首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Ameliorative effects of oleanolic acid on fluoride induced metabolic and oxidative dysfunctions in rat brain: Experimental and biochemical studies
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Ameliorative effects of oleanolic acid on fluoride induced metabolic and oxidative dysfunctions in rat brain: Experimental and biochemical studies

机译:齐墩果酸对氟诱导的大鼠脑代谢和氧化功能障碍的改善作用:实验和生化研究

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Beneficial effects of oleanolic acid on fluoride-induced oxidative stress and certain metabolic dysfunctions were studied in four regions of rat brain. Male Wistar rats were treated with sodium fluoride at a dose of 20 mg/kg b.w./day (orally) for 30 days. Results indicate marked reduction in acidic, basic and neutral protein contents due to fluoride toxicity in cerebrum, cerebellum, pons and medulla. DNA, RNA contents significantly decreased in those regions after fluoride exposure. Activities of proteolytic enzymes (such as cathepsin, trypsin and pronase) were inhibited by fluoride, whereas transaminase enzyme (GOT and GPT) activities increased significantly in brain tissue. Fluoride appreciably elevated brain malondialdehyde level, free amino acid nitrogen, NO content and free -OH radical generation. Additionally, fluoride perturbed GSH content and markedly reduced SOD, GPx, GR and CAT activities in brain tissues. Oral supplementation of oleanolic acid (a plant triterpenoid), at a dose of 5 mg/kg b.w./day for last 14 days of fluoride treatment appreciably ameliorated fluoride-induced alteration of brain metabolic functions. Appreciable counteractive effects of oleanolic acid against fluoride-induced changes in protein and nucleic acid contents, proteolytic enzyme activities and other oxidative stress parameters indicate that oleanolic acid has potential antioxidative effects against fluoride-induced oxidative brain damage.
机译:在大鼠脑的四个区域研究了齐墩果酸对氟化物诱导的氧化应激和某些代谢功能障碍的有益作用。用氟化钠以20mg / kg b.w./天的剂量(口服)对雄性Wistar大鼠进行30天的治疗。结果表明,由于氟化物对大脑,小脑,脑桥和延髓的毒性,酸性,碱性和中性蛋白质含量显着降低。暴露于氟化物后,这些区域的DNA,RNA含量明显降低。氟化物抑制蛋白水解酶(例如组织蛋白酶,胰蛋白酶和链霉蛋白酶)的活性,而在脑组织中转氨酶(GOT和GPT)的活性显着增加。氟化物显着提高了大脑的丙二醛水平,游离氨基酸氮,NO含量和游离-OH自由基的产生。此外,氟化物会扰乱GSH含量,并显着降低脑组织中的SOD,GPx,GR和CAT活性。在氟治疗的最后14天,口服补充齐墩果酸(一种植物三萜)的剂量为5 mg / kg体重/天,可明显改善氟诱导的脑代谢功能的改变。齐墩果酸对氟化物诱导的蛋白质和核酸含量变化,蛋白水解酶活性和其他氧化应激参数具有明显的反作用,表明齐墩果酸对氟化物诱导的氧化性脑损伤具有潜在的抗氧化作用。

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