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Metformin modifies glutamine metabolism in an in vitro and in vivo model of hepatic encephalopathy.

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2018

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Gil-GÓmez, Antonio
Gómez-Sotelo, Ana Isabel
Ranchal, Isidora
Rojas, Ángela
García-Valdecasas, Marta
Muñoz-Hernández, Rocío
Gallego-Durán, Rocío
Ampuero, Javier
Romero Gómez, Manuel

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to analyze the effect of metformin on ammonia production derived from glutamine metabolism in vitro and in vivo. twenty male Wistar rats were studied for 28 days after a porto-caval anastomosis (n = 16) or a sham operation (n = 4). Porto-caval shunted animals were randomized into two groups (n = 8) and either received 30 mg/kg/day of metformin for two weeks or were control animals. Plasma ammonia concentration, Gls gene expression and K-type glutaminase activity were measured in the small intestine, muscle and kidney. Furthermore, Caco2 were grown in different culture media containing glucose/glutamine as the main carbon source and exposed to different concentrations of the drug. The expression of genes implicated in glutamine metabolism were analyzed. metformin was associated with a significant inhibition of glutaminase activity levels in the small intestine of porto-caval shunted rats (0.277 ± 0.07 IU/mg vs 0.142 ± 0.04 IU/mg) and a significant decrease in plasma ammonia (204.3 ± 24.4 µg/dl vs 129.6 ± 16.1 µg/dl). Glucose withdrawal induced the expression of the glutamine transporter SLC1A5 (2.54 ± 0.33 fold change; p metformin regulates ammonia homeostasis by modulating glutamine metabolism in the enterocyte, exerting an indirect control of both the uptake and degradation of glutamine. This entails a reduction in the production of metabolites and energy through this pathway and indirectly causes a decrease in ammonia production that could be related to a decreased risk of HE development.

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Ammonia
Animals
Caco-2 Cells
Child, Preschool
Glutaminase
Glutamine
Hepatic Encephalopathy
Humans
Hypoglycemic Agents
Male
Metformin
Rats
Rats, Wistar

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