Literature DB >> 14671185

Adiponectin gene expression in subcutaneous adipose tissue of obese women in response to short-term very low calorie diet and refeeding.

Yong-Ming Liu1, Jean-Marc Lacorte, Nathalie Viguerie, Christine Poitou, Véronique Pelloux, Bernard Guy-Grand, Christiane Coussieu, Dominique Langin, Arnaud Basdevant, Karine Clément.   

Abstract

Adiponectin is an adipocyte-derived protein suggested to be involved in energy homeostasis and in lipid and glucose metabolism. Little is known regarding the consequence of acute changes in energy balance on adiponectin mRNA expression in human adipose tissue. Using a real-time RT-PCR assay, we investigated the effects of 2-d very low calorie diet (VLCD) and subsequent refeeding on adiponectin mRNA expression in sc adipose tissue of morbidly obese women. Basal adiponectin mRNA abundance of the obese women showed a wide distribution (2.6-14.3 mRNA/18S rRNA; coefficient of variation, 51.2%) and was significantly lower than that of lean controls (P < 0.001). In the obese group, the VLCD caused a 33% rise (P < 0.01) in the average level of mRNA, whereas refeeding caused a 32.8% fall (P < 0.05). In contrast, the change in leptin mRNA expression with either VLCD or refeeding was not statistically significant. The obese subjects who showed an acute adiponectin mRNA response to the changes in energy intake had a higher basal level of adiponectin mRNA (P = 0.02) and a borderline-significantly lower body mass index compared with the subjects who showed no or weak adiponectin mRNA response. Insulin sensitivity of the responder subgroup significantly increased by 89% (P = 0.008) after the VLCD, whereas insulin sensitivity of the nonresponder subgroup only increased by 24% (P = 1.56). This study indicates that adiponectin mRNA in sc adipose tissue can acutely respond to short-term energy changes in some obese subjects. Both the levels of adiposity and insulin sensitivity may contribute to the variation in adiponectin gene expression in response to acute energy changes.

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Year:  2003        PMID: 14671185     DOI: 10.1210/jc.2003-030886

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  18 in total

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Authors:  Faidon Magkos; Elisa Fabbrini; Bruce W Patterson; J Christopher Eagon; Samuel Klein
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Authors:  Jiegen Chen; Anna Spagnoli; Alfonso Torquati
Journal:  Obes Surg       Date:  2012-03       Impact factor: 4.129

Review 3.  Adiponectin and energy homeostasis.

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Review 4.  Adiponectin: Probe of the molecular paradigm associating diabetes and obesity.

Authors:  Kakali Ghoshal; Maitree Bhattacharyya
Journal:  World J Diabetes       Date:  2015-02-15

5.  Adiponectin expression and metabolic markers in obesity and Type 2 diabetes.

Authors:  S Kouidhi; S Jarboui; R Marrakchi; M-S Clerget Froidevaux; I Seugnet; H Abid; F Bchir; M Brahem; B Demeneix; H Guissouma; A Benammar Elgaaied
Journal:  J Endocrinol Invest       Date:  2010-07-22       Impact factor: 4.256

6.  Two-year changes in circulating adiponectin, ectopic fat distribution and body composition in response to weight-loss diets: the POUNDS Lost Trial.

Authors:  W Ma; T Huang; M Wang; Y Zheng; T Wang; Y Heianza; D Sun; S R Smith; G A Bray; F M Sacks; L Qi
Journal:  Int J Obes (Lond)       Date:  2016-07-27       Impact factor: 5.095

7.  Gene expression changes in adipose tissue with diet- and/or exercise-induced weight loss.

Authors:  Kristin L Campbell; Karen E Foster-Schubert; Karen W Makar; Mario Kratz; Derek Hagman; Ellen A Schur; Nina Habermann; Marc Horton; Clare Abbenhardt; Ling-Yu Kuan; Liren Xiao; Jerry Davison; Martin Morgan; Ching-Yun Wang; Catherine Duggan; Anne McTiernan; Cornelia M Ulrich
Journal:  Cancer Prev Res (Phila)       Date:  2013-01-22

8.  Adiponectin concentration and insulin indicators following overfeeding in identical twins.

Authors:  O Ukkola; M Terán-García; A Tremblay; J-P Després; C Bouchard
Journal:  J Endocrinol Invest       Date:  2008-02       Impact factor: 4.256

9.  Hypoadiponectinaemia and high risk of type 2 diabetes are associated with adiponectin-encoding (ACDC) gene promoter variants in morbid obesity: evidence for a role of ACDC in diabesity.

Authors:  F Vasseur; N Helbecque; S Lobbens; V Vasseur-Delannoy; C Dina; K Clément; P Boutin; T Kadowaki; P E Scherer; P Froguel
Journal:  Diabetologia       Date:  2005-04-14       Impact factor: 10.122

10.  The effects of intermittent or continuous energy restriction on weight loss and metabolic disease risk markers: a randomized trial in young overweight women.

Authors:  M N Harvie; M Pegington; M P Mattson; J Frystyk; B Dillon; G Evans; J Cuzick; S A Jebb; B Martin; R G Cutler; T G Son; S Maudsley; O D Carlson; J M Egan; A Flyvbjerg; A Howell
Journal:  Int J Obes (Lond)       Date:  2010-10-05       Impact factor: 5.095

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