Cargando…

A new murine model of stress-induced complex atherosclerotic lesions

The primary purpose of this investigation was to determine whether ApoE(−/−) mice, when subjected to chronic stress, exhibit lesions characteristic of human vulnerable plaque and, if so, to determine the time course of such changes. We found that the lesions were remarkably similar to human vulnerab...

Descripción completa

Detalles Bibliográficos
Autores principales: Najafi, Amir H., Aghili, Nima, Tilan, Justin U., Andrews, James A., Peng, XinZhi, Lassance-Soares, Roberta M., Sood, Subeena, Alderman, Lee O., Abe, Ken, Li, Lijun, Kolodgie, Frank D., Virmani, Renu, Zukowska, Zofia, Epstein, Stephen E., Burnett, Mary Susan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Limited 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3597015/
https://www.ncbi.nlm.nih.gov/pubmed/23324329
http://dx.doi.org/10.1242/dmm.009977
_version_ 1782262588032155648
author Najafi, Amir H.
Aghili, Nima
Tilan, Justin U.
Andrews, James A.
Peng, XinZhi
Lassance-Soares, Roberta M.
Sood, Subeena
Alderman, Lee O.
Abe, Ken
Li, Lijun
Kolodgie, Frank D.
Virmani, Renu
Zukowska, Zofia
Epstein, Stephen E.
Burnett, Mary Susan
author_facet Najafi, Amir H.
Aghili, Nima
Tilan, Justin U.
Andrews, James A.
Peng, XinZhi
Lassance-Soares, Roberta M.
Sood, Subeena
Alderman, Lee O.
Abe, Ken
Li, Lijun
Kolodgie, Frank D.
Virmani, Renu
Zukowska, Zofia
Epstein, Stephen E.
Burnett, Mary Susan
author_sort Najafi, Amir H.
collection PubMed
description The primary purpose of this investigation was to determine whether ApoE(−/−) mice, when subjected to chronic stress, exhibit lesions characteristic of human vulnerable plaque and, if so, to determine the time course of such changes. We found that the lesions were remarkably similar to human vulnerable plaque, and that the time course of lesion progression raised interesting insights into the process of plaque development. Lard-fed mixed-background ApoE(−/−) mice exposed to chronic stress develop lesions with large necrotic core, thin fibrous cap and a high degree of inflammation. Neovascularization and intraplaque hemorrhage are observed in over 80% of stressed animals at 20 weeks of age. Previously described models report a prevalence of only 13% for neovascularization observed at a much later time point, between 36 and 60 weeks of age. Thus, our new stress-induced model of advanced atherosclerotic plaque provides an improvement over what is currently available. This model offers a tool to further investigate progression of plaque phenotype to a more vulnerable phenotype in humans. Our findings also suggest a possible use of this stress-induced model to determine whether therapeutic interventions have effects not only on plaque burden, but also, and importantly, on plaque vulnerability.
format Online
Article
Text
id pubmed-3597015
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher The Company of Biologists Limited
record_format MEDLINE/PubMed
spelling pubmed-35970152013-06-19 A new murine model of stress-induced complex atherosclerotic lesions Najafi, Amir H. Aghili, Nima Tilan, Justin U. Andrews, James A. Peng, XinZhi Lassance-Soares, Roberta M. Sood, Subeena Alderman, Lee O. Abe, Ken Li, Lijun Kolodgie, Frank D. Virmani, Renu Zukowska, Zofia Epstein, Stephen E. Burnett, Mary Susan Dis Model Mech Research Article The primary purpose of this investigation was to determine whether ApoE(−/−) mice, when subjected to chronic stress, exhibit lesions characteristic of human vulnerable plaque and, if so, to determine the time course of such changes. We found that the lesions were remarkably similar to human vulnerable plaque, and that the time course of lesion progression raised interesting insights into the process of plaque development. Lard-fed mixed-background ApoE(−/−) mice exposed to chronic stress develop lesions with large necrotic core, thin fibrous cap and a high degree of inflammation. Neovascularization and intraplaque hemorrhage are observed in over 80% of stressed animals at 20 weeks of age. Previously described models report a prevalence of only 13% for neovascularization observed at a much later time point, between 36 and 60 weeks of age. Thus, our new stress-induced model of advanced atherosclerotic plaque provides an improvement over what is currently available. This model offers a tool to further investigate progression of plaque phenotype to a more vulnerable phenotype in humans. Our findings also suggest a possible use of this stress-induced model to determine whether therapeutic interventions have effects not only on plaque burden, but also, and importantly, on plaque vulnerability. The Company of Biologists Limited 2013-03 2013-01-11 /pmc/articles/PMC3597015/ /pubmed/23324329 http://dx.doi.org/10.1242/dmm.009977 Text en © 2013. Published by The Company of Biologists Ltd This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial Share Alike License (http://creativecommons.org/licenses/by-nc-sa/3.0), which permits unrestricted non-commercial use, distribution and reproduction in any medium provided that the original work is properly cited and all further distributions of the work or adaptation are subject to the same Creative Commons License terms.
spellingShingle Research Article
Najafi, Amir H.
Aghili, Nima
Tilan, Justin U.
Andrews, James A.
Peng, XinZhi
Lassance-Soares, Roberta M.
Sood, Subeena
Alderman, Lee O.
Abe, Ken
Li, Lijun
Kolodgie, Frank D.
Virmani, Renu
Zukowska, Zofia
Epstein, Stephen E.
Burnett, Mary Susan
A new murine model of stress-induced complex atherosclerotic lesions
title A new murine model of stress-induced complex atherosclerotic lesions
title_full A new murine model of stress-induced complex atherosclerotic lesions
title_fullStr A new murine model of stress-induced complex atherosclerotic lesions
title_full_unstemmed A new murine model of stress-induced complex atherosclerotic lesions
title_short A new murine model of stress-induced complex atherosclerotic lesions
title_sort new murine model of stress-induced complex atherosclerotic lesions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3597015/
https://www.ncbi.nlm.nih.gov/pubmed/23324329
http://dx.doi.org/10.1242/dmm.009977
work_keys_str_mv AT najafiamirh anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT aghilinima anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT tilanjustinu anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT andrewsjamesa anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT pengxinzhi anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT lassancesoaresrobertam anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT soodsubeena anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT aldermanleeo anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT abeken anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT lilijun anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT kolodgiefrankd anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT virmanirenu anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT zukowskazofia anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT epsteinstephene anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT burnettmarysusan anewmurinemodelofstressinducedcomplexatheroscleroticlesions
AT najafiamirh newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT aghilinima newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT tilanjustinu newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT andrewsjamesa newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT pengxinzhi newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT lassancesoaresrobertam newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT soodsubeena newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT aldermanleeo newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT abeken newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT lilijun newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT kolodgiefrankd newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT virmanirenu newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT zukowskazofia newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT epsteinstephene newmurinemodelofstressinducedcomplexatheroscleroticlesions
AT burnettmarysusan newmurinemodelofstressinducedcomplexatheroscleroticlesions