Cargando…

A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart

Among other diseases characterized by the onset of cachexia, congestive heart failure takes a place of relevance, considering the high prevalence of this pathology in most European countries and in the United States, and is undergoing a rapid increase in developing countries. Actually, only few mode...

Descripción completa

Detalles Bibliográficos
Autores principales: Sala, Valentina, Gatti, Stefano, Gallo, Simona, Medico, Enzo, Cantarella, Daniela, Cimino, James, Ponzetto, Antonio, Crepaldi, Tiziana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889800/
https://www.ncbi.nlm.nih.gov/pubmed/27298830
http://dx.doi.org/10.1155/2016/9549036
_version_ 1782435018038050816
author Sala, Valentina
Gatti, Stefano
Gallo, Simona
Medico, Enzo
Cantarella, Daniela
Cimino, James
Ponzetto, Antonio
Crepaldi, Tiziana
author_facet Sala, Valentina
Gatti, Stefano
Gallo, Simona
Medico, Enzo
Cantarella, Daniela
Cimino, James
Ponzetto, Antonio
Crepaldi, Tiziana
author_sort Sala, Valentina
collection PubMed
description Among other diseases characterized by the onset of cachexia, congestive heart failure takes a place of relevance, considering the high prevalence of this pathology in most European countries and in the United States, and is undergoing a rapid increase in developing countries. Actually, only few models of cardiac cachexia exist. Difficulties in the recruitment and follow-up of clinical trials implicate that new reproducible and well-characterized animal models are pivotal in developing therapeutic strategies for cachexia. We generated a new model of cardiac cachexia: a transgenic mouse expressing Tpr-Met receptor, the activated form of c-Met receptor of hepatocyte growth factor, specifically in the heart. We showed that the cardiac-specific induction of Tpr-Met raises a cardiac hypertrophic remodelling, which progresses into concentric hypertrophy with concomitant increase in Gdf15 mRNA levels. Hypertrophy progresses to congestive heart failure with preserved ejection fraction, characterized by reduced body weight gain and food intake and skeletal muscle wasting. Prevention trial by suppressing Tpr-Met showed that loss of body weight could be prevented. Skeletal muscle wasting was also associated with altered gene expression profiling. We propose transgenic Tpr-Met mice as a new model of cardiac cachexia, which will constitute a powerful tool to understand such complex pathology and test new drugs/approaches at the preclinical level.
format Online
Article
Text
id pubmed-4889800
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-48898002016-06-13 A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart Sala, Valentina Gatti, Stefano Gallo, Simona Medico, Enzo Cantarella, Daniela Cimino, James Ponzetto, Antonio Crepaldi, Tiziana Biomed Res Int Research Article Among other diseases characterized by the onset of cachexia, congestive heart failure takes a place of relevance, considering the high prevalence of this pathology in most European countries and in the United States, and is undergoing a rapid increase in developing countries. Actually, only few models of cardiac cachexia exist. Difficulties in the recruitment and follow-up of clinical trials implicate that new reproducible and well-characterized animal models are pivotal in developing therapeutic strategies for cachexia. We generated a new model of cardiac cachexia: a transgenic mouse expressing Tpr-Met receptor, the activated form of c-Met receptor of hepatocyte growth factor, specifically in the heart. We showed that the cardiac-specific induction of Tpr-Met raises a cardiac hypertrophic remodelling, which progresses into concentric hypertrophy with concomitant increase in Gdf15 mRNA levels. Hypertrophy progresses to congestive heart failure with preserved ejection fraction, characterized by reduced body weight gain and food intake and skeletal muscle wasting. Prevention trial by suppressing Tpr-Met showed that loss of body weight could be prevented. Skeletal muscle wasting was also associated with altered gene expression profiling. We propose transgenic Tpr-Met mice as a new model of cardiac cachexia, which will constitute a powerful tool to understand such complex pathology and test new drugs/approaches at the preclinical level. Hindawi Publishing Corporation 2016 2016-05-19 /pmc/articles/PMC4889800/ /pubmed/27298830 http://dx.doi.org/10.1155/2016/9549036 Text en Copyright © 2016 Valentina Sala et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Sala, Valentina
Gatti, Stefano
Gallo, Simona
Medico, Enzo
Cantarella, Daniela
Cimino, James
Ponzetto, Antonio
Crepaldi, Tiziana
A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart
title A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart
title_full A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart
title_fullStr A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart
title_full_unstemmed A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart
title_short A New Transgenic Mouse Model of Heart Failure and Cardiac Cachexia Raised by Sustained Activation of Met Tyrosine Kinase in the Heart
title_sort new transgenic mouse model of heart failure and cardiac cachexia raised by sustained activation of met tyrosine kinase in the heart
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889800/
https://www.ncbi.nlm.nih.gov/pubmed/27298830
http://dx.doi.org/10.1155/2016/9549036
work_keys_str_mv AT salavalentina anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT gattistefano anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT gallosimona anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT medicoenzo anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT cantarelladaniela anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT ciminojames anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT ponzettoantonio anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT crepalditiziana anewtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT salavalentina newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT gattistefano newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT gallosimona newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT medicoenzo newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT cantarelladaniela newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT ciminojames newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT ponzettoantonio newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart
AT crepalditiziana newtransgenicmousemodelofheartfailureandcardiaccachexiaraisedbysustainedactivationofmettyrosinekinaseintheheart