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首页> 外文期刊>Acta neurobiologiae experimentalis >Melatonin attenuates radiation-induced learning deficit and brain oxidative stress in mice
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Melatonin attenuates radiation-induced learning deficit and brain oxidative stress in mice

机译:褪黑素可减轻小鼠辐射诱发的学习缺陷和脑部氧化应激

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Oxidative stress has been implicated in cognitive impairment in both experimental animals and humans. This implication has led to the notion that antioxidant defence mechanisms in the brain are not sufficient to prevent oxidative damage, and that dietary intake of a variety of antioxidants might be beneficial for preserving brain function. The present study, therefore, aimed to investigate the protective effect of melatonin against radiation-induced impairment in the learning ability of mice. Twenty days oral administration of melatonin (0.1 mg/kg b.w.), followed by an acute exposure to ?-radiation (6 Gy), inhibited the radiation-induced decline in learning ability. Biochemical estimation of brain protein carbonyls, malondialdehide (MDA) and reduced glutathione (GSH) in these mice indicated that radiation-induced augmentation of protein oxidation and lipid peroxidation had been significantly ameliorated in melatonin treated, irradiated mice. Radiation-induced deficit of glutathione was also normalized by melatonin administration, as there was no statistical difference from normal at P<0.001. Results indicate the antioxidative as well as neuroprotective properties of melatonin against the radiation. These findings support results showing melatonin as a free radical scavenger. Correspondence should be addressed to K. Manda, Email: kailashmanda@yahoo.com
机译:在实验动物和人类中,氧化应激都与认知障碍有关。这种暗示导致了这样的观念,即大脑中的抗氧化剂防御机制不足以防止氧化损伤,并且饮食中摄入各种抗氧化剂可能有益于保持大脑功能。因此,本研究旨在研究褪黑激素对辐射诱导的小鼠学习能力损害的保护作用。口服褪黑激素(0.1 mg / kg b.w.)二十天,然后急性暴露于β-射线(6 Gy),抑制了射线诱导的学习能力下降。在这些小鼠中脑蛋白羰基,丙二醛(MDA)和谷胱甘肽(GSH)降低的生化估计表明,在褪黑素处理的受辐照小鼠中,辐射诱导的蛋白质氧化和脂质过氧化增强显着改善。褪黑激素给药也可以使辐射引起的谷胱甘肽缺乏症正常化,因为在P <0.001时,与正常水平无统计学差异。结果表明褪黑激素对辐射具有抗氧化和神经保护作用。这些发现支持了将褪黑激素作为自由基清除剂的结果。信件应发送至K. Manda,电子邮件:kailashmanda@yahoo.com

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