Cargando…

The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils

Neutrophils, the most abundant subset of leukocytes in the blood, play a pivotal role in host response against invading pathogens. However, in respiratory diseases, excessive infiltration and activation of neutrophils can lead to tissue damage. Tanimilast-international non-proprietary name of CHF600...

Descripción completa

Detalles Bibliográficos
Autores principales: Schioppa, Tiziana, Nguyen, Hoang Oanh, Salvi, Valentina, Maugeri, Norma, Facchinetti, Fabrizio, Villetti, Gino, Civelli, Maurizio, Gaudenzi, Carolina, Passari, Mauro, Sozio, Francesca, Barbazza, Ilaria, Tamassia, Nicola, Cassatella, Marco A., Del Prete, Annalisa, Bosisio, Daniela, Tiberio, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104715/
https://www.ncbi.nlm.nih.gov/pubmed/35563373
http://dx.doi.org/10.3390/ijms23094982
_version_ 1784707861998206976
author Schioppa, Tiziana
Nguyen, Hoang Oanh
Salvi, Valentina
Maugeri, Norma
Facchinetti, Fabrizio
Villetti, Gino
Civelli, Maurizio
Gaudenzi, Carolina
Passari, Mauro
Sozio, Francesca
Barbazza, Ilaria
Tamassia, Nicola
Cassatella, Marco A.
Del Prete, Annalisa
Bosisio, Daniela
Tiberio, Laura
author_facet Schioppa, Tiziana
Nguyen, Hoang Oanh
Salvi, Valentina
Maugeri, Norma
Facchinetti, Fabrizio
Villetti, Gino
Civelli, Maurizio
Gaudenzi, Carolina
Passari, Mauro
Sozio, Francesca
Barbazza, Ilaria
Tamassia, Nicola
Cassatella, Marco A.
Del Prete, Annalisa
Bosisio, Daniela
Tiberio, Laura
author_sort Schioppa, Tiziana
collection PubMed
description Neutrophils, the most abundant subset of leukocytes in the blood, play a pivotal role in host response against invading pathogens. However, in respiratory diseases, excessive infiltration and activation of neutrophils can lead to tissue damage. Tanimilast-international non-proprietary name of CHF6001—is a novel inhaled phosphodiesterase 4 (PDE4) inhibitor in advanced clinical development for the treatment of chronic obstructive pulmonary disease (COPD), a chronic inflammatory lung disease where neutrophilic inflammation plays a key pathological role. Human neutrophils from healthy donors were exposed to pro-inflammatory stimuli in the presence or absence of tanimilast and budesonide—a typical inhaled corticosteroid drug-to investigate the modulation of effector functions including adherence to endothelial cells, granule protein exocytosis, release of extracellular DNA traps, cytokine secretion, and cell survival. Tanimilast significantly decreased neutrophil-endothelium adhesion, degranulation, extracellular DNA traps casting, and cytokine secretion. In contrast, it promoted neutrophil survival by decreasing both spontaneous apoptosis and cell death in the presence of pro-survival factors. The present work suggests that tanimilast can alleviate the severe tissue damage caused by massive recruitment and activation of neutrophils in inflammatory diseases such as COPD.
format Online
Article
Text
id pubmed-9104715
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91047152022-05-14 The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils Schioppa, Tiziana Nguyen, Hoang Oanh Salvi, Valentina Maugeri, Norma Facchinetti, Fabrizio Villetti, Gino Civelli, Maurizio Gaudenzi, Carolina Passari, Mauro Sozio, Francesca Barbazza, Ilaria Tamassia, Nicola Cassatella, Marco A. Del Prete, Annalisa Bosisio, Daniela Tiberio, Laura Int J Mol Sci Article Neutrophils, the most abundant subset of leukocytes in the blood, play a pivotal role in host response against invading pathogens. However, in respiratory diseases, excessive infiltration and activation of neutrophils can lead to tissue damage. Tanimilast-international non-proprietary name of CHF6001—is a novel inhaled phosphodiesterase 4 (PDE4) inhibitor in advanced clinical development for the treatment of chronic obstructive pulmonary disease (COPD), a chronic inflammatory lung disease where neutrophilic inflammation plays a key pathological role. Human neutrophils from healthy donors were exposed to pro-inflammatory stimuli in the presence or absence of tanimilast and budesonide—a typical inhaled corticosteroid drug-to investigate the modulation of effector functions including adherence to endothelial cells, granule protein exocytosis, release of extracellular DNA traps, cytokine secretion, and cell survival. Tanimilast significantly decreased neutrophil-endothelium adhesion, degranulation, extracellular DNA traps casting, and cytokine secretion. In contrast, it promoted neutrophil survival by decreasing both spontaneous apoptosis and cell death in the presence of pro-survival factors. The present work suggests that tanimilast can alleviate the severe tissue damage caused by massive recruitment and activation of neutrophils in inflammatory diseases such as COPD. MDPI 2022-04-29 /pmc/articles/PMC9104715/ /pubmed/35563373 http://dx.doi.org/10.3390/ijms23094982 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Schioppa, Tiziana
Nguyen, Hoang Oanh
Salvi, Valentina
Maugeri, Norma
Facchinetti, Fabrizio
Villetti, Gino
Civelli, Maurizio
Gaudenzi, Carolina
Passari, Mauro
Sozio, Francesca
Barbazza, Ilaria
Tamassia, Nicola
Cassatella, Marco A.
Del Prete, Annalisa
Bosisio, Daniela
Tiberio, Laura
The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils
title The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils
title_full The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils
title_fullStr The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils
title_full_unstemmed The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils
title_short The PDE4 Inhibitor Tanimilast Restrains the Tissue-Damaging Properties of Human Neutrophils
title_sort pde4 inhibitor tanimilast restrains the tissue-damaging properties of human neutrophils
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104715/
https://www.ncbi.nlm.nih.gov/pubmed/35563373
http://dx.doi.org/10.3390/ijms23094982
work_keys_str_mv AT schioppatiziana thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT nguyenhoangoanh thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT salvivalentina thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT maugerinorma thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT facchinettifabrizio thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT villettigino thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT civellimaurizio thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT gaudenzicarolina thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT passarimauro thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT soziofrancesca thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT barbazzailaria thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT tamassianicola thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT cassatellamarcoa thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT delpreteannalisa thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT bosisiodaniela thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT tiberiolaura thepde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT schioppatiziana pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT nguyenhoangoanh pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT salvivalentina pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT maugerinorma pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT facchinettifabrizio pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT villettigino pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT civellimaurizio pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT gaudenzicarolina pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT passarimauro pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT soziofrancesca pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT barbazzailaria pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT tamassianicola pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT cassatellamarcoa pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT delpreteannalisa pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT bosisiodaniela pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils
AT tiberiolaura pde4inhibitortanimilastrestrainsthetissuedamagingpropertiesofhumanneutrophils