Cargando…

Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload

Right ventricular (RV) failure is a major cause of mortality in acute or chronic lung disease and left heart failure. The objective of this study was to demonstrate a percutaneous approach to study biventricular hemodynamics in murine models of primary and secondary RV pressure overload (RVPO) and f...

Descripción completa

Detalles Bibliográficos
Autores principales: Kapur, Navin K., Paruchuri, Vikram, Aronovitz, Mark J., Qiao, Xiaoying, Mackey, Emily E., Daly, Gerard H., Ughreja, Kishan, Levine, Jonathan, Blanton, Robert, Hill, Nicholas S., Karas, Richard H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3728304/
https://www.ncbi.nlm.nih.gov/pubmed/23936252
http://dx.doi.org/10.1371/journal.pone.0070802
_version_ 1782278837258682368
author Kapur, Navin K.
Paruchuri, Vikram
Aronovitz, Mark J.
Qiao, Xiaoying
Mackey, Emily E.
Daly, Gerard H.
Ughreja, Kishan
Levine, Jonathan
Blanton, Robert
Hill, Nicholas S.
Karas, Richard H.
author_facet Kapur, Navin K.
Paruchuri, Vikram
Aronovitz, Mark J.
Qiao, Xiaoying
Mackey, Emily E.
Daly, Gerard H.
Ughreja, Kishan
Levine, Jonathan
Blanton, Robert
Hill, Nicholas S.
Karas, Richard H.
author_sort Kapur, Navin K.
collection PubMed
description Right ventricular (RV) failure is a major cause of mortality in acute or chronic lung disease and left heart failure. The objective of this study was to demonstrate a percutaneous approach to study biventricular hemodynamics in murine models of primary and secondary RV pressure overload (RVPO) and further explore biventricular expression of two key proteins that regulate cardiac remodeling: calcineurin and transforming growth factor beta 1 (TGFβ1). METHODS: Adult, male mice underwent constriction of the pulmonary artery or thoracic aorta as models of primary and secondary RVPO, respectively. Conductance catheterization was performed followed by tissue analysis for changes in myocyte hypertrophy and fibrosis. RESULTS: Both primary and secondary RVPO decreased biventricular stroke work however RV instantaneous peak pressure (dP/dt(max)) and end-systolic elastance (Ees) were preserved in both groups compared to controls. In contrast, left ventricular (LV) dP/dt(max) and LV-Ees were unchanged by primary, but reduced in the secondary RVPO group. The ratio of RV:LV ventriculo-arterial coupling was increased in primary and reduced in secondary RVPO. Primary and secondary RVPO increased RV mass, while LV mass decreased in primary and increased in the secondary RVPO groups. RV fibrosis and hypertrophy were increased in both groups, while LV fibrosis and hypertrophy were increased in secondary RVPO only. RV calcineurin expression was increased in both groups, while LV expression increased in secondary RVPO only. Biventricular TGFβ1 expression was increased in both groups. CONCLUSION: These data identify distinct effects of primary and secondary RVPO on biventricular structure, function, and expression of key remodeling pathways.
format Online
Article
Text
id pubmed-3728304
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37283042013-08-09 Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload Kapur, Navin K. Paruchuri, Vikram Aronovitz, Mark J. Qiao, Xiaoying Mackey, Emily E. Daly, Gerard H. Ughreja, Kishan Levine, Jonathan Blanton, Robert Hill, Nicholas S. Karas, Richard H. PLoS One Research Article Right ventricular (RV) failure is a major cause of mortality in acute or chronic lung disease and left heart failure. The objective of this study was to demonstrate a percutaneous approach to study biventricular hemodynamics in murine models of primary and secondary RV pressure overload (RVPO) and further explore biventricular expression of two key proteins that regulate cardiac remodeling: calcineurin and transforming growth factor beta 1 (TGFβ1). METHODS: Adult, male mice underwent constriction of the pulmonary artery or thoracic aorta as models of primary and secondary RVPO, respectively. Conductance catheterization was performed followed by tissue analysis for changes in myocyte hypertrophy and fibrosis. RESULTS: Both primary and secondary RVPO decreased biventricular stroke work however RV instantaneous peak pressure (dP/dt(max)) and end-systolic elastance (Ees) were preserved in both groups compared to controls. In contrast, left ventricular (LV) dP/dt(max) and LV-Ees were unchanged by primary, but reduced in the secondary RVPO group. The ratio of RV:LV ventriculo-arterial coupling was increased in primary and reduced in secondary RVPO. Primary and secondary RVPO increased RV mass, while LV mass decreased in primary and increased in the secondary RVPO groups. RV fibrosis and hypertrophy were increased in both groups, while LV fibrosis and hypertrophy were increased in secondary RVPO only. RV calcineurin expression was increased in both groups, while LV expression increased in secondary RVPO only. Biventricular TGFβ1 expression was increased in both groups. CONCLUSION: These data identify distinct effects of primary and secondary RVPO on biventricular structure, function, and expression of key remodeling pathways. Public Library of Science 2013-07-30 /pmc/articles/PMC3728304/ /pubmed/23936252 http://dx.doi.org/10.1371/journal.pone.0070802 Text en © 2013 Kapur et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kapur, Navin K.
Paruchuri, Vikram
Aronovitz, Mark J.
Qiao, Xiaoying
Mackey, Emily E.
Daly, Gerard H.
Ughreja, Kishan
Levine, Jonathan
Blanton, Robert
Hill, Nicholas S.
Karas, Richard H.
Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload
title Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload
title_full Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload
title_fullStr Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload
title_full_unstemmed Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload
title_short Biventricular Remodeling in Murine Models of Right Ventricular Pressure Overload
title_sort biventricular remodeling in murine models of right ventricular pressure overload
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3728304/
https://www.ncbi.nlm.nih.gov/pubmed/23936252
http://dx.doi.org/10.1371/journal.pone.0070802
work_keys_str_mv AT kapurnavink biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT paruchurivikram biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT aronovitzmarkj biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT qiaoxiaoying biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT mackeyemilye biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT dalygerardh biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT ughrejakishan biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT levinejonathan biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT blantonrobert biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT hillnicholass biventricularremodelinginmurinemodelsofrightventricularpressureoverload
AT karasrichardh biventricularremodelinginmurinemodelsofrightventricularpressureoverload