Cargando…

Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling

BACKGROUND: Both chronic hypoxia and allergic inflammation induce vascular remodeling in the lung, but only chronic hypoxia appears to cause PH. We investigate the nature of the vascular remodeling and the expression and role of hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in explaining this...

Descripción completa

Detalles Bibliográficos
Autores principales: Angelini, Daniel J, Su, Qingning, Yamaji-Kegan, Kazuyo, Fan, Chunling, Skinner, John T, Poloczek, Andre, El-Haddad, Hazim, Cheadle, Chris, Johns, Roger A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3547770/
https://www.ncbi.nlm.nih.gov/pubmed/23289668
http://dx.doi.org/10.1186/1465-9921-14-1
_version_ 1782256224010502144
author Angelini, Daniel J
Su, Qingning
Yamaji-Kegan, Kazuyo
Fan, Chunling
Skinner, John T
Poloczek, Andre
El-Haddad, Hazim
Cheadle, Chris
Johns, Roger A
author_facet Angelini, Daniel J
Su, Qingning
Yamaji-Kegan, Kazuyo
Fan, Chunling
Skinner, John T
Poloczek, Andre
El-Haddad, Hazim
Cheadle, Chris
Johns, Roger A
author_sort Angelini, Daniel J
collection PubMed
description BACKGROUND: Both chronic hypoxia and allergic inflammation induce vascular remodeling in the lung, but only chronic hypoxia appears to cause PH. We investigate the nature of the vascular remodeling and the expression and role of hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in explaining this differential response. METHODS: We induced pulmonary vascular remodeling through either chronic hypoxia or antigen sensitization and challenge. Mice were evaluated for markers of PH and pulmonary vascular remodeling throughout the lung vascular bed as well as HIMF expression and genomic analysis of whole lung. RESULTS: Chronic hypoxia increased both mean pulmonary artery pressure (mPAP) and right ventricular (RV) hypertrophy; these changes were associated with increased muscularization and thickening of small pulmonary vessels throughout the lung vascular bed. Allergic inflammation, by contrast, had minimal effect on mPAP and produced no RV hypertrophy. Only peribronchial vessels were significantly thickened, and vessels within the lung periphery did not become muscularized. Genomic analysis revealed that HIMF was the most consistently upregulated gene in the lungs following both chronic hypoxia and antigen challenge. HIMF was upregulated in the airway epithelial and inflammatory cells in both models, but only chronic hypoxia induced HIMF upregulation in vascular tissue. CONCLUSIONS: The results show that pulmonary vascular remodeling in mice induced by chronic hypoxia or antigen challenge is associated with marked increases in HIMF expression. The lack of HIMF expression in the vasculature of the lung and no vascular remodeling in the peripheral resistance vessels of the lung is likely to account for the failure to develop PH in the allergic inflammation model.
format Online
Article
Text
id pubmed-3547770
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-35477702013-01-23 Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling Angelini, Daniel J Su, Qingning Yamaji-Kegan, Kazuyo Fan, Chunling Skinner, John T Poloczek, Andre El-Haddad, Hazim Cheadle, Chris Johns, Roger A Respir Res Research BACKGROUND: Both chronic hypoxia and allergic inflammation induce vascular remodeling in the lung, but only chronic hypoxia appears to cause PH. We investigate the nature of the vascular remodeling and the expression and role of hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in explaining this differential response. METHODS: We induced pulmonary vascular remodeling through either chronic hypoxia or antigen sensitization and challenge. Mice were evaluated for markers of PH and pulmonary vascular remodeling throughout the lung vascular bed as well as HIMF expression and genomic analysis of whole lung. RESULTS: Chronic hypoxia increased both mean pulmonary artery pressure (mPAP) and right ventricular (RV) hypertrophy; these changes were associated with increased muscularization and thickening of small pulmonary vessels throughout the lung vascular bed. Allergic inflammation, by contrast, had minimal effect on mPAP and produced no RV hypertrophy. Only peribronchial vessels were significantly thickened, and vessels within the lung periphery did not become muscularized. Genomic analysis revealed that HIMF was the most consistently upregulated gene in the lungs following both chronic hypoxia and antigen challenge. HIMF was upregulated in the airway epithelial and inflammatory cells in both models, but only chronic hypoxia induced HIMF upregulation in vascular tissue. CONCLUSIONS: The results show that pulmonary vascular remodeling in mice induced by chronic hypoxia or antigen challenge is associated with marked increases in HIMF expression. The lack of HIMF expression in the vasculature of the lung and no vascular remodeling in the peripheral resistance vessels of the lung is likely to account for the failure to develop PH in the allergic inflammation model. BioMed Central 2013 2013-01-04 /pmc/articles/PMC3547770/ /pubmed/23289668 http://dx.doi.org/10.1186/1465-9921-14-1 Text en Copyright ©2013 Angelini et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Angelini, Daniel J
Su, Qingning
Yamaji-Kegan, Kazuyo
Fan, Chunling
Skinner, John T
Poloczek, Andre
El-Haddad, Hazim
Cheadle, Chris
Johns, Roger A
Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling
title Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling
title_full Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling
title_fullStr Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling
title_full_unstemmed Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling
title_short Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling
title_sort hypoxia-induced mitogenic factor (himf/fizz1/relmα) in chronic hypoxia- and antigen-mediated pulmonary vascular remodeling
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3547770/
https://www.ncbi.nlm.nih.gov/pubmed/23289668
http://dx.doi.org/10.1186/1465-9921-14-1
work_keys_str_mv AT angelinidanielj hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT suqingning hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT yamajikegankazuyo hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT fanchunling hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT skinnerjohnt hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT poloczekandre hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT elhaddadhazim hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT cheadlechris hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling
AT johnsrogera hypoxiainducedmitogenicfactorhimffizz1relmainchronichypoxiaandantigenmediatedpulmonaryvascularremodeling