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烟酰胺腺嘌呤二核苷酸(NAD)与缺氧应激的相互作用及其与衰老的相关性。

The interplay of NAD and hypoxic stress and its relevance for ageing.

作者信息

Burtscher Johannes, Denti Vanna, Gostner Johanna M, Weiss Alexander Kh, Strasser Barbara, Hüfner Katharina, Burtscher Martin, Paglia Giuseppe, Kopp Martin, Dünnwald Tobias

机构信息

Department of Sport Science, University of Innsbruck, Innsbruck, Austria.

School of Medicine and Surgery, University of Milano-Bicocca, Vedano al Lambro, MB, Italy.

出版信息

Ageing Res Rev. 2025 Feb;104:102646. doi: 10.1016/j.arr.2024.102646. Epub 2024 Dec 20.

Abstract

Nicotinamide adenine dinucleotide (NAD) is an essential regulator of cellular metabolism and redox processes. NAD levels and the dynamics of NAD metabolism change with increasing age but can be modulated via the diet or medication. Because NAD metabolism is complex and its regulation still insufficiently understood, achieving specific outcomes without perturbing delicate balances through targeted pharmacological interventions remains challenging. NAD metabolism is also highly sensitive to environmental conditions and can be influenced behaviorally, e.g., by exercise. Changes in oxygen availability directly and indirectly affect NAD levels and may result from exposure to ambient hypoxia, increased oxygen demand during exercise, ageing or disease. Cellular responses to hypoxic stress involve rapid alterations in NAD metabolism and depend on many factors, including age, glucose status, the dose of the hypoxic stress and occurrence of reoxygenation phases, and exhibit complex time-courses. Here we summarize the known determinants of NAD-regulation by hypoxia and evaluate the role of NAD in hypoxic stress. We define the specific NAD responses to hypoxia and identify a great potential of the modulation of NAD metabolism regarding hypoxic injuries. In conclusion, NAD metabolism and cellular hypoxia responses are strongly intertwined and together mediate protective processes against hypoxic insults. Their interactions likely contribute to age-related changes and vulnerabilities. Targeting NAD homeostasis presents a promising avenue to prevent/treat hypoxic insults and - conversely - controlled hypoxia is a potential tool to regulate NAD homeostasis.

摘要

烟酰胺腺嘌呤二核苷酸(NAD)是细胞代谢和氧化还原过程的重要调节因子。NAD水平以及NAD代谢的动态变化会随着年龄的增长而改变,但可以通过饮食或药物进行调节。由于NAD代谢复杂,其调节机制仍未得到充分理解,通过有针对性的药物干预实现特定结果而不干扰微妙的平衡仍然具有挑战性。NAD代谢对环境条件也高度敏感,并且可能受到行为的影响,例如运动。氧可用性的变化直接或间接影响NAD水平,可能是由于暴露于环境低氧、运动期间氧需求增加、衰老或疾病引起的。细胞对低氧应激的反应涉及NAD代谢的快速改变,并取决于许多因素,包括年龄、葡萄糖状态、低氧应激的剂量以及复氧阶段的发生情况,并且表现出复杂的时间进程。在这里,我们总结了低氧对NAD调节的已知决定因素,并评估了NAD在低氧应激中的作用。我们定义了对低氧的特定NAD反应,并确定了NAD代谢调节在低氧损伤方面的巨大潜力。总之,NAD代谢和细胞低氧反应紧密相连,共同介导针对低氧损伤的保护过程。它们之间的相互作用可能导致与年龄相关的变化和易感性。靶向NAD稳态是预防/治疗低氧损伤的一个有前景的途径,反之,控制性低氧是调节NAD稳态的一种潜在工具。

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