Literature DB >> 15347841

Leptin, thyrotropin, and thyroid hormones in obese/overweight women before and after two levels of energy deficit.

Lucyna Kozłowska1, Danuta Rosołowska-Huszcz.   

Abstract

The aim of our study was to compare serum concentration of leptin and pituitary-thyroid axis hormones in obese/overweight women before and after two levels of energy deficit with those parameters in lean women on adequate energy intake. Additionally, we attempted to elucidate if the effect of weight reduction could be related to anthropometric and hormonal parameters before treatment. Anthropometric and hormonal parameters-serum leptin, TSH, T4, fT4, T3 and leptin to fat mass (Lep/fm), T3/T4, fT4/T4, T4/TSH, fT4/TSH--were compared in two groups of women (n =18 each)--lean women (C: BMI 22.0 +/- 1.2) and overweight/obese (Ov/Ob: BMI 29.9 +/- 3.3). Ov/Ob women were subjected to weight-reducing treatment consisting of energy intake equal to 80% of calculated total energy expenditure for the first 4 wk and to 50% for subsequent 4 wk. All baseline hormone concentrations, Lep/fm, and fT4/T4 were higher in overweight/obese group. After 20% energy deficit decrease in BMI, percent body fat (fm%), leptin, T3, and TSH serum concentrations as well as in Lep/fm and T3/T4 was observed; T4/TSH increased, fT4, fT4/T4 and fT4/TSH did not change significantly. Increase in energy deficit from 20% to 50% resulted in normalization of Lep/fm, on the other hand, it provoked greater decline in thyroid hormone plasma concentration, which could hinder further mass reduction. Leptin and TSH levels were positively correlated after 50% energy deficit treatment. Changes in fm% were directly related to baseline T4/TSH, fT4/TSH, and log TSH. In conclusion, TSH serum concentration and its ratio to T4 and fT4 before weight reduction could be a good predictor of successful weight loss.

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Year:  2004        PMID: 15347841     DOI: 10.1385/ENDO:24:2:147

Source DB:  PubMed          Journal:  Endocrine        ISSN: 1355-008X            Impact factor:   3.633


  56 in total

1.  Leptin resistance is associated with hypothalamic leptin receptor mRNA and protein downregulation.

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Authors:  R Sapin; J L Schlienger; F Grunenberger; F Gasser; J Chambron
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Authors:  M Murakami; O Araki; Y Hosoi; Y Kamiya; T Morimura; T Ogiwara; H Mizuma; M Mori
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Authors:  J H Pinkney; S J Goodrick; J Katz; A B Johnson; S L Lightman; S W Coppack; V Mohamed-Ali
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8.  Effects of caloric deprivation on thyroid hormone tissue uptake and generation of low-T3 syndrome.

Authors:  J T van der Heyden; R Docter; H van Toor; J H Wilson; G Hennemann; E P Krenning
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9.  Adipose expression of tumor necrosis factor-alpha: direct role in obesity-linked insulin resistance.

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Authors:  J Gharbi-Chihi; T Facchinetti; J L Bergé-Lefranc; J Bonne; J Torresani
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Review 6.  Effect of Bariatric Surgery on Thyroid Function in Obese Patients: a Systematic Review and Meta-Analysis.

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8.  Association of beta2-adrenergic receptor and insulin receptor substrate-1 polymorphisms with obesity in a Northern Indian population.

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Review 10.  Biological mechanisms that promote weight regain following weight loss in obese humans.

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