Cargando…

Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration

Asthma heterogeneity complicates the search for targeted treatment against airway inflammation and remodeling. We sought to investigate relations between eosinophilic inflammation, a phenotypic feature frequent in severe asthma, bronchial epithelial transcriptome, and functional and structural measu...

Descripción completa

Detalles Bibliográficos
Autores principales: Kozlik-Siwiec, Pawel, Buregwa-Czuma, Sylwia, Zawlik, Izabela, Dziedzina, Sylwia, Myszka, Aleksander, Zuk-Kuwik, Joanna, Siwiec-Kozlik, Andzelika, Zarychta, Jacek, Okon, Krzysztof, Zareba, Lech, Soja, Jerzy, Jakiela, Bogdan, Kepski, Michał, Bazan, Jan G., Bazan-Socha, Stanislawa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9959255/
https://www.ncbi.nlm.nih.gov/pubmed/36835202
http://dx.doi.org/10.3390/ijms24043789
_version_ 1784895229960126464
author Kozlik-Siwiec, Pawel
Buregwa-Czuma, Sylwia
Zawlik, Izabela
Dziedzina, Sylwia
Myszka, Aleksander
Zuk-Kuwik, Joanna
Siwiec-Kozlik, Andzelika
Zarychta, Jacek
Okon, Krzysztof
Zareba, Lech
Soja, Jerzy
Jakiela, Bogdan
Kepski, Michał
Bazan, Jan G.
Bazan-Socha, Stanislawa
author_facet Kozlik-Siwiec, Pawel
Buregwa-Czuma, Sylwia
Zawlik, Izabela
Dziedzina, Sylwia
Myszka, Aleksander
Zuk-Kuwik, Joanna
Siwiec-Kozlik, Andzelika
Zarychta, Jacek
Okon, Krzysztof
Zareba, Lech
Soja, Jerzy
Jakiela, Bogdan
Kepski, Michał
Bazan, Jan G.
Bazan-Socha, Stanislawa
author_sort Kozlik-Siwiec, Pawel
collection PubMed
description Asthma heterogeneity complicates the search for targeted treatment against airway inflammation and remodeling. We sought to investigate relations between eosinophilic inflammation, a phenotypic feature frequent in severe asthma, bronchial epithelial transcriptome, and functional and structural measures of airway remodeling. We compared epithelial gene expression, spirometry, airway cross-sectional geometry (computed tomography), reticular basement membrane thickness (histology), and blood and bronchoalveolar lavage (BAL) cytokines of n = 40 moderate to severe eosinophilic (EA) and non-eosinophilic asthma (NEA) patients distinguished by BAL eosinophilia. EA patients showed a similar extent of airway remodeling as NEA but had an increased expression of genes involved in the immune response and inflammation (e.g., KIR3DS1), reactive oxygen species generation (GYS2, ATPIF1), cell activation and proliferation (ANK3), cargo transporting (RAB4B, CPLX2), and tissue remodeling (FBLN1, SOX14, GSN), and a lower expression of genes involved in epithelial integrity (e.g., GJB1) and histone acetylation (SIN3A). Genes co-expressed in EA were involved in antiviral responses (e.g., ATP1B1), cell migration (EPS8L1, STOML3), cell adhesion (RAPH1), epithelial–mesenchymal transition (ASB3), and airway hyperreactivity and remodeling (FBN3, RECK), and several were linked to asthma in genome- (e.g., MRPL14, ASB3) or epigenome-wide association studies (CLC, GPI, SSCRB4, STRN4). Signaling pathways inferred from the co-expression pattern were associated with airway remodeling (e.g., TGF-β/Smad2/3, E2F/Rb, and Wnt/β-catenin).
format Online
Article
Text
id pubmed-9959255
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99592552023-02-26 Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration Kozlik-Siwiec, Pawel Buregwa-Czuma, Sylwia Zawlik, Izabela Dziedzina, Sylwia Myszka, Aleksander Zuk-Kuwik, Joanna Siwiec-Kozlik, Andzelika Zarychta, Jacek Okon, Krzysztof Zareba, Lech Soja, Jerzy Jakiela, Bogdan Kepski, Michał Bazan, Jan G. Bazan-Socha, Stanislawa Int J Mol Sci Article Asthma heterogeneity complicates the search for targeted treatment against airway inflammation and remodeling. We sought to investigate relations between eosinophilic inflammation, a phenotypic feature frequent in severe asthma, bronchial epithelial transcriptome, and functional and structural measures of airway remodeling. We compared epithelial gene expression, spirometry, airway cross-sectional geometry (computed tomography), reticular basement membrane thickness (histology), and blood and bronchoalveolar lavage (BAL) cytokines of n = 40 moderate to severe eosinophilic (EA) and non-eosinophilic asthma (NEA) patients distinguished by BAL eosinophilia. EA patients showed a similar extent of airway remodeling as NEA but had an increased expression of genes involved in the immune response and inflammation (e.g., KIR3DS1), reactive oxygen species generation (GYS2, ATPIF1), cell activation and proliferation (ANK3), cargo transporting (RAB4B, CPLX2), and tissue remodeling (FBLN1, SOX14, GSN), and a lower expression of genes involved in epithelial integrity (e.g., GJB1) and histone acetylation (SIN3A). Genes co-expressed in EA were involved in antiviral responses (e.g., ATP1B1), cell migration (EPS8L1, STOML3), cell adhesion (RAPH1), epithelial–mesenchymal transition (ASB3), and airway hyperreactivity and remodeling (FBN3, RECK), and several were linked to asthma in genome- (e.g., MRPL14, ASB3) or epigenome-wide association studies (CLC, GPI, SSCRB4, STRN4). Signaling pathways inferred from the co-expression pattern were associated with airway remodeling (e.g., TGF-β/Smad2/3, E2F/Rb, and Wnt/β-catenin). MDPI 2023-02-14 /pmc/articles/PMC9959255/ /pubmed/36835202 http://dx.doi.org/10.3390/ijms24043789 Text en © 2023 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
Kozlik-Siwiec, Pawel
Buregwa-Czuma, Sylwia
Zawlik, Izabela
Dziedzina, Sylwia
Myszka, Aleksander
Zuk-Kuwik, Joanna
Siwiec-Kozlik, Andzelika
Zarychta, Jacek
Okon, Krzysztof
Zareba, Lech
Soja, Jerzy
Jakiela, Bogdan
Kepski, Michał
Bazan, Jan G.
Bazan-Socha, Stanislawa
Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration
title Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration
title_full Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration
title_fullStr Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration
title_full_unstemmed Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration
title_short Co-Expression Analysis of Airway Epithelial Transcriptome in Asthma Patients with Eosinophilic vs. Non-Eosinophilic Airway Infiltration
title_sort co-expression analysis of airway epithelial transcriptome in asthma patients with eosinophilic vs. non-eosinophilic airway infiltration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9959255/
https://www.ncbi.nlm.nih.gov/pubmed/36835202
http://dx.doi.org/10.3390/ijms24043789
work_keys_str_mv AT kozliksiwiecpawel coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT buregwaczumasylwia coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT zawlikizabela coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT dziedzinasylwia coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT myszkaaleksander coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT zukkuwikjoanna coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT siwieckozlikandzelika coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT zarychtajacek coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT okonkrzysztof coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT zarebalech coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT sojajerzy coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT jakielabogdan coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT kepskimichał coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT bazanjang coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration
AT bazansochastanislawa coexpressionanalysisofairwayepithelialtranscriptomeinasthmapatientswitheosinophilicvsnoneosinophilicairwayinfiltration