Open access · CC-BY
via OpenAlex
Deciphering the role of immune cell composition in epigenetic age acceleration: Insights from <scp>cell‐type</scp> deconvolution applied to human blood epigenetic clocks
Ze Zhang, Samuel R. Reynolds, Hannah Stolrow, Ji‐Qing Chen, Brock C. Christensen, Lucas A. Salas
Aging Cell · 2023 · ▲ 60 citations
Abstract
Aging is a significant risk factor for various human disorders, and DNA methylation clocks have emerged as powerful tools for estimating biological age and predicting health-related outcomes. Methylation data from blood DNA has been a focus of more recently developed DNA methylation clocks. However, the impact of immune cell composition on epigenetic age acceleration (EAA) remains unclear as only some clocks incorporate partial cell type composition information when analyzing EAA. We investigated associations of 12 immune cell types measured by cell-type deconvolution with EAA predicted by six widely-used DNA methylation clocks in data from >10,000 blood samples. We observed significant associations of immune cell composition with EAA for all six clocks tested. Across the clocks, nine or more of the 12 cell types tested exhibited significant associations with EAA. Higher memory lymphocyte subtype proportions were associated with increased EAA, and naïve lymphocyte subtypes were associated with decreased EAA. To demonstrate the potential confounding of EAA by immune cell composition, we applied EAA in rheumatoid arthritis. Our research maps immune cell type contributions to EAA in human blood and offers opportunities to adjust for immune cell composition in EAA studies to a significantly more granular level. Understanding associations of EAA with immune profiles has implications for the interpretation of epigenetic age and its relevance in aging and disease research. Our detailed map of immune cell type contributions serves as a resource for studies utilizing epigenetic clocks across diverse research fields, including aging-related diseases, precision medicine, and therapeutic interventions.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1111/acel.14071
- Canonical
- link ↗
- Fetched
- 2026-07-28 MST
Cite this
APA
Zhang, Z., Reynolds, S.R., Stolrow, H., Chen, J., Christensen, B.C., & Salas, L.A. (2023). Deciphering the role of immune cell composition in epigenetic age acceleration: Insights from <scp>cell‐type</scp> deconvolution applied to human blood epigenetic clocks. <em>Aging Cell</em>. https://doi.org/10.1111/acel.14071
Vancouver
Zhang Z, Reynolds SR, Stolrow H, Chen J, Christensen BC, Salas LA. Deciphering the role of immune cell composition in epigenetic age acceleration: Insights from <scp>cell‐type</scp> deconvolution applied to human blood epigenetic clocks. Aging Cell. 2023. doi:10.1111/acel.14071.
BibTeX
@article{ze2023Deciph,
title = {Deciphering the role of immune cell composition in epigenetic age acceleration: Insights from <scp>cell‐type</scp> deconvolution applied to human blood epigenetic clocks},
author = {Ze Zhang and Samuel R. Reynolds and Hannah Stolrow and Ji‐Qing Chen and Brock C. Christensen and Lucas A. Salas},
journal = {Aging Cell},
year = {2023},
doi = {10.1111/acel.14071},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Aging 2017
Preprint · CC-BY
Accelerated epigenetic aging in Werner syndrome
Communications Biology 2024
Open access · CC-BY
Development of an epigenetic clock resistant to changes in immune cell composition
Bioinformatics and biology insights 2026
Open access · OA
EpigeneticAgePipeline: An R Package for Comprehensive Assessment of Epigenetic Age Metrics From Methylation Microarrays.
Genes & Nutrition 2006
Open access · OA
Nutrition, sirtuins and aging
Human Molecular Genetics 2023
Open access · CC-BY
Accelerated epigenetic aging and DNA methylation alterations in Berardinelli–Seip congenital lipodystrophy
GeroScience 2022
Preprint · OA