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首页> 外文期刊>Iranian Journal of Basic Medical Sciences >Effects of citral on oxidative stress and hepatic key enzymes of glucose metabolism in streptozotocin/high-fat-diet induced diabetic dyslipidemic rats
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Effects of citral on oxidative stress and hepatic key enzymes of glucose metabolism in streptozotocin/high-fat-diet induced diabetic dyslipidemic rats

机译:柠檬族对链脲佐菌素/高脂饮食诱导糖尿病肌脂血糖大鼠葡萄糖代谢氧化应激和肝密钥酶的影响

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Objective(s): Phytochemicals such as polyphenols, alkaloids, and terpenoids, protect against the development of early stages and complications of diabetes mellitus according to various reports. The aim of this study was to measure the anti-dyslipidemic and anti-diabetic effects of Citral on high-fat-diet (HFD) and streptozotocin (STZ) induced diabetic dyslipidemic rats and to see also its effect on carbohydrate metabolic regulatory enzymes in the liver. Materials and Methods: Rats were kept on a high-fat diet for 2 weeks, then diabetes was induced by a single dose of STZ (35 mg/kg/BW, intraperitoneally), Citral was administered orally at a dose of 45 mg/kg/BW for 28 days to diabetic rats. Blood glucose, plasma insulin, and lipid profile in blood were studied. Antioxidant activities were assayed in the liver, pancreas, and adipose tissues. Carbohydrate metabolic enzymes of the liver were also studied in diabetic dyslipidemic rats. Results: The results of this study confirmed that administration of Citral significantly ( P 0.05) decreased the blood glucose level and increased plasma insulin in diabetic rats. Citral also improved oxidative markers along with anti-oxidative enzymes of the liver, adipose tissue, and pancreas in the HFD/STZ group. Citral also regulated the activity of the glucose-metabolic enzymes in the liver. The results of the present study were compared to Glibenclamide, which is a standard oral drug for lowering the blood sugar. Conclusion: Results may show that Citral possesses anti-dyslipidemic activity as well as anti-diabetic activity and also regulates the enzyme activity of glycolytic and gluconeogenic processes in the liver.
机译:目的:植物化学品如多酚,生物碱和三萜类化合物,防止糖尿病患者的早期阶段和并发症的发展,根据各种报道。本研究的目的是测量柠檬群对高脂饮食(HFD)和链脲佐菌素(STZ)诱导的糖尿病肌脂血散大鼠的抗渗透和抗糖尿病效应,并观察其对碳水化合物代谢调节酶的影响肝。材料和方法:将大鼠保持在高脂饮食中2周,然后通过单剂量的STZ(35mg / kg / bw,腹膜内)诱导糖尿病,口服以45mg / kg的剂量给药/ bw糖尿病大鼠28天。研究了血糖,血浆胰岛素和血液中的血液曲线。在肝脏,胰腺和脂肪组织中测定抗氧化活性。在糖尿病肌脂血症大鼠中还研究了肝脏的碳水化合物代谢酶。结果:本研究的结果证实,柠檬雌性施用(P <0.05)降低糖尿病大鼠血糖水平和增加的血浆胰岛素。 Citral还改善了肝脏,脂肪组织和HFD / STZ组中的抗氧化酶以及胰腺的抗氧化酶。 CITRAL还规定了肝脏中葡萄糖代谢酶的活性。将本研究的结果与Glibenclamide进行比较,这是一种用于降低血糖的标准口腔药物。结论:结果可能表明,柠檬雌性具有抗血液血症活性以及抗糖尿病活性,还调节肝脏中糖酵解和葡糖原过程的酶活性。

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