Melatonin and circadian oscillators in aging--a dynamic approach to the multiply connected players.

Interdisciplinary topics in gerontology Pub Date : 2015-01-01 Epub Date: 2014-10-13 DOI:10.1159/000364975
Rüdiger Hardeland
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引用次数: 38

Abstract

From the perspective of systems biology, melatonin is relevant to aging in multiple ways. As a highly pleiotropic agent, it acts as a modulator and protectant of mitochondrial electron flux, a potent antioxidant that supports the redox balance and prevents excessive free radical formation, a coregulator of metabolic sensing and antagonist of insulin resistance, an immune modulator, a physiological hypnotic and, importantly, an orchestrating chronobiotic. It entrains central and peripheral circadian clocks and is required for some high-amplitude rhythms. The circadian system, which controls countless functions, is composed of many cellular oscillators that involve various accessory clock proteins, some of which are modulated by melatonin, e.g. sirtuin 1, AMP-dependent protein kinase, and protein kinase Cα. Aging and age-related diseases are associated with losses in melatonin secretion and rhythm amplitudes. The dynamic properties of aging processes deserve particular attention. This concerns especially two vicious cycles, one of peroxynitrite formation driven by inflammation or overexcitation, another one of inflammaging driven by the senescence-associated secretory phenotype, and additionally the loss of dynamics in a deteriorating circadian multioscillator system.

褪黑素和衰老中的昼夜节律振荡器——一种针对多重关联参与者的动态方法。
从系统生物学的角度来看,褪黑素与衰老的关系是多方面的。作为一种高度多效性的药物,它可以作为线粒体电子通量的调节剂和保护剂,一种有效的抗氧化剂,支持氧化还原平衡并防止过度自由基的形成,代谢感知的协同调节剂和胰岛素抵抗的拮抗剂,一种免疫调节剂,一种生理催眠剂,重要的是,一种协调的时间生成剂。它控制着中央和外围的生物钟,是一些高振幅节奏所必需的。昼夜节律系统控制着无数的功能,它由许多细胞振荡器组成,这些振荡器涉及各种辅助时钟蛋白,其中一些由褪黑激素调节,例如sirtuin 1, amp依赖性蛋白激酶和蛋白激酶Cα。衰老和与年龄相关的疾病与褪黑激素分泌和节律振幅的损失有关。老化过程的动态特性值得特别关注。这尤其涉及两个恶性循环,一个是由炎症或过度兴奋驱动的过氧亚硝酸盐形成,另一个是由衰老相关的分泌表型驱动的炎症,另外一个是在不断恶化的昼夜节律多振荡器系统中失去动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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