首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Rutin ameliorates metabolic acidosis and fibrosis in alloxan induced diabetic nephropathy and cardiomyopathy in experimental rats
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Rutin ameliorates metabolic acidosis and fibrosis in alloxan induced diabetic nephropathy and cardiomyopathy in experimental rats

机译:芦丁在实验大鼠中改善阿仑杀糖尿病肾病和心肌病的代谢酸中毒和纤维化

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Diabetic nephropathy and cardiomyopathy are two major causes of mortality among patients with diabetes mellitus (DM). Since current diabetic medications are associated with various side effects, the naturally occurring plant-derived compounds are in demand. Bioflavonoids originating from vegetables and medicinal plants have beneficial effects on diabetes by improving glycemic control, lipid metabolism, and anti-oxidant status. The present study is focused on the effect of rutin against alloxan induced diabetic nephropathy and cardiomyopathy. Male albino Wistar rats were divided into four groups, each of six rats. Group I control rats received 0.9% saline as a single dose intraperitoneally. Group II rats were induced diabetes with a single dose of alloxan monohydrate (150 mg/kg body weight in 0.9% saline) intraperitoneally. Group III rats received 0.28 M of NH4Cl in drinking water for 3 days for the experimental induction of metabolic acidosis. Group IV rats were injected with a single dose of alloxan monohydrate (150 mg/kg bodyweight) and administered rutin hydrate (100 mg/kg) for a period of 4 weeks by oral gavage. Administration of rutin prevented urinary ketone body formation and decreased serum creatinine and urea levels in alloxan induced diabetic rats. Rutin supplementation reduced the levels of serum triglycerides and cholesterol in diabetic rats. Gene expression profiling of metabolic acidosis related genes (AQP2, AQP3 and V2R) and also histopathological results demonstrated the protective effect of rutin against diabetic ketoacidodis and fibrosis. The results of the present study revealed rutin administration prevents the progression of diabetic nephropathy and cardiomyopathy through amelioration of fibrosis and metabolic acidosis.
机译:糖尿病肾病和心肌病是糖尿病患者(DM)的死亡率的两个主要原因。由于目前的糖尿病药物与各种副作用有关,因此天然存在的植物衍生的化合物是需求的。源自蔬菜和药用植物的生物醛类药物通过改善血糖对照,脂质代谢和抗氧化地位对糖尿病有益的影响。本研究重点是芦丁对阿萨克兰诱导的糖尿病肾病和心肌病的影响。雄性白化Wistar大鼠分为四组,每组六只大鼠。 I组控制大鼠腹膜内的单剂量接受0.9%盐水。 II族大鼠诱导糖尿病,用单剂量的胃昔兰一水合物(150mg / kg体重在0.9%盐水中)腹腔内。 III族大鼠在饮用水中收到0.28米的NH 4 Cl 3天进行代谢酸中毒的实验诱导。将局部IV大鼠用单一剂量的阿拉昔红单水合物(150mg / kg体重)注射,并通过口服饲养给予芦丁水合物(100mg / kg)的时间4周。芦丁施用预防尿酮体形成,血清肌酐和尿毒素诱导糖尿病大鼠的尿素水平降低。芦丁补充剂降低了糖尿病大鼠血清甘油三酯和胆固醇的水平。代谢酸中毒相关基因(AQP2,AQP3和V2R)的基因表达分析以及组织病理学结果证明了芦丁对糖尿病酮酰基脱发和纤维化的保护作用。本研究的结果揭示了芦丁给药通过改善纤维化和代谢酸中毒来阻止糖尿病肾病和心肌病的进展。

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