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首页> 外文期刊>Journal of Cardio-Thoracic Medicine >A Direct Comparison of Anti-ulcer Effects of Coenzyme Q10 and Vitamin C on Indomethacin-induced Gastric Ulcer in Rat: A Controlled Experimental Study
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A Direct Comparison of Anti-ulcer Effects of Coenzyme Q10 and Vitamin C on Indomethacin-induced Gastric Ulcer in Rat: A Controlled Experimental Study

机译:辅酶Q10和维生素C对消炎痛诱导的大鼠胃溃疡的抗溃疡作用的直接比较:对照实验研究

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Introduction: Indomethacin increases generation of mitochondrial reactive oxygen species (ROS) which have a crucial role in the indomethacin-induced gastric ulcer. Coenzyme Q10 has an antioxidant activity on mitochondria and cell membranes and protects lipids from oxidation and is essential for stabilizing biological membranes. Superoxide dismutase (SOD) acts as one of the defense mechanisms against free radicals. When the generation of ROS overwhelms, the antioxidant defense, lipid peroxiation of cell membrane occurs and cause cell damage. Materials and Methods: Male adult Wistar rats were divided into A and B groups. The rats in group A were then further divided into three subgroups of 6 animals each and received one of the following treatments: Animals in the first subgroup received saline. Animals in the second subgroup received saline and indomethacin. Animals in the third subgroup received vitamin C and indomethacin. The rats in group B were also further divided into 3 subgroups of 6 rats each and treated with one of the following treatments: Animals in first subgroup received 1% Tween 80 as vehicle. Animals In second subgroup received 1% Tween 80 and indomethacin. Animals in third subgroup received CoQ10 and indomethacin. Four hours after the last treatment, animals were killed and the stomachs removed were cut and gastric mucosal lesions were examined). Ulcer indexes were determined and SOD activity measured in plasma Results: Pretreatment with both vitamin C and coenzyme Q10 was associated with attenuation of ulcer index and increased SOD activity compared with animals treated with indomethacin alone (P
机译:简介:消炎痛可增加线粒体活性氧(ROS)的生成,这些活性氧在消炎痛诱导的胃溃疡中起着至关重要的作用。辅酶Q10对线粒体和细胞膜具有抗氧化活性,可保护脂质免受氧化,对于稳定生物膜至关重要。超氧化物歧化酶(SOD)是防御自由基的机制之一。当ROS的产生淹没时,会发生抗氧化剂防御,细胞膜脂质过氧化作用并引起细胞损伤。材料与方法:成年Wistar雄性大鼠分为A组和B组。然后将A组的大鼠进一步分为3个亚组,每组6只动物,并接受以下一种治疗方法:第一个亚组的动物接受生理盐水。第二亚组的动物接受盐水和消炎痛。第三亚组的动物接受维生素C和消炎痛。将B组的大鼠进一步分为3个亚组,每组6只,并用以下一种治疗方法治疗:第一个亚组的动物接受1%Tween 80作为媒介。动物在第二亚组中接受1%吐温80和消炎痛。第三亚组的动物接受辅酶Q10和消炎痛。在最后一次治疗后四小时,处死动物,切掉胃,检查胃粘膜损伤。测定血浆溃疡指数并测定血浆SOD活性结果:与单独使用消炎痛治疗的动物相比,维生素C和辅酶Q10预处理与溃疡指数降低和SOD活性增加相关(P

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