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生物体衰老与大分子之外的氧化剂损伤。

Organismal Aging and Oxidants beyond Macromolecules Damage.

机构信息

Department of Biochemistry, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, 117596, Singapore.

National University of Singapore Graduate School for Integrative Sciences and Engineering, Singapore, 117456, Singapore.

出版信息

Proteomics. 2020 Mar;20(5-6):e1800400. doi: 10.1002/pmic.201800400. Epub 2020 Feb 6.

Abstract

The relationship between oxidants and organismal aging was first articulated through the free radical theory of aging. One of the major predictions of the free radical theory of aging is that oxidative stress shortens organisms' lifespan because of an increased level of oxidants, which are damaging to macromolecules. However, challenging the role of oxidants in age-related diseases, there is now sufficient evidence that antioxidant supplements do not provide significant health benefits. Interestingly, in addition to an increase in oxidant-mediated macromolecules damage, there is convincing experimental data to support the role of senescent cells in the process of aging. Here, the current knowledge regarding the role of oxidants and cellular senescence in organismal aging is reviewed and it is proposed that, in addition to the role of oxidants as inducers of macromolecular damage, oxidants may also function as regulators of signaling pathways involved in the establishment of cellular senescence. If this role for oxidants is established, it may be necessary to modify the free radical theory of aging from "Organisms age because cells accumulate reactive oxygen species-dependent damage over time" to: "Organisms age because cells accumulate oxidants'-dependent damage and oxidants'-dependent senescent characteristics over time."

摘要

氧化剂与机体衰老之间的关系最初是通过衰老的自由基理论来阐述的。衰老的自由基理论的主要预测之一是,由于氧化剂水平升高,氧化应激会缩短生物体的寿命,因为氧化剂会对大分子造成损害。然而,抗氧化剂补充剂并没有提供显著的健康益处,这一事实对氧化剂在与年龄相关的疾病中的作用提出了挑战。有趣的是,除了氧化剂介导的大分子损伤增加之外,还有令人信服的实验数据支持衰老细胞在衰老过程中的作用。在这里,我们回顾了关于氧化剂和细胞衰老在机体衰老中的作用的现有知识,并提出,除了作为大分子损伤诱导剂的氧化剂的作用外,氧化剂还可以作为参与细胞衰老建立的信号通路的调节剂发挥作用。如果氧化剂的这种作用得到确立,那么可能需要将自由基理论从“生物体随着时间的推移而衰老,因为细胞积累了依赖于活性氧的损伤”修改为:“生物体随着时间的推移而衰老,因为细胞积累了依赖于氧化剂的损伤和依赖于氧化剂的衰老特征。”

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