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Melatonin as Antioxidant Under Pathological Processes

机译:褪黑素在病理过程中作为抗氧化剂

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Many are the diseases which course with free radical formation. These disorders cover a great range of fields such as neurodegenerative, immune, inflammatory and mitochondrial-related diseases. Melatonin is the main pineal gland product and it functions as “time-giver” in the regulation of circadian rhythms, among others. But the actions of melatonin are not only restricted to the neuroendocrine physiology. In fact, it has been known as a radical scavenger, a role that has been deeply studied in all those conditions where free radicals are generated. Furthermore, melatonin has been shown to act as an indirect antioxidant, since it is able to increase the activity and expression of the main antioxidant enzymes, the machinery for the glutathione synthesis, and many others direct or indirectly implicated in the free radical removal. Melatonin can also diminish the activity or expression of enzymes or factors that are considered as prooxidants. Thus, researchers have paid attention to the possible actions of melatonin in the attenuation of those processes where free radical overproduction is implicated. This review summarizes some of the proposed melatonin mechanisms for different free radical-dependent pathological situations, as well as some patents on melatonin significance recently reported for the treatment of attention deficit, hyperactivity disorders, stress-related diseases, Chronic fatigue syndrome, diabetes, Parkinson's disease. Alzheimer's disease, age associated cognitive dysfunction and cancer.
机译:许多疾病会随着自由基的形成而发展。这些疾病涵盖了许多领域,例如神经退行性疾病,免疫疾病,炎性疾病和线粒体相关疾病。褪黑素是松果体的主要产物,在昼夜节律的调节中,它起着“时间给予者”的作用。但是褪黑激素的作用不仅限于神经内分泌生理学。实际上,它被称为自由基清除剂,在所有产生自由基的条件下,其作用都得到了深入研究。此外,褪黑激素已被证明是一种间接的抗氧化剂,因为它能够提高主要抗氧化剂酶的活性和表达,谷胱甘肽合成的机制以及许多其他直接或间接与自由基清除有关的物质。褪黑激素还可以降低被认为是促氧化剂的酶或因子的活性或表达。因此,研究人员已经注意到褪黑激素在减弱与自由基过度产生有关的过程中的可能作用。这篇综述总结了针对不同的自由基依赖性病理情况提出的褪黑激素机制,以及最近报道的有关褪黑激素意义的专利,这些专利可用于治疗注意力缺陷,多动障碍,压力相关疾病,慢性疲劳综合征,糖尿病,帕金森氏症疾病。阿尔茨海默氏病,年龄相关的认知功能障碍和癌症。

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