表观遗传修饰因子是健康老龄化的游戏规则改变者。

IF 2.2 4区 医学 Q3 GERIATRICS & GERONTOLOGY
Shikha Sharma, Ramesh Bhonde
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引用次数: 0

摘要

衰老过程中的表观遗传改变表现为基因表达改变,将其与寿命调节、遗传不稳定和疾病联系起来。饮食和表观遗传修饰因子通过调节表观遗传标记对生物体的寿命产生深远的影响。然而,我们对衰老和疾病发病过程中表观遗传过程的多因素性质的理解,以及药物、饮食或环境因素对其逆转的理解,仍然令人困惑。本文综述了近年来表观遗传学与衰老及衰老相关疾病的研究进展。此外,它还讨论了表观遗传时钟及其在各种年龄相关疾病(包括癌症)中的含义。尽管表观遗传是一个可逆的过程,但表观遗传改变恢复正常的速度有多快是一个有趣的问题。因此,本文探讨了利用营养和间充质干细胞分泌组加速表观遗传逆转的可能性,并强调了寻找新的治疗性表观遗传修饰剂来对抗衰老过程中的表观遗传改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenetic Modifiers as Game Changers for Healthy Aging.

Epigenetic alterations during aging are manifested with altered gene expression linking it to lifespan regulation, genetic instability, and diseases. Diet and epigenetic modifiers exert a profound effect on the lifespan of an organism by modulating the epigenetic marks. However, our understanding of the multifactorial nature of the epigenetic process during aging and the onset of disease conditions as well as its reversal by epidrugs, diet, or environmental factors is still mystifying. This review covers the key findings in epigenetics related to aging and age-related diseases. Furthermore, it holds a discussion about the epigenetic clocks and their implications in various age-related disease conditions, including cancer. Although, epigenetics is a reversible process, how fast the epigenetic alterations can revert to normal is an intriguing question. Therefore, this article touches on the possibility of utilizing nutrition and mesenchymal stem cell secretome to accelerate the epigenetic reversal and emphasizes the identification of new therapeutic epigenetic modifiers to counter epigenetic alteration during aging.

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来源期刊
Rejuvenation research
Rejuvenation research 医学-老年医学
CiteScore
4.50
自引率
0.00%
发文量
41
审稿时长
3 months
期刊介绍: Rejuvenation Research publishes cutting-edge, peer-reviewed research on rejuvenation therapies in the laboratory and the clinic. The Journal focuses on key explorations and advances that may ultimately contribute to slowing or reversing the aging process, and covers topics such as cardiovascular aging, DNA damage and repair, cloning, and cell immortalization and senescence. Rejuvenation Research coverage includes: Cell immortalization and senescence Pluripotent stem cells DNA damage/repair Gene targeting, gene therapy, and genomics Growth factors and nutrient supply/sensing Immunosenescence Comparative biology of aging Tissue engineering Late-life pathologies (cardiovascular, neurodegenerative and others) Public policy and social context.
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