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Melatonin, mitochondria, and Ca2+ homeostasis in the exocrine pancreas: an overview

机译:外分泌胰腺中的褪黑素,线粒体和Ca2 +稳态:概述

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Melatonin, a derivative of the amino acid tryptophan, was initially thought to be mainly produced and secreted by the pineal gland; with time, it was also found in other tissues and organs, and even in plants. Since its discovery, the study of the role of the indole in cellular homeostasis has generated impressive data, which have led researchers to a common idea regarding the positive actions of melatonin in health. The uncontrolled production of free radicals in cellular systems leads to the situation termed oxidative stress, which has been signaled as the basis of disease and aging. In the exocrine pancreas, as in other parts of the body, a daily confrontation takes place against oxidative stress. The major signaling mechanisms controlling the physiology of the gland are affected under this situation. Because a love-hate relationship involving mitochondria and oxidative stress has been considered the basis of disease, any physiological regulator that sets hands on the system as a pacemaker will be determinant for the health's fate. Here we present an overview of the recent findings regarding the protective role of melatonin on the function of the exocrine pancreas, paying attention to the role of Ca2+ signaling and the involvement of mitochondria.
机译:褪黑素是氨基酸色氨酸的衍生物,最初被认为主要由松果体产生和分泌。随着时间的流逝,它也在其他组织和器官甚至植物中被发现。自从发现以来,对吲哚在细胞稳态中的作用的研究就产生了令人印象深刻的数据,这使研究人员对褪黑激素在健康中的积极作用有了共同的认识。细胞系统中自由基的不受控制的产生导致称为氧化应激的情况,这已被预示为疾病和衰老的基础。与身体其他部位一样,在外分泌胰腺中,每天都会发生对抗氧化应激的对抗。在这种情况下会影响控制腺体生理的主要信号传导机制。因为涉及线粒体和氧化应激的爱恨关系被认为是疾病的基础,所以任何将心脏起搏器作为心脏起搏器的生理调节剂都将决定健康的命运。在这里,我们介绍褪黑激素对外分泌胰腺功能的保护作用的最新发现的概述,注意Ca2 +信号传导的作用和线粒体的参与。

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