRNA inhibition, as well as influx of inflammatory cells and mediators were measured in lung lavages. A two-week smoke exposure protocol was also used to test the longer term potency of PDE4B/4D and 7A AONs.</p> <p>Results</p> <p>In NHBE cells, PDE4B/4D and 7A AONs dose-dependently and specifically inhibited expression of their respective target mRNA. When used in combination, PDE4B/4D and 7A AONs significantly abrogated the cytokine-induced secretion of IL-8 and MCP-1 to near baseline levels. In mice treated with combined PDE4B/4D and 7A AONs and exposed to cigarette smoke, significant protection against the smoke-induced recruitment of neutrophils and production of KC and pro-MMP-9 was obtained, which was correlated with inhibition of target mRNA in cells from lung lavages. In this model, PDE AONs exerted more potent and broader anti-inflammatory effects against smoke-induced lung inflammation than roflumilast. Moreover, the protective effect of PDE4B/4D and 7A AON was maintained when a once-weekly treatment schedule was used.</p> <p>Conclusion</p> <p>These results indicate that inhaled AON against PDE4B/4D and 7A have unique effects on biomarkers that are believed to be important in the pathophysiology of COPD, which supports further development as a potential therapy in this disease.</p>
url http://respiratory-research.com/content/10/1/39
work_keys_str_mv AT seguinrosanne amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT seguinserge amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT mouissisonia amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT moktefikamel amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT aubepamela amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT gougeonjasmine amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT higginsmarieeve amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT danjouhelene amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT fortinmarylene amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT renzipaolom amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT paquetluc amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT ferrarinicolay amultitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT seguinrosanne multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT seguinserge multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT mouissisonia multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT moktefikamel multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT aubepamela multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT gougeonjasmine multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT higginsmarieeve multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT danjouhelene multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT fortinmarylene multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT renzipaolom multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT paquetluc multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
AT ferrarinicolay multitargetantisenseapproachagainstpde4andpde7reducessmokeinducedlunginflammationinmice
_version_ 1725412017210130432