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首页> 外文期刊>Toxicology and Applied Pharmacology >Rat liver mitochondrial damage under acute or chronic carbon tetrachloride-induced intoxication: Protection by melatonin and cranberry flavonoids
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Rat liver mitochondrial damage under acute or chronic carbon tetrachloride-induced intoxication: Protection by melatonin and cranberry flavonoids

机译:急性或慢性四氯化碳中毒引起的大鼠肝线粒体损伤:褪黑素和蔓越莓黄酮类化合物的保护

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In current societies, the risk of toxic liver damage has markedly increased. The aim of the present work was to carry out further research into the mechanism(s) of liver mitochondrial damage induced by acute (0.8. g/kg body weight, single injection) or chronic (1.6. g/ kg body weight, 30. days, biweekly injections) carbon tetrachloride - induced intoxication and to evaluate the hepatoprotective potential of the antioxidant, melatonin, as well as succinate and cranberry flavonoids in rats.Acute intoxication resulted in considerable impairment of mitochondrial respiratory parameters in the liver. The activity of mitochondrial succinate dehydrogenase (complex II) decreased (by 25%, p 0.05). Short-term melatonin treatment (10. mg/kg, three times) of rats did not reduce the degree of toxic mitochondrial dysfunction but decreased the enhanced NO production.After 30-day chronic intoxication, no significant change in the respiratory activity of liver mitochondria was observed, despite marked changes in the redox-balance of mitochondria. The activities of the mitochondrial enzymes, succinate dehydrogenase and glutathione peroxidase, as well as that of cytoplasmic catalase in liver cells were inhibited significantly. Mitochondria isolated from the livers of the rats chronically treated with CCl 4 displayed obvious irreversible impairments. Long-term melatonin administration (10mg/kg, 30days, daily) to chronically intoxicated rats diminished the toxic effects of CCl 4, reducing elevated plasma activities of alanine aminotransferase and aspartate aminotransferase and bilirubin concentration, prevented accumulation of membrane lipid peroxidation products in rat liver and resulted in apparent preservation of the mitochondrial ultrastructure. The treatment of the animals by the complex of melatonin (10mg/kg) plus succinate (50mg/kg) plus cranberry flavonoids (7mg/kg) was even more effective in prevention of toxic liver injury and liver mitochondria damage.
机译:在当前社会中,毒性肝损害的风险已显着增加。当前工作的目的是进一步研究急性(0.8。g / kg体重,单次注射)或慢性(1.6。g / kg体重,30)引起的肝线粒体损伤的机制。每天两次,每两周注射一次)四氯化碳引起的中毒,并评估抗氧化剂,褪黑素以及琥珀酸和酸果蔓类黄酮对大鼠的保肝潜力。急性中毒导致肝脏线粒体呼吸参数严重受损。线粒体琥珀酸脱氢酶(复合体II)的活性降低(降低25%,p <0.05)。短期褪黑素治疗(10. mg / kg,3次)并未降低毒性线粒体功能障碍的程度,但降低了NO产生的增强。慢性中毒30天后,肝线粒体的呼吸活动没有明显变化观察到,尽管线粒体的氧化还原平衡发生了显着变化。肝细胞中线粒体酶,琥珀酸脱氢酶和谷胱甘肽过氧化物酶的活性以及胞质过氧化氢酶的活性被显着抑制。从用CCl 4长期治疗的大鼠肝脏分离的线粒体表现出明显的不可逆损伤。长期中毒的大鼠长期服用褪黑激素(10mg / kg,每天30天)可降低CCl 4的毒性作用,降低丙氨酸转氨酶和天冬氨酸转氨酶和胆红素浓度的血浆活性升高,防止膜脂质过氧化产物在大鼠肝脏中积累并明显保留了线粒体的超微结构。褪黑素(10mg / kg)+琥珀酸盐(50mg / kg)+蔓越莓类黄酮(7mg / kg)复合物对动物的治疗在预防毒性肝损伤和肝线粒体损伤方面更为有效。

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