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首页> 外文期刊>Diabetes, metabolic syndrome and obesity: targets and therapy >Lycopene Improves the Metformin Effects on Glycemic Control and Decreases Biomarkers of Glycoxidative Stress in Diabetic Rats
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Lycopene Improves the Metformin Effects on Glycemic Control and Decreases Biomarkers of Glycoxidative Stress in Diabetic Rats

机译:番茄红素改善了二甲双胍对血糖控制的影响,降低糖尿病大鼠甘氨酸大鼠甘氨酸胁迫的生物标志物

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Introduction: Oxidative stress and exacerbated generation of advanced glycation end products (AGEs) participate in the onset of diabetic complications. Lycopene is a potent antioxidant; evidence accounts for its ability to mitigate diabetic disturbances, including the deleterious events of advanced glycation. Therefore, this carotenoid has emerged as a candidate to be used in combination with antidiabetic drugs, such as metformin, attempting to counteract the glycoxidative stress. This study investigated the effects of the treatments with lycopene or metformin, alone or in combination, on glycoxidative stress biomarkers and antioxidant defenses in diabetic rats. Methods: Streptozotocin-induced diabetic rats were treated for 35 days with lycopene (45 mg/kg) or metformin (250 mg/kg), alone or as mixtures in yoghurt. Plasma levels of glucose, triglycerides, cholesterol, thiobarbituric acid reactive substances and protein carbonyl groups (biomarkers of oxidative damage), fluorescent AGEs (biomarkers of advanced glycation), and paraoxonase 1 activity (antioxidant enzyme) were assessed. Changes in the hepatic and renal levels of glycoxidative damage biomarkers and the activities of antioxidant enzymes were investigated. Results: The combination of lycopene with metformin maintained the beneficial effects of the isolated treatments, improving the glucose tolerance and lipid profile, lessening biomarkers of oxidative damage, and increasing the paraoxonase 1 activity. Besides, the combined therapy caused further decreases in postprandial glycemia, plasma levels of cholesterol and AGEs, avoided lipid peroxidation (plasma, kidney), and increased antioxidant defenses, mainly the activity of superoxide dismutase (liver, kidney), indicating the maintenance of the lycopene effects. Conclusion: Lycopene combined with metformin may act synergistically in the control of postprandial glycemia, dyslipidemia and glycoxidative stress, as well as increased antioxidant defenses, arising as a promising therapeutic strategy to mitigate diabetic complications.
机译:介绍:氧化应激和加剧的先进糖糖末端产品(年龄)参与糖尿病并发症的发作。番茄红素是一种有效的抗氧化剂;证据占其减轻糖尿病紊乱的能力,包括晚期糖化的有害事件。因此,这种类胡萝卜素已成为与抗糖尿病药物(例如二甲双胍)组合使用的候选者,试图抵消甘油氧化胁迫。本研究调查了对番丙烯或二甲双胍,单独或组合的处理对糖尿病大鼠糖化胁迫生物标志物和抗氧化剂防御的影响。方法:用番茄红素(45mg / kg)或二甲双胍(250mg / kg),单独或作为酸奶混合物处理链脲佐菌素诱导的糖尿病大鼠35天。血浆水平的葡萄糖,甘油三酯,胆固醇,硫氨基脲酸反应性物质和蛋白质羰基(氧化损伤的生物标志物),评估荧光老化(糖化糖的生物标志物)和定律酶1活性(抗氧化酶)。研究了丙二醇化损伤生物标志物的肝癌和肾脏水平的变化及抗氧化酶的活性。结果:番茄红素与二甲双胍的组合保持孤立治疗的有益效果,改善葡萄糖耐量和脂质型材,减少氧化损伤的生物标志物,并增加约束酶1活性。此外,组合治疗在餐后糖血症,胆固醇和年龄的血浆水平引起,避免了脂质过氧化(血浆,肾)和抗氧化剂的血浆水平,主要是超氧化物歧化酶(肝脏,肾脏)的活性,表明维护番茄红素效应。结论:番茄红素联合二甲双胍可以协同作用,在治疗后糖尿病,血脂血症和糖氧化胁迫下,以及增加的抗氧化剂防御,作为减轻糖尿病并发症的有希望的治疗策略。

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