Analysis of angiotensin II- and ACTH-driven mineralocorticoid functions and omental adiposity in a non-genetic, hyperadipose female rat phenotype
| Data(s) |
2010
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| Resumo |
The hypothalamic damage induced by neonatal treatment with monosodium l-glutamate (MSG) induces several metabolic abnormalities, resulting in a rat hyperleptinemic-hyperadipose phenotype. This study was conducted to explore the impact of the neonatal MSG treatment, in the adult (120 days old) female rat on: (a) the in vivo and in vitro mineralocorticoid responses to ACTH and angiotensin II (AII); (b) the effect of leptin on ACTH- and AII-stimulated mineralocorticoid secretions by isolated corticoadrenal cells; and (c) abdominal adiposity characteristics. Our data indicate that, compared with age-matched controls, MSG rats displayed: (1) enhanced and reduced mineralocorticoid responses to ACTH and AII treatments, respectively, effects observed in both in vivo and in vitro conditions; (2) adrenal refractoriness to the inhibitory effect of exogenous leptin on ACTH-stimulated aldosterone output by isolated adrenocortical cells; and (3) distorted omental adiposity morphology and function. This study supports that the adult hyperleptinemic MSG female rat is characterized by enhanced ACTH-driven mineralocorticoid function, impaired adrenal leptin sensitivity, and disrupted abdominal adiposity function. MSG rats could counteract undesirable effects of glucocorticoid excess, by developing a reduced AII-driven mineralocorticoid function. Thus, chronic hyperleptinemia could play a protective role against ACTH-mediated allostatic loads in the adrenal leptin resistant, MSG female rat phenotype. |
| Identificador |
http://serval.unil.ch/?id=serval:BIB_32B18B1898B7 isbn:0969-711X ; 1559-0100[electronic] isiid:000277199600019 doi:10.1007/s12020-010-9335-3 |
| Idioma(s) |
en |
| Fonte |
Endocrine, vol. 37, no. 3, pp. 497-506 |
| Palavras-Chave | #Hypothalamic obesity; Hypophagia; Mineralocorticoid; Omental adiposity; Glucocorticoid; Leptin; Insulin; Monosodium Glutamate Treatment; Hypothalamic Denervation; Arcuate Nucleus; Induced Obesity; Adrenal-Gland; Neonatal-Rats; Leptin; Pituitary; Tissue; Expression |
| Tipo |
info:eu-repo/semantics/article article |