Amaral Fernanda Gaspar Do, Andrade-Silva Jéssica, Kuwabara Wilson M T, Cipolla-Neto José
a Department of Physiology , Federal University of São Paulo , São Paulo , Brazil.
b Department of Physiology and Biophysics , Institute of Biomedical Sciences, University of São Paulo , São Paulo , Brazil.
Expert Rev Endocrinol Metab. 2019 Jul;14(4):293-300. doi: 10.1080/17446651.2019.1631158. Epub 2019 Jun 13.
Melatonin is a pineal hormone that has acquired several unique modes of regulating the physiological effects in mammals due to its characteristic phylogenetic history. While melatonin exhibits immediate nocturnal effects, it also has next-day prospective effects that take place in the absence of this hormone. Besides that, the daily repetition and the annual variation in the duration of its synthesis determine its circadian and seasonal effects that characterize melatonin as a chronobiotic, a molecule that encodes time to the internal environment. Additionally, it presents transgenerational effects that are important for fetal programming, leading to a balanced energy metabolism in the adult life.
Physiology, pathophysiology and therapeutic value of melatonin in metabolism and metabolic disorders.
The typical mechanisms of action of melatonin (immediate, prospective, chronobiotic and transgenerational) should be considered to adequately understand its physiological effects on the regulation of metabolism in humans and, as a result, to understand the metabolic pathophysiological consequences caused by its synthesis and/or signaling disturbances. That points to the importance of a broader understanding of melatonin actions, besides the classical endocrinological point of view, that would allow the clinician/research to proper interpret its role in health maintenance.
褪黑素是一种松果体激素,因其独特的系统发育史而具有多种调节哺乳动物生理效应的独特方式。褪黑素不仅具有即时的夜间效应,在缺乏该激素的情况下还具有次日的前瞻性效应。此外,其合成持续时间的每日重复和年度变化决定了其昼夜节律和季节性效应,使褪黑素成为一种生物钟分子,即一种能为内环境编码时间的分子。此外,它还具有对胎儿编程很重要的跨代效应,从而在成年期导致能量代谢平衡。
褪黑素在代谢及代谢紊乱中的生理学、病理生理学及治疗价值。
应考虑褪黑素典型的作用机制(即时、前瞻性、生物钟及跨代),以便充分理解其对人类代谢调节的生理效应,进而理解其合成和/或信号传导紊乱所导致的代谢病理生理后果。这表明除了经典内分泌学观点外,更广泛地理解褪黑素的作用具有重要意义,这将使临床医生/研究人员能够正确解释其在维持健康中的作用。