Literature DB >> 22575275

Early induction of a brown-like phenotype by rosiglitazone in the epicardial adipose tissue of fatty Zucker rats.

Emilie Distel1, Graziella Penot, Thomas Cadoudal, Irène Balguy, Sylvie Durant, Chantal Benelli.   

Abstract

The epicardial adipose tissue (EAT) is "hypertrophied" in the obese. Thiazolidinediones are anti-diabetic, hypolipidemic drugs and are selective agonists for the gamma isoform of peroxisome proliferator-activated receptor (PPARγ). We evaluated the short-term effects of the prototype rosiglitazone (RSG, 5 mg kg(-1) day(-1) for 4 days) on the expression of the genes and proteins (by real-time PCR and Western blot) involved in fatty acid (FA) metabolism in EAT of the obese fatty Zucker rat and compared the levels of expression with those in retroperitoneal adipose tissue (RAT). The glyceroneogenic flux leading to fatty acid re-esterification was assessed by the incorporation of 14C from [1-14C]-pyruvate into neutral lipids. RSG upregulated the mRNA for phosphoenolpyruvate carboxykinase, pyruvate dehydrogenase kinase 4, glycerol kinase, adipocyte lipid binding protein, adipose tissue triglyceride lipase and lipoprotein lipase in both RAT and EAT with a resulting increase in glyceroneogenesis that, however, was more pronounced in EAT than in RAT. Under RSG, fatty acid output was decreased in both tissues but unexpectedly less so in EAT than in RAT. RSG also induced the expression of the key genes for fatty acid oxidation [carnitinepalmitoyl transferase-1, medium chain acyl dehydrogenase and very long chain acyl dehydrogenase (VLCAD)]in EAT and RAT with a resulting significant rise of  the expression of VLCAD protein. In addition, the expression of the genes encoding proteins involved in mitochondrial processing and density PPARγ coactivator 1 alpha (PGC-1α), NADH dehydrogenase 1 and cytochrome oxidase (COX4) were increased by RSG treatment only in EAT, with a resulting significant up-regulation of PGC1-α and COX4 protein. This was accompanied by a rise in the expression of PR domain containing 16 and uncoupling protein 1, two brown adipose tissue-specific proteins. In conclusion, this study reveals that PPAR-γ agonist could induce a rapid browning of the EAT that probably contributes to the increase in lipid turnover.
Copyright © 2012 Elsevier Masson SAS. All rights reserved.

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Year:  2012        PMID: 22575275     DOI: 10.1016/j.biochi.2012.04.014

Source DB:  PubMed          Journal:  Biochimie        ISSN: 0300-9084            Impact factor:   4.079


  14 in total

1.  Monoterpene phenolic compound thymol promotes browning of 3T3-L1 adipocytes.

Authors:  Jae Heon Choi; Sang Woo Kim; Rina Yu; Jong Won Yun
Journal:  Eur J Nutr       Date:  2016-07-18       Impact factor: 5.614

2.  Aldehyde dehydrogenase 1 a1 regulates energy metabolism in adipocytes from different species.

Authors:  Kefeng Yang; Christopher Adin; Qiwen Shen; Ly James Lee; Lianbo Yu; Paolo Fadda; Arpad Samogyi; Kathleen Ham; Lu Xu; Chen Gilor; Ouliana Ziouzenkova
Journal:  Xenotransplantation       Date:  2017-07-17       Impact factor: 3.907

Review 3.  Epicardial adipose tissue in endocrine and metabolic diseases.

Authors:  Gianluca Iacobellis
Journal:  Endocrine       Date:  2013-11-23       Impact factor: 3.633

Review 4.  Local and systemic effects of the multifaceted epicardial adipose tissue depot.

Authors:  Gianluca Iacobellis
Journal:  Nat Rev Endocrinol       Date:  2015-04-07       Impact factor: 43.330

5.  Targeting Epicardial Fat in Obesity and Diabetes Pharmacotherapy.

Authors:  Gianluca Iacobellis; Sara Basilico; Alexis Elias Malavazos
Journal:  Handb Exp Pharmacol       Date:  2022

6.  Expression of "brown-in-white" adipocyte biomarkers shows gender differences and the influence of early dietary exposure.

Authors:  María Servera; Nora López; Francisca Serra; Andreu Palou
Journal:  Genes Nutr       Date:  2013-11-30       Impact factor: 5.523

Review 7.  Regulation of visceral and epicardial adipose tissue for preventing cardiovascular injuries associated to obesity and diabetes.

Authors:  N González; Z Moreno-Villegas; A González-Bris; J Egido; Ó Lorenzo
Journal:  Cardiovasc Diabetol       Date:  2017-04-04       Impact factor: 9.951

8.  Induction of beige-like adipocytes in 3T3-L1 cells.

Authors:  Hiroki Asano; Yohei Kanamori; Satoshi Higurashi; Takayuki Nara; Ken Kato; Tohru Matsui; Masayuki Funaba
Journal:  J Vet Med Sci       Date:  2013-09-20       Impact factor: 1.267

Review 9.  Effects of antidiabetic drugs on epicardial fat.

Authors:  Eleni Xourgia; Athanasia Papazafiropoulou; Andreas Melidonis
Journal:  World J Diabetes       Date:  2018-09-15

Review 10.  Clinical Application Potential of Small Molecules that Induce Brown Adipose Tissue Thermogenesis by Improving Fat Metabolism.

Authors:  Kang-Yun Lu; Kingsley Theras Primus Dass; Sheng-Feng Tsai; Hong-Meng Chuang; Shinn-Zong Lin; Shih-Ping Liu; Horng-Jyh Harn
Journal:  Cell Transplant       Date:  2020 Jan-Dec       Impact factor: 4.064

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