Resveratrol and Quercetin Administration Improves Antioxidant DEFENSES and reduces Fatty Liver in Metabolic Syndrome Rats.
María Esther Rubio-RuizVerónica Guarner-LansAgustina Cano-MartínezEulises Díaz-DíazLinaloe Manzano-PechAnel Gamas-MagañaVicente Castrejón-TellezConcepción Tapia-CortinaIsrael Pérez-TorresPublished in: Molecules (Basel, Switzerland) (2019)
Mixtures of resveratrol (RSV) + quercetin (QRC) have antioxidant properties that probably impact on fatty liver in metabolic syndrome (MS) individuals. Here, we study the effects of a mixture of RSV + QRC on oxidative stress (OS) and fatty liver in a rat model of MS. Weanling male Wistar rats were separated into four groups (n = 8): MS rats with 30% sucrose in drinking water plus RSV + QRC (50 and 0.95 mg/kg/day, respectively), MS rats without treatment, control rats (C), and C rats plus RSV + QRC. MS rats had increased systolic blood pressure, triglycerides, insulin levels, insulin resistance index homeostasis model (HOMA), adiponectin, and leptin. The RSV + QRC mixture compensated these variables to C values (p < 0.01) in MS rats. Lipid peroxidation and carbonylation were increased in MS. Total antioxidant capacity and glutathione (GSH) were decreased in MS and compensated in MS plus RVS + QRC rats. Catalase, superoxide dismutase isoforms, peroxidases, glutathione-S-transferase, glutathione reductase, and the expression of Nrf2 were decreased in MS and reversed in MS plus RVS + QRC rats (p < 0.01). In conclusion, the mixture of RSV + QRC has benefic effects on OS in fatty liver in the MS rats through the improvement of the antioxidant capacity and by the over-expression of the master factor Nrf2, which increases the antioxidant enzymes and GSH recycling.
Keyphrases
- mass spectrometry
- ms ms
- multiple sclerosis
- oxidative stress
- metabolic syndrome
- blood pressure
- insulin resistance
- drinking water
- type diabetes
- poor prognosis
- heart failure
- respiratory tract
- left ventricular
- cardiovascular disease
- fatty acid
- nitric oxide
- dna damage
- weight loss
- long non coding rna
- uric acid
- polycystic ovary syndrome
- heat stress
- smoking cessation