Cargando…

Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function

Chronic obstructive pulmonary disease (COPD) is a devastating lung disease primarily caused by exposure to cigarette smoke (CS). During the pyrolysis and combustion of tobacco, reactive aldehydes such as acetaldehyde, acrolein, and formaldehyde are formed, which are known to be involved in respirato...

Descripción completa

Detalles Bibliográficos
Autores principales: Tulen, Christy B. M., Duistermaat, Evert, Cremers, Johannes W. J. M., Klerx, Walther N. M., Fokkens, Paul H. B., Weibolt, Naömi, Kloosterboer, Nico, Dentener, Mieke A., Gremmer, Eric R., Jessen, Phyllis J. J., Koene, Evi J. C., Maas, Lou, Opperhuizen, Antoon, van Schooten, Frederik-Jan, Staal, Yvonne C. M., Remels, Alexander H. V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9655975/
https://www.ncbi.nlm.nih.gov/pubmed/36359877
http://dx.doi.org/10.3390/cells11213481
_version_ 1784829318566772736
author Tulen, Christy B. M.
Duistermaat, Evert
Cremers, Johannes W. J. M.
Klerx, Walther N. M.
Fokkens, Paul H. B.
Weibolt, Naömi
Kloosterboer, Nico
Dentener, Mieke A.
Gremmer, Eric R.
Jessen, Phyllis J. J.
Koene, Evi J. C.
Maas, Lou
Opperhuizen, Antoon
van Schooten, Frederik-Jan
Staal, Yvonne C. M.
Remels, Alexander H. V.
author_facet Tulen, Christy B. M.
Duistermaat, Evert
Cremers, Johannes W. J. M.
Klerx, Walther N. M.
Fokkens, Paul H. B.
Weibolt, Naömi
Kloosterboer, Nico
Dentener, Mieke A.
Gremmer, Eric R.
Jessen, Phyllis J. J.
Koene, Evi J. C.
Maas, Lou
Opperhuizen, Antoon
van Schooten, Frederik-Jan
Staal, Yvonne C. M.
Remels, Alexander H. V.
author_sort Tulen, Christy B. M.
collection PubMed
description Chronic obstructive pulmonary disease (COPD) is a devastating lung disease primarily caused by exposure to cigarette smoke (CS). During the pyrolysis and combustion of tobacco, reactive aldehydes such as acetaldehyde, acrolein, and formaldehyde are formed, which are known to be involved in respiratory toxicity. Although CS-induced mitochondrial dysfunction has been implicated in the pathophysiology of COPD, the role of aldehydes therein is incompletely understood. To investigate this, we used a physiologically relevant in vitro exposure model of differentiated human primary bronchial epithelial cells (PBEC) exposed to CS (one cigarette) or a mixture of acetaldehyde, acrolein, and formaldehyde (at relevant concentrations of one cigarette) or air, in a continuous flow system using a puff-like exposure protocol. Exposure of PBEC to CS resulted in elevated IL-8 cytokine and mRNA levels, increased abundance of constituents associated with autophagy, decreased protein levels of molecules associated with the mitophagy machinery, and alterations in the abundance of regulators of mitochondrial biogenesis. Furthermore, decreased transcript levels of basal epithelial cell marker KRT5 were reported after CS exposure. Only parts of these changes were replicated in PBEC upon exposure to a combination of acetaldehyde, acrolein, and formaldehyde. More specifically, aldehydes decreased MAP1LC3A mRNA (autophagy) and BNIP3 protein (mitophagy) and increased ESRRA protein (mitochondrial biogenesis). These data suggest that other compounds in addition to aldehydes in CS contribute to CS-induced dysregulation of constituents controlling mitochondrial content and function in airway epithelial cells.
format Online
Article
Text
id pubmed-9655975
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96559752022-11-15 Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function Tulen, Christy B. M. Duistermaat, Evert Cremers, Johannes W. J. M. Klerx, Walther N. M. Fokkens, Paul H. B. Weibolt, Naömi Kloosterboer, Nico Dentener, Mieke A. Gremmer, Eric R. Jessen, Phyllis J. J. Koene, Evi J. C. Maas, Lou Opperhuizen, Antoon van Schooten, Frederik-Jan Staal, Yvonne C. M. Remels, Alexander H. V. Cells Article Chronic obstructive pulmonary disease (COPD) is a devastating lung disease primarily caused by exposure to cigarette smoke (CS). During the pyrolysis and combustion of tobacco, reactive aldehydes such as acetaldehyde, acrolein, and formaldehyde are formed, which are known to be involved in respiratory toxicity. Although CS-induced mitochondrial dysfunction has been implicated in the pathophysiology of COPD, the role of aldehydes therein is incompletely understood. To investigate this, we used a physiologically relevant in vitro exposure model of differentiated human primary bronchial epithelial cells (PBEC) exposed to CS (one cigarette) or a mixture of acetaldehyde, acrolein, and formaldehyde (at relevant concentrations of one cigarette) or air, in a continuous flow system using a puff-like exposure protocol. Exposure of PBEC to CS resulted in elevated IL-8 cytokine and mRNA levels, increased abundance of constituents associated with autophagy, decreased protein levels of molecules associated with the mitophagy machinery, and alterations in the abundance of regulators of mitochondrial biogenesis. Furthermore, decreased transcript levels of basal epithelial cell marker KRT5 were reported after CS exposure. Only parts of these changes were replicated in PBEC upon exposure to a combination of acetaldehyde, acrolein, and formaldehyde. More specifically, aldehydes decreased MAP1LC3A mRNA (autophagy) and BNIP3 protein (mitophagy) and increased ESRRA protein (mitochondrial biogenesis). These data suggest that other compounds in addition to aldehydes in CS contribute to CS-induced dysregulation of constituents controlling mitochondrial content and function in airway epithelial cells. MDPI 2022-11-03 /pmc/articles/PMC9655975/ /pubmed/36359877 http://dx.doi.org/10.3390/cells11213481 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
Tulen, Christy B. M.
Duistermaat, Evert
Cremers, Johannes W. J. M.
Klerx, Walther N. M.
Fokkens, Paul H. B.
Weibolt, Naömi
Kloosterboer, Nico
Dentener, Mieke A.
Gremmer, Eric R.
Jessen, Phyllis J. J.
Koene, Evi J. C.
Maas, Lou
Opperhuizen, Antoon
van Schooten, Frederik-Jan
Staal, Yvonne C. M.
Remels, Alexander H. V.
Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function
title Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function
title_full Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function
title_fullStr Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function
title_full_unstemmed Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function
title_short Smoking-Associated Exposure of Human Primary Bronchial Epithelial Cells to Aldehydes: Impact on Molecular Mechanisms Controlling Mitochondrial Content and Function
title_sort smoking-associated exposure of human primary bronchial epithelial cells to aldehydes: impact on molecular mechanisms controlling mitochondrial content and function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9655975/
https://www.ncbi.nlm.nih.gov/pubmed/36359877
http://dx.doi.org/10.3390/cells11213481
work_keys_str_mv AT tulenchristybm smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT duistermaatevert smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT cremersjohanneswjm smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT klerxwalthernm smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT fokkenspaulhb smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT weiboltnaomi smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT kloosterboernico smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT dentenermiekea smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT gremmerericr smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT jessenphyllisjj smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT koeneevijc smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT maaslou smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT opperhuizenantoon smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT vanschootenfrederikjan smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT staalyvonnecm smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction
AT remelsalexanderhv smokingassociatedexposureofhumanprimarybronchialepithelialcellstoaldehydesimpactonmolecularmechanismscontrollingmitochondrialcontentandfunction