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Endocrinology ; 156(10): 3528-37, 2015 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-26214037

RESUMO

Low birth weight and rapid postnatal growth increases the risk of developing insulin resistance and type 2 diabetes in later life. However, underlying mechanisms and potential intervention strategies are poorly defined. Here we demonstrate that male Wistar rats exposed to a low-protein diet in utero that had a low birth weight but then underwent postnatal catch-up growth (recuperated offspring) had reductions in the insulin signaling proteins p110-ß (13% ± 6% of controls [P < .001]) and insulin receptor substrate-1 (39% ± 10% of controls [P < .05]) in adipose tissue. These changes were not accompanied by any change in expression of the corresponding mRNAs, suggesting posttranscriptional regulation. Recuperated animals displayed evidence of a proinflammatory phenotype of their adipose tissue with increased IL-6 (139% ± 8% [P < .05]) and IL1-ß (154% ± 16% [P < .05]) that may contribute to the insulin signaling protein dysregulation. Postweaning dietary supplementation of recuperated animals with coenzyme Q (CoQ10) (1 mg/kg of body weight per day) prevented the programmed reduction in insulin receptor substrate-1 and p110-ß and the programmed increased in IL-6. These findings suggest that postweaning CoQ10 supplementation has antiinflammatory properties and can prevent programmed changes in insulin-signaling protein expression. We conclude that CoQ10 supplementation represents an attractive intervention strategy to prevent the development of insulin resistance that results from suboptimal in utero nutrition.


Assuntos
Inflamação/metabolismo , Resistência à Insulina , Insulina/metabolismo , Fenômenos Fisiológicos da Nutrição Materna , Transdução de Sinais , Ubiquinona/análogos & derivados , Tecido Adiposo/metabolismo , Animais , Feminino , Perfilação da Expressão Gênica , Transtornos do Crescimento/fisiopatologia , Insulina/sangue , Lipídeos/sangue , Masculino , Exposição Materna , Camundongos , MicroRNAs/metabolismo , Estresse Oxidativo , Fenótipo , Ratos , Ratos Wistar , Ubiquinona/fisiologia
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