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首页> 外文期刊>Journal of Asian natural products research >Sesamol attenuate 3-nitropropionic acid-induced Huntington-like behavioral, biochemical, and cellular alterations in rats
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Sesamol attenuate 3-nitropropionic acid-induced Huntington-like behavioral, biochemical, and cellular alterations in rats

机译:芝麻酚可减轻3-硝基丙酸诱导的大鼠类似Huntington的行为,生化和细胞改变

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摘要

Sesamol (SML) obtained from sesame seeds (Sesamum indicum, Linn, Pedaliaceae) has been used as a traditional health food in India and other countries since a long time. Besides its good antioxidant activity, SML is currently receiving considerable attention in relation to neurological disorders. Therefore, the present study has been designed to explore the protective role of SML in 3-nitropropionic acid (3-NP)-induced neurotoxicity in animals. Male rats were given 3-NP (lOmg/kg) treatment for 14 days. Various behavioral observations (body weight, locomotor activity), oxidative damage (lipid peroxidation, nitrite level, superoxide dismutase, and catalase enzyme), and mitochondrial enzyme complex functions were also assessed in the striatum, cortex, and hippocampal regions of the brain. 3-NP treatment significantly impaired locomotor activity, motor coordination, body weight, oxidative damage, and mitochondrial enzyme complex functions as compared with vehicle-treated groups. SML (5, 10, and 20 mg/kg) pre-treatment significantly improved body weight, locomotor activity, motor coordination, and attenuated oxidative damage in different regions of rat brain. Besides these, SML treatment also significantly improved mitochondrial enzymes in all regions of the brain as compared with the respective control (3-NP) group. The present study suggests that SML could be used as effective agents in the management of Huntington's disease.
机译:从芝麻(芝麻(Sesamum indicum),林恩(Linn),pedalaceae(芝麻))中获得的芝麻酚(SML)在很长一段时间以来一直被用作印度和其他国家的传统保健食品。除了其良好的抗氧化活性外,SML目前在神经系统疾病方面也受到了广泛的关注。因此,本研究旨在探讨SML在3-硝基丙酸(3-NP)诱导的动物神经毒性中的保护作用。给雄性大鼠3-NP(10mg / kg)治疗14天。还评估了大脑纹状体,皮质和海马区的各种行为观察(体重,运动能力),氧化损伤(脂质过氧化,亚硝酸盐水平,超氧化物歧化酶和过氧化氢酶)和线粒体酶复合功能。与媒介物治疗组相比,3-NP治疗显着损害运动能力,运动协调性,体重,氧化损伤和线粒体酶复合物功能。 SML(5、10和20 mg / kg)预处理可显着改善大鼠脑不同区域的体重,运动能力,运动协调性并减轻其氧化损伤。除此之外,与相应的对照组(3-NP)组相比,SML治疗还可以显着改善大脑所有区域的线粒体酶。本研究表明,SML可用作亨廷顿氏病治疗的有效药物。

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