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表观遗传重编程作为逆转衰老和延长寿命的关键。

Epigenetic reprogramming as a key to reverse ageing and increase longevity.

机构信息

Department of Chemistry, University of Aveiro, Aveiro, Portugal.

LAQV-REQUIMTE, Department of Chemistry, University of Aveiro, Aveiro, Portugal.

出版信息

Ageing Res Rev. 2024 Mar;95:102204. doi: 10.1016/j.arr.2024.102204. Epub 2024 Jan 23.

Abstract

The pursuit for the fountain of youth has long been a fascination amongst scientists and humanity. Ageing is broadly characterized by a cellular decline with increased susceptibility to age-related diseases, being intimately associated with epigenetic modifications. Recently, reprogramming-induced rejuvenation strategies have begun to greatly alter longevity research not only to tackle age-related defects but also to possibly reverse the cellular ageing process. Hence, in this review, we highlight the major epigenetic changes during ageing and the state-of-art of the current emerging epigenetic reprogramming strategies leveraging on transcription factors. Notably, partial reprogramming enables the resetting of the ageing clock without erasing cellular identity. Promising chemical-based rejuvenation strategies harnessing small molecules, including DNA methyltransferase and histone deacetylase inhibitors are also discussed. Moreover, in parallel to longevity interventions, the foundations of epigenetic clocks for accurate ageing assessment and evaluation of reprogramming approaches are briefly presented. Going further, with such scientific breakthroughs, we are witnessing a rise in the longevity biotech industry aiming to extend the health span and ideally achieve human rejuvenation one day. In this context, we overview the main scenarios proposed for the future of the socio-economic and ethical challenges associated with such an emerging field. Ultimately, this review aims to inspire future research on interventions that promote healthy ageing for all.

摘要

追求青春之泉一直是科学家和人类的着迷之处。衰老的特征是细胞衰退,增加了与年龄相关疾病的易感性,与表观遗传修饰密切相关。最近,重编程诱导的衰老逆转策略开始极大地改变了长寿研究,不仅可以解决与年龄相关的缺陷,而且可能逆转细胞衰老过程。因此,在这篇综述中,我们强调了衰老过程中的主要表观遗传变化,以及利用转录因子的当前新兴表观遗传重编程策略的最新进展。值得注意的是,部分重编程可以重置衰老时钟,而不会消除细胞身份。有前途的基于化学的衰老逆转策略利用小分子,包括 DNA 甲基转移酶和组蛋白去乙酰化酶抑制剂,也在讨论中。此外,与长寿干预并行,我们简要介绍了用于准确评估衰老和评估重编程方法的表观遗传时钟的基础。更进一步,随着这些科学突破,我们见证了长寿生物技术产业的兴起,旨在延长健康寿命,理想情况下有一天实现人类衰老逆转。在这种情况下,我们概述了与这一新兴领域相关的社会经济和伦理挑战的未来的主要情景。最终,本综述旨在为促进所有人健康衰老的干预措施的未来研究提供灵感。

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