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Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling

BACKGROUND: Airway smooth muscle (ASM) cells are fundamental to asthma pathogenesis, influencing bronchoconstriction, airway hyperresponsiveness and airway remodelling. The extracellular matrix (ECM) can influence tissue remodelling pathways; however, to date no study has investigated the effect of...

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Autores principales: Ramis, Jopeth, Middlewick, Robert, Pappalardo, Francesco, Cairns, Jennifer T., Stewart, Iain D., John, Alison E., Naveed, Shams-Un-Nisa, Krishnan, Ramaswamy, Miller, Suzanne, Shaw, Dominick E., Brightling, Christopher E., Buttery, Lee, Rose, Felicity, Jenkins, Gisli, Johnson, Simon R., Tatler, Amanda L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Respiratory Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260127/
https://www.ncbi.nlm.nih.gov/pubmed/34996828
http://dx.doi.org/10.1183/13993003.04361-2020
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author Ramis, Jopeth
Middlewick, Robert
Pappalardo, Francesco
Cairns, Jennifer T.
Stewart, Iain D.
John, Alison E.
Naveed, Shams-Un-Nisa
Krishnan, Ramaswamy
Miller, Suzanne
Shaw, Dominick E.
Brightling, Christopher E.
Buttery, Lee
Rose, Felicity
Jenkins, Gisli
Johnson, Simon R.
Tatler, Amanda L.
author_facet Ramis, Jopeth
Middlewick, Robert
Pappalardo, Francesco
Cairns, Jennifer T.
Stewart, Iain D.
John, Alison E.
Naveed, Shams-Un-Nisa
Krishnan, Ramaswamy
Miller, Suzanne
Shaw, Dominick E.
Brightling, Christopher E.
Buttery, Lee
Rose, Felicity
Jenkins, Gisli
Johnson, Simon R.
Tatler, Amanda L.
author_sort Ramis, Jopeth
collection PubMed
description BACKGROUND: Airway smooth muscle (ASM) cells are fundamental to asthma pathogenesis, influencing bronchoconstriction, airway hyperresponsiveness and airway remodelling. The extracellular matrix (ECM) can influence tissue remodelling pathways; however, to date no study has investigated the effect of ASM ECM stiffness and cross-linking on the development of asthmatic airway remodelling. We hypothesised that transforming growth factor-β (TGF-β) activation by ASM cells is influenced by ECM in asthma and sought to investigate the mechanisms involved. METHODS: This study combines in vitro and in vivo approaches: human ASM cells were used in vitro to investigate basal TGF-β activation and expression of ECM cross-linking enzymes. Human bronchial biopsies from asthmatic and nonasthmatic donors were used to confirm lysyl oxidase like 2 (LOXL2) expression in ASM. A chronic ovalbumin (OVA) model of asthma was used to study the effect of LOXL2 inhibition on airway remodelling. RESULTS: We found that asthmatic ASM cells activated more TGF-β basally than nonasthmatic controls and that diseased cell-derived ECM influences levels of TGF-β activated. Our data demonstrate that the ECM cross-linking enzyme LOXL2 is increased in asthmatic ASM cells and in bronchial biopsies. Crucially, we show that LOXL2 inhibition reduces ECM stiffness and TGF-β activation in vitro, and can reduce subepithelial collagen deposition and ASM thickness, two features of airway remodelling, in an OVA mouse model of asthma. CONCLUSION: These data are the first to highlight a role for LOXL2 in the development of asthmatic airway remodelling and suggest that LOXL2 inhibition warrants further investigation as a potential therapy to reduce remodelling of the airways in severe asthma.
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spelling pubmed-92601272022-07-08 Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling Ramis, Jopeth Middlewick, Robert Pappalardo, Francesco Cairns, Jennifer T. Stewart, Iain D. John, Alison E. Naveed, Shams-Un-Nisa Krishnan, Ramaswamy Miller, Suzanne Shaw, Dominick E. Brightling, Christopher E. Buttery, Lee Rose, Felicity Jenkins, Gisli Johnson, Simon R. Tatler, Amanda L. Eur Respir J Original Research Articles BACKGROUND: Airway smooth muscle (ASM) cells are fundamental to asthma pathogenesis, influencing bronchoconstriction, airway hyperresponsiveness and airway remodelling. The extracellular matrix (ECM) can influence tissue remodelling pathways; however, to date no study has investigated the effect of ASM ECM stiffness and cross-linking on the development of asthmatic airway remodelling. We hypothesised that transforming growth factor-β (TGF-β) activation by ASM cells is influenced by ECM in asthma and sought to investigate the mechanisms involved. METHODS: This study combines in vitro and in vivo approaches: human ASM cells were used in vitro to investigate basal TGF-β activation and expression of ECM cross-linking enzymes. Human bronchial biopsies from asthmatic and nonasthmatic donors were used to confirm lysyl oxidase like 2 (LOXL2) expression in ASM. A chronic ovalbumin (OVA) model of asthma was used to study the effect of LOXL2 inhibition on airway remodelling. RESULTS: We found that asthmatic ASM cells activated more TGF-β basally than nonasthmatic controls and that diseased cell-derived ECM influences levels of TGF-β activated. Our data demonstrate that the ECM cross-linking enzyme LOXL2 is increased in asthmatic ASM cells and in bronchial biopsies. Crucially, we show that LOXL2 inhibition reduces ECM stiffness and TGF-β activation in vitro, and can reduce subepithelial collagen deposition and ASM thickness, two features of airway remodelling, in an OVA mouse model of asthma. CONCLUSION: These data are the first to highlight a role for LOXL2 in the development of asthmatic airway remodelling and suggest that LOXL2 inhibition warrants further investigation as a potential therapy to reduce remodelling of the airways in severe asthma. European Respiratory Society 2022-07-07 /pmc/articles/PMC9260127/ /pubmed/34996828 http://dx.doi.org/10.1183/13993003.04361-2020 Text en Copyright ©The authors 2022. https://creativecommons.org/licenses/by/4.0/This version is distributed under the terms of the Creative Commons Attribution Licence 4.0.
spellingShingle Original Research Articles
Ramis, Jopeth
Middlewick, Robert
Pappalardo, Francesco
Cairns, Jennifer T.
Stewart, Iain D.
John, Alison E.
Naveed, Shams-Un-Nisa
Krishnan, Ramaswamy
Miller, Suzanne
Shaw, Dominick E.
Brightling, Christopher E.
Buttery, Lee
Rose, Felicity
Jenkins, Gisli
Johnson, Simon R.
Tatler, Amanda L.
Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling
title Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling
title_full Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling
title_fullStr Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling
title_full_unstemmed Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling
title_short Lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling
title_sort lysyl oxidase like 2 is increased in asthma and contributes to asthmatic airway remodelling
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260127/
https://www.ncbi.nlm.nih.gov/pubmed/34996828
http://dx.doi.org/10.1183/13993003.04361-2020
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