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首页> 外文期刊>Recent patents on endocrine, metabolic & immune drug discovery >Relevance of the Chronobiological and Non-chronobiological Actions of Melatonin for Enhancing Therapeutic Efficacy in Neurodegenerative Disorders
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Relevance of the Chronobiological and Non-chronobiological Actions of Melatonin for Enhancing Therapeutic Efficacy in Neurodegenerative Disorders

机译:褪黑激素的时生物学和非时生物学作用与增强神经退行性疾病治疗效果的相关性

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摘要

Melatonin is an indolamine with a large spectrum of functions that can be divided into chronobiotic and non-chronobiotic. Chronobiotic effects are mediated by the daily rhythm of melatonin in the plasma due to nocturnal pineal synthesis, whereas the melatonin produced by other cells, such as gastrointestinal and immune competent cells, is independent of the light/dark cycle and exert non-chronobiotic effects. The concentrations achieved by the two sources are significantly different, varying in the pM - nM range in the plasma, and may achieve concentrations in the mM range when released locally by activated immune-competent cells. Consequently, the effects of the melatonin produced in these two situations are distinct. Much has been reported about the beneficial response to exogenous melatonin administration in several pathological conditions. However, the relationship between the establishment of a disease and the state of the physiological activity of the pineal gland is still poorly understood. Here, we review the state of art in the modulation of pineal melatonin synthesis, relevant patents, and discuss its relationship with neurodegenerative disorders that involve a central inflammatory response, such as Alzheimer's disease, to suggest the putative relevance of new therapeutic protocols that replace this pineal hormone.
机译:褪黑激素是一种吲哚胺,具有广泛的功能,可分为时间生物和非时间生物。由于夜间松果体合成,褪黑激素在血浆中的日常节律介导了时间生物效应,而其他细胞(如胃肠道和免疫感受态细胞)产生的褪黑激素与光/暗循环无关,并发挥非时间生物效应。两种来源达到的浓度显着不同,在血浆中的pM-nM范围内变化,并且当被活化的免疫感受态细胞局部释放时可能达到mM范围内的浓度。因此,在这两种情况下产生的褪黑激素的作用是不同的。关于在几种病理条件下对外源性褪黑激素给药的有益反应的报道很多。然而,疾病的建立与松果体生理活动状态之间的关系仍然知之甚少。在这里,我们回顾了松果体褪黑激素合成调节的最新技术、相关专利,并讨论了它与涉及中枢炎症反应的神经退行性疾病(如阿尔茨海默病)的关系,以提出替代这种松果体激素的新治疗方案的假定相关性。

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