Cargando…

Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development

OBJECTIVE: A genomic region near the CDKN2A locus, encoding p16(INK4a), has been associated to type 2 diabetes and atherosclerotic vascular disease, conditions in which inflammation plays an important role. Recently, we found that deficiency of p16(INK4a) results in decreased inflammatory signaling...

Descripción completa

Detalles Bibliográficos
Autores principales: Wouters, Kristiaan, Cudejko, Céline, Gijbels, Marion J. J., Fuentes, Lucia, Bantubungi, Kadiombo, Vanhoutte, Jonathan, Dièvart, Rebecca, Paquet, Charlotte, Bouchaert, Emmanuel, Hannou, Sarah Anissa, Gizard, Florence, Tailleux, Anne, de Winther, Menno P. J., Staels, Bart, Paumelle, Réjane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3293804/
https://www.ncbi.nlm.nih.gov/pubmed/22403661
http://dx.doi.org/10.1371/journal.pone.0032440
_version_ 1782225427702480896
author Wouters, Kristiaan
Cudejko, Céline
Gijbels, Marion J. J.
Fuentes, Lucia
Bantubungi, Kadiombo
Vanhoutte, Jonathan
Dièvart, Rebecca
Paquet, Charlotte
Bouchaert, Emmanuel
Hannou, Sarah Anissa
Gizard, Florence
Tailleux, Anne
de Winther, Menno P. J.
Staels, Bart
Paumelle, Réjane
author_facet Wouters, Kristiaan
Cudejko, Céline
Gijbels, Marion J. J.
Fuentes, Lucia
Bantubungi, Kadiombo
Vanhoutte, Jonathan
Dièvart, Rebecca
Paquet, Charlotte
Bouchaert, Emmanuel
Hannou, Sarah Anissa
Gizard, Florence
Tailleux, Anne
de Winther, Menno P. J.
Staels, Bart
Paumelle, Réjane
author_sort Wouters, Kristiaan
collection PubMed
description OBJECTIVE: A genomic region near the CDKN2A locus, encoding p16(INK4a), has been associated to type 2 diabetes and atherosclerotic vascular disease, conditions in which inflammation plays an important role. Recently, we found that deficiency of p16(INK4a) results in decreased inflammatory signaling in murine macrophages and that p16(INK4a) influences the phenotype of human adipose tissue macrophages. Therefore, we investigated the influence of immune cell p16(INK4a) on glucose tolerance and atherosclerosis in mice. METHODS AND RESULTS: Bone marrow p16(INK4a)-deficiency in C57Bl6 mice did not influence high fat diet-induced obesity nor plasma glucose and lipid levels. Glucose tolerance tests showed no alterations in high fat diet-induced glucose intolerance. While bone marrow p16(INK4a)-deficiency did not affect the gene expression profile of adipose tissue, hepatic expression of the alternative markers Chi3l3, Mgl2 and IL10 was increased and the induction of pro-inflammatory Nos2 was restrained on the high fat diet. Bone marrow p16(INK4a)-deficiency in low density lipoprotein receptor-deficient mice did not affect western diet-induced atherosclerotic plaque size or morphology. In line, plasma lipid levels remained unaffected and p16(INK4a)-deficient macrophages displayed equal cholesterol uptake and efflux compared to wild type macrophages. CONCLUSION: Bone marrow p16(INK4a)-deficiency does not affect plasma lipids, obesity, glucose tolerance or atherosclerosis in mice.
format Online
Article
Text
id pubmed-3293804
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32938042012-03-08 Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development Wouters, Kristiaan Cudejko, Céline Gijbels, Marion J. J. Fuentes, Lucia Bantubungi, Kadiombo Vanhoutte, Jonathan Dièvart, Rebecca Paquet, Charlotte Bouchaert, Emmanuel Hannou, Sarah Anissa Gizard, Florence Tailleux, Anne de Winther, Menno P. J. Staels, Bart Paumelle, Réjane PLoS One Research Article OBJECTIVE: A genomic region near the CDKN2A locus, encoding p16(INK4a), has been associated to type 2 diabetes and atherosclerotic vascular disease, conditions in which inflammation plays an important role. Recently, we found that deficiency of p16(INK4a) results in decreased inflammatory signaling in murine macrophages and that p16(INK4a) influences the phenotype of human adipose tissue macrophages. Therefore, we investigated the influence of immune cell p16(INK4a) on glucose tolerance and atherosclerosis in mice. METHODS AND RESULTS: Bone marrow p16(INK4a)-deficiency in C57Bl6 mice did not influence high fat diet-induced obesity nor plasma glucose and lipid levels. Glucose tolerance tests showed no alterations in high fat diet-induced glucose intolerance. While bone marrow p16(INK4a)-deficiency did not affect the gene expression profile of adipose tissue, hepatic expression of the alternative markers Chi3l3, Mgl2 and IL10 was increased and the induction of pro-inflammatory Nos2 was restrained on the high fat diet. Bone marrow p16(INK4a)-deficiency in low density lipoprotein receptor-deficient mice did not affect western diet-induced atherosclerotic plaque size or morphology. In line, plasma lipid levels remained unaffected and p16(INK4a)-deficient macrophages displayed equal cholesterol uptake and efflux compared to wild type macrophages. CONCLUSION: Bone marrow p16(INK4a)-deficiency does not affect plasma lipids, obesity, glucose tolerance or atherosclerosis in mice. Public Library of Science 2012-03-05 /pmc/articles/PMC3293804/ /pubmed/22403661 http://dx.doi.org/10.1371/journal.pone.0032440 Text en Wouters 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
Wouters, Kristiaan
Cudejko, Céline
Gijbels, Marion J. J.
Fuentes, Lucia
Bantubungi, Kadiombo
Vanhoutte, Jonathan
Dièvart, Rebecca
Paquet, Charlotte
Bouchaert, Emmanuel
Hannou, Sarah Anissa
Gizard, Florence
Tailleux, Anne
de Winther, Menno P. J.
Staels, Bart
Paumelle, Réjane
Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development
title Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development
title_full Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development
title_fullStr Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development
title_full_unstemmed Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development
title_short Bone Marrow p16(INK4a)-Deficiency Does Not Modulate Obesity, Glucose Homeostasis or Atherosclerosis Development
title_sort bone marrow p16(ink4a)-deficiency does not modulate obesity, glucose homeostasis or atherosclerosis development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3293804/
https://www.ncbi.nlm.nih.gov/pubmed/22403661
http://dx.doi.org/10.1371/journal.pone.0032440
work_keys_str_mv AT wouterskristiaan bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT cudejkoceline bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT gijbelsmarionjj bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT fuenteslucia bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT bantubungikadiombo bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT vanhouttejonathan bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT dievartrebecca bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT paquetcharlotte bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT bouchaertemmanuel bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT hannousarahanissa bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT gizardflorence bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT tailleuxanne bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT dewinthermennopj bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT staelsbart bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment
AT paumellerejane bonemarrowp16ink4adeficiencydoesnotmodulateobesityglucosehomeostasisoratherosclerosisdevelopment