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衰老生物学:氧化应激与 RNA 氧化。

Biology of aging: Oxidative stress and RNA oxidation.

机构信息

Institute for Research in Molecular Medicine, Universiti Sains Malaysia, 11800 USM, Pulau Pinang, Malaysia.

出版信息

Mol Biol Rep. 2022 Jun;49(6):5089-5105. doi: 10.1007/s11033-022-07219-1. Epub 2022 Apr 21.

Abstract

The prevalence of aged people has increased rapidly in recent years and brings profound demographic changes worldwide. The multi-level progression of aging occurs at diverse stages of complexity, from cell to organ systems and eventually to the human as a whole. The cellular and molecular damages are usually regulated by the cells; repair or degrade mechanisms. However, these mechanisms are not entirely functional; their effectiveness decreases with age due to influence from endogenous sources like oxidative stress, which all contribute to the aging process. The hunt for novel strategies to increase the man's longevity since ancient times needs better understandings of the biology of aging, oxidative stress, and their roles in RNA oxidation. The critical goal in developing new strategies to increase the man's longevity is to compile the novel developed knowledge on human aging into a single picture, preferably able to understand the biology of aging and the contributing factors. This review discusses the biology of aging, oxidative stress, and their roles in RNA oxidation, leading to aging in humans.

摘要

近年来,老年人的患病率迅速增加,给全球带来了深刻的人口结构变化。衰老的多层次进展发生在不同复杂程度的阶段,从细胞到器官系统,最终到整个人体。细胞和分子损伤通常受到细胞的调节;修复或降解机制。然而,这些机制并不完全有效;由于内源性因素(如氧化应激)的影响,它们的有效性随着年龄的增长而降低,所有这些因素都促成了衰老过程。自古以来,人们一直在寻找延长人类寿命的新策略,这需要更好地了解衰老生物学、氧化应激以及它们在 RNA 氧化中的作用。开发延长人类寿命的新策略的关键目标是将关于人类衰老的新开发知识汇编成一幅图,最好能够理解衰老生物学和促成因素。这篇综述讨论了衰老生物学、氧化应激以及它们在 RNA 氧化中的作用,导致了人类的衰老。

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