4.6 Article

An epigenetic biomarker of aging for lifespan and healthspan

期刊

AGING-US
卷 10, 期 4, 页码 573-591

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/aging.101414

关键词

epigenetic clock; DNA methylation; biomarker; healthspan

资金

  1. NIH/NIA [U34AG051425-01, K99AG052604]
  2. NIH/NHLBI [60442456 BAA23]
  3. National Institute of Environmental Health Sciences [R01-ES020836]
  4. National Heart, Lung, and Blood Institute, National Institutes of Health, U.S. Department of Health and Human Services [HHSN268201100046C, HHSN268201100001C, HHSN268201100002C, HHSN268201100003C, HHSN268201100004C, HHSN271201100004C]
  5. Italian Ministry of Health [ICS110.1/RF97.71]
  6. U.S. National Institute on Aging [263 MD 9164, 263 MD 821336]
  7. NHLBI [R01HL116446]

向作者/读者索取更多资源

Identifying reliable biomarkers of aging is a major goal in geroscience. While the first generation of epigenetic biomarkers of aging were developed using chronological age as a surrogate for biological age, we hypothesized that incorporation of composite clinical measures of phenotypic age that capture differences in lifespan and healthspan may identify novel CpGs and facilitate the development of a more powerful epigenetic biomarker of aging. Using an innovative two-step process, we develop a new epigenetic biomarker of aging, DNAm PhenoAge that strongly outperforms previous measures in regards to predictions for a variety of aging outcomes, including all-cause mortality, cancers, healthspan, physical functioning, and Alzheimer's disease. While this biomarker was developed using data from whole blood, it correlates strongly with age in every tissue and cell tested. Based on an in-depth transcriptional analysis in sorted cells, we find that increased epigenetic, relative to chronological age, is associated with increased activation of pro-inflammatory and interferon pathways, and decreased activation of transcriptional/translational machinery, DNA damage response, and mitochondrial signatures. Overall, this single epigenetic biomarker of aging is able to capture risks for an array of diverse outcomes across multiple tissues and cells, and provide insight into important pathways in aging.

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