Biomedical Signal Interpretation and Computational Simulation (BSICoS), I3A, Universidad de Zaragoza, IIS Aragón and CIBER-BBN, Spain.
CONICET, IMBECU, National University of Cuyo, Argentina.
Oxid Med Cell Longev. 2021 Mar 13;2021:8876792. doi: 10.1155/2021/8876792. eCollection 2021.
Aging comes with gradual loss of functions that increase the vulnerability to disease, senescence, and death. The mechanisms underlying these processes are linked to a prolonged imbalance between damage and repair. Damaging mechanisms include oxidative stress, mitochondrial dysfunction, chronodisruption, inflammation, and telomere attrition, as well as genetic and epigenetic alterations. Several endogenous tissue repairing mechanisms also decrease. These alterations associated with aging affect the entire organism. The most devastating manifestations involve the cardiovascular system and may lead to lethal cardiac arrhythmias. Together with structural remodeling, electrophysiological and intercellular communication alterations during aging predispose to arrhythmic events. Despite the knowledge on repairing mechanisms in the cardiovascular system, effective antiaging strategies able to reduce the risk of arrhythmias are still missing. Melatonin is a promising therapeutic candidate due to its pleiotropic actions. This indoleamine regulates chronobiology and endocrine physiology. Of relevance, melatonin is an antiaging, antioxidant, antiapoptotic, antiarrhythmic, immunomodulatory, and antiproliferative molecule. This review focuses on the protective effects of melatonin on age-induced cardiac functional and structural alterations, potentially becoming a new fountain of youth for the heart.
衰老是指随着年龄的增长,人体逐渐丧失各项功能,从而增加患病、衰老和死亡的风险。导致这些变化的机制与损伤和修复之间长期失衡有关。损伤机制包括氧化应激、线粒体功能障碍、生物钟紊乱、炎症、端粒磨损,以及遗传和表观遗传改变。一些内源性组织修复机制也会减少。这些与衰老相关的改变会影响整个机体。最具破坏性的表现涉及心血管系统,并可能导致致命性心律失常。随着衰老,电生理和细胞间通讯的改变与结构重构一起,使心律失常事件更容易发生。尽管人们对心血管系统的修复机制有了一定的了解,但仍然缺乏有效的抗衰老策略来降低心律失常的风险。褪黑素作为一种有前途的治疗候选药物,因其具有多种作用而受到关注。这种吲哚胺可以调节生物钟和内分泌生理学。值得注意的是,褪黑素是一种抗衰老、抗氧化、抗凋亡、抗心律失常、免疫调节和抗增殖的分子。本文综述了褪黑素对年龄相关的心脏功能和结构改变的保护作用,这可能成为心脏的“青春之泉”。