4 resultados para Transtornos do Metabolismo de Glucose

em Biblioteca Digital da Produção Intelectual da Universidade de São Paulo


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A obesidade vem aumentando significativamente em todo o mundo, e os fatores ambientais, como o consumo excessivo de alimentos e o sedentarismo, são os principais fatores relacionados com a gênese dessa doença. Em animais de laboratório, a gênese da obesidade está relacionada, em sua maioria, com mutações genéticas, porém esse modelo é muito distante do encontrado nos humanos. A adoção de dietas hipercalóricas ou hiperlipídicas vem sendo utilizada como modelo de indução da obesidade em animais, devido à sua semelhança com a gênese e às respostas metabólicas decorrentes da obesidade em humanos. Assim, o objetivo dessa revisão de literatura é apresentar os diferentes tipos de dietas utilizadas para a indução da obesidade em roedores, as modificações metabólicas induzidas e identificar alguns cuidados que devem ser tomados para que esse modelo seja eficaz para o estudo das complicações relacionadas com a obesidade. Realizou-se busca na base de dados PubMed utilizando as expressões: 1-"hipercaloric diet" AND "rodent", 2- "hiperlipidic diet" AND "rodent", sendo selecionadas aquelas consideradas mais relevantes a partir dos critérios: data de publicação (1995-2011), a utilização de animais wild type, a descrição detalhada sobre a dieta utilizada e a análise de parâmetros bioquímicos e vasculares de interesse. Foram inseridas referências para introduzir assuntos como o aumento da prevalência da obesidade e questões relacionadas com a gênese da obesidade em humanos. Podemos considerar eficiente o modelo de obesidade induzida por dieta em roedores quando o objetivo é o estudo da fisiopatologia das complicações metabólicas e vasculares associadas à obesidade.

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The purpose of this study was to analyze the influence of lactation and dry period in the constituents of lipid and glucose metabolism of buffaloes. One hundred forty-seven samples of serum and plasma were collected between November 2009 and July 2010, from properties raising Murrah, Mediterranean and crossbred buffaloes, located in the State of Sao Paulo, Brazil. Biochemical analysis was obtained by determining the contents of serum cholesterol, triglycerides, beta-hydroxybutyrate (β-HBO), non-esterified fatty acids (NEFA) and plasma glucose. Values for arithmetic mean and standard error mean were calculated using the SAS procedure, version 9.2. Tests for normality of residuals and homogeneity of variances were performed using the SAS Guide Data Analysis. Data were analyzed by ANOVA using the SAS procedure Glimmix. The group information (Lactation), Farm and Age were used in the statistical models. Means of groups were compared using Least Square Means (LSMeans) of SAS, where significant difference was observed at P ≤ 0.05. It was possible to conclude that buffaloes during peak lactation need to metabolize body reserves to supplement the lower amounts of bloodstream lipids, when they remain in negative energy balance. In the dry period, there were significant changes in the lipid profile, characterized by decrease of nutritional requirements, with consequent improvement in the general conditions of the animals.

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Considering the similarity between structural, hemodynamic, and functional changes of obesity-related renal disease and diabetic nephropathy, we hypothesized that renal glucose transporter changes occur in obesity as in diabetes. The aim of the work was to evaluate GLUT1 and GLUT2 in kidneys of an animal model of metabolic syndrome. Neonate spontaneously hypertensive rats (SHR), n=15/group, were treated with monosodium glutamate (5 mg/g) (MetS) for 9 days and compared with saline-treated Wistar-Kyoto (C) and SHR (H) rats. Lee index, systolic arterial pressure (SAP), glycemia, insulin resistance, triglycerides, and HDL cholesterol were evaluated at 3 and 6 months. Medullar GLUT1 and cortical GLUT2 were analyzed by Western blot. MetS vs. C and H rats had the highest Lee index (p<0.001) and insulin resistance (3-months C: 4.3±0.7, H: 3.9±0.9, MetS: 2.7±0.6; 6-months C: 4.2±0.6, H: 3.8±0.5, MetS: 2.4±0.6% • min−1, p<0.001), similar glycemia, and the lowest HDL-cholesterol at 6-months (p<0.001). In the MetS and H rats, SAP was higher vs. C at 3-months (p<0.001) and 6-months (C: 151±15, H: 190±11, MetS: 185±13 mm Hg, p<0.001) of age. GLUT1 was ̴ 13× lower (p<0.001) at 3-months, reestablishing its content at 6-months in MetS group, while GLUT2 was 2× higher (p<0.001) in this group at 6-months of age. Renal GLUT1 and GLUT2 are modulated in kidney of rats with metabolic syndrome, where obesity, insulin resistance and hypertension coexist, despite normoglycemia. Like in diabetes, cortical GLUT2 overexpression may contribute to the development of kidney disease