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基因组保护化合物作为潜在的衰老保护剂。

Genome-Protecting Compounds as Potential Geroprotectors.

机构信息

Laboratory of Geroprotective and Radioprotective Technologies, Institute of Biology, Komi Science Centre, Ural Branch, Russian Academy of Sciences, 28 Kommunisticheskaya st., 167982 Syktyvkar, Russia.

Pitirim Sorokin Syktyvkar State University, 55 Oktyabrsky prosp., 167001 Syktyvkar, Russia.

出版信息

Int J Mol Sci. 2020 Jun 24;21(12):4484. doi: 10.3390/ijms21124484.

Abstract

Throughout life, organisms are exposed to various exogenous and endogenous factors that cause DNA damages and somatic mutations provoking genomic instability. At a young age, compensatory mechanisms of genome protection are activated to prevent phenotypic and functional changes. However, the increasing stress and age-related deterioration in the functioning of these mechanisms result in damage accumulation, overcoming the functional threshold. This leads to aging and the development of age-related diseases. There are several ways to counteract these changes: 1) prevention of DNA damage through stimulation of antioxidant and detoxification systems, as well as transition metal chelation; 2) regulation of DNA methylation, chromatin structure, non-coding RNA activity and prevention of nuclear architecture alterations; 3) improving DNA damage response and repair; 4) selective removal of damaged non-functional and senescent cells. In the article, we have reviewed data about the effects of various trace elements, vitamins, polyphenols, terpenes, and other phytochemicals, as well as a number of synthetic pharmacological substances in these ways. Most of the compounds demonstrate the geroprotective potential and increase the lifespan in model organisms. However, their genome-protecting effects are non-selective and often are conditioned by hormesis. Consequently, the development of selective drugs targeting genome protection is an advanced direction.

摘要

在整个生命过程中,生物体都会受到各种内源性和外源性因素的影响,这些因素会导致 DNA 损伤和体细胞突变,从而引发基因组不稳定。在年轻时,基因组保护的代偿机制会被激活,以防止表型和功能发生变化。然而,随着压力的增加和这些机制功能的老化,损伤会不断积累,超过功能阈值。这会导致衰老和与年龄相关的疾病的发生。有几种方法可以对抗这些变化:1)通过刺激抗氧化和解毒系统以及过渡金属螯合来防止 DNA 损伤;2)调节 DNA 甲基化、染色质结构、非编码 RNA 活性和防止核架构改变;3)改善 DNA 损伤反应和修复;4)选择性去除受损的非功能性和衰老细胞。在本文中,我们回顾了关于各种微量元素、维生素、多酚、萜类化合物和其他植物化学物质以及一些合成药理学物质在这些方面的作用的数据。大多数化合物表现出抗衰老的潜力,并在模型生物中延长了寿命。然而,它们的基因组保护作用是非选择性的,并且常常受到应激反应的影响。因此,开发针对基因组保护的选择性药物是一个先进的方向。

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