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褪黑素与癌症:一个源起至关重要的多面体网络。

Melatonin and Cancer: A Polyhedral Network Where the Source Matters.

作者信息

Bonmati-Carrion Maria-Angeles, Tomas-Loba Antonia

机构信息

Chronobiology Laboratory, Department of Physiology, IMIB-Arrixaca, University of Murcia, 30100 Murcia, Spain.

Ciber Fragilidad y Envejecimiento Saludable, 28090 Madrid, Spain.

出版信息

Antioxidants (Basel). 2021 Feb 1;10(2):210. doi: 10.3390/antiox10020210.

Abstract

Melatonin is one of the most phylogenetically conserved signals in biology. Although its original function was probably related to its antioxidant capacity, this indoleamine has been "adopted" by multicellular organisms as the "darkness signal" when secreted in a circadian manner and is acutely suppressed by light at night by the pineal gland. However, melatonin is also produced by other tissues, which constitute its extrapineal sources. Apart from its undisputed chronobiotic function, melatonin exerts antioxidant, immunomodulatory, pro-apoptotic, antiproliferative, and anti-angiogenic effects, with all these properties making it a powerful antitumor agent. Indeed, this activity has been demonstrated to be mediated by interfering with various cancer hallmarks, and different epidemiological studies have also linked light at night (melatonin suppression) with a higher incidence of different types of cancer. In 2007, the World Health Organization classified night shift work as a probable carcinogen due to circadian disruption, where melatonin plays a central role. Our aim is to review, from a global perspective, the role of melatonin both from pineal and extrapineal origin, as well as their possible interplay, as an intrinsic factor in the incidence, development, and progression of cancer. Particular emphasis will be placed not only on those mechanisms related to melatonin's antioxidant nature but also on the recently described novel roles of melatonin in microbiota and epigenetic regulation.

摘要

褪黑素是生物学中系统发育上最保守的信号之一。尽管其最初的功能可能与其抗氧化能力有关,但这种吲哚胺已被多细胞生物“采用”,作为以昼夜节律方式分泌的“黑暗信号”,并在夜间被松果体分泌的光急性抑制。然而,褪黑素也由其他组织产生,这些组织构成了其松果体外来源。除了其无可争议的生物钟调节功能外,褪黑素还具有抗氧化、免疫调节、促凋亡、抗增殖和抗血管生成作用,所有这些特性使其成为一种强大的抗肿瘤剂。事实上,这种活性已被证明是通过干扰各种癌症标志来介导的,不同的流行病学研究也将夜间光照(褪黑素抑制)与不同类型癌症的较高发病率联系起来。2007年,世界卫生组织将夜班工作归类为可能的致癌物,因为昼夜节律紊乱,而褪黑素在其中起着核心作用。我们的目的是从全球角度综述褪黑素来自松果体和松果体外来源的作用,以及它们可能的相互作用,作为癌症发生、发展和进展的内在因素。将特别强调不仅与褪黑素抗氧化性质相关的那些机制,而且还将强调褪黑素在微生物群和表观遗传调控方面最近描述的新作用。

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