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表观遗传年龄在一天中波动。

Epigenetic age oscillates during the day.

机构信息

Institute of Biotechnology, Life Sciences Center, Vilnius University, Vilnius, Lithuania.

The Krembil Family Epigenetics Laboratory, The Campbell Family Mental Health Research Institute, Centre for Addiction and Mental Health, Toronto, Ontario, Canada.

出版信息

Aging Cell. 2024 Jul;23(7):e14170. doi: 10.1111/acel.14170. Epub 2024 Apr 18.

Abstract

Since their introduction, epigenetic clocks have been extensively used in aging, human disease, and rejuvenation studies. In this article, we report an intriguing pattern: epigenetic age predictions display a 24-h periodicity. We tested a circadian blood sample collection using 17 epigenetic clocks addressing different aspects of aging. Thirteen clocks exhibited significant oscillations with the youngest and oldest age estimates around midnight and noon, respectively. In addition, daily oscillations were consistent with the changes of epigenetic age across different times of day observed in an independant populational dataset. While these oscillations can in part be attributed to variations in white blood cell type composition, cell count correction methods might not fully resolve the issue. Furthermore, some epigenetic clocks exhibited 24-h periodicity even in the purified fraction of neutrophils pointing at plausible contributions of intracellular epigenomic oscillations. Evidence for circadian variation in epigenetic clocks emphasizes the importance of the time-of-day for obtaining accurate estimates of epigenetic age.

摘要

自问世以来,表观遗传时钟在衰老、人类疾病和衰老研究中得到了广泛应用。在本文中,我们报告了一个有趣的模式:表观遗传年龄预测显示出 24 小时的周期性。我们使用 17 种不同的表观遗传时钟测试了一个昼夜节律的血液样本采集,这些时钟针对衰老的不同方面。13 个时钟表现出明显的振荡,最年轻和最年长的估计分别在午夜和中午左右。此外,每日的振荡与在一个独立的人口数据集观察到的不同时间的表观遗传年龄变化一致。虽然这些振荡部分可以归因于白细胞类型组成的变化,但细胞计数校正方法可能无法完全解决这个问题。此外,一些表观遗传时钟即使在嗜中性粒细胞的纯化部分也表现出 24 小时的周期性,这表明细胞内表观基因组振荡可能有一定的贡献。表观遗传时钟的昼夜变化的证据强调了在一天中的准确时间获得准确的表观遗传年龄估计的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a142/11258449/88e19a1952ac/ACEL-23-e14170-g001.jpg

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