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Temporal effect of fructose supplementation at different concentrations on hepatic metabolism of Wistar rats
Author(s) -
Luana Cristina Faria Carvalho,
Bruna Vidal Dias,
Sttefany Viana Gomes,
Cláudia Martins Carneiro,
Daniela Caldeira Costa
Publication year - 2021
Publication title -
nutrición hospitalaria
Language(s) - English
Resource type - Journals
eISSN - 1699-5198
pISSN - 0212-1611
DOI - 10.20960/nh.03691
Subject(s) - fructose , medicine , chemistry , endocrinology , tbars , steatosis , nefa , creatinine , fatty liver , lipid metabolism , oxidative stress , lipid peroxidation , biochemistry , biology , fatty acid , disease
Introduction: in the last few years important changes have occurred in nutritional patterns. There has been an increase in the consumption of simple carbohydrates such as fructose, which has been associated with numerous metabolic disorders, including hepatic steatosis. Materials and methods: we sought to evaluate the impact of fructose consumption, as diluted in water at different concentrations, for two time periods, on the metabolic parameters of Wistar rats using ANOVA. Results: our data indicate that both time and fructose concentration promote variations in animal body mass, and in food, water, and caloric intake. The time variable influenced the modulation of biochemical parameters such as serum concentrations of glucose and total cholesterol. Both fructose concentration and time of exposure influenced the concentrations of serum triglycerides, creatinine, AST, TNF, and IL-6. When evaluating redox status and oxidative damage markers, we observed that fructose concentration and exposure time had an effect on total glutathione levels, which decreased with an increase in concentration and time. For superoxide dismutase, we evaluated the effects of time and interaction. A significant interaction was observed for TBARS. For carbonylated proteins, exposure time was a fundamental factor in generating an effect. Conclusions: we demonstrated that fructose modulates the parameters of triglycerides and total liver cholesterol, and that time influences the number of hepatocytes. Our data suggest that fructose concentration, exposure time, and an interaction between these two parameters have a significant effect on the metabolic parameters responsible for the development of non-alcoholic fatty liver disease.

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