Open access · CC-BY
via OpenAlex
Prenatal and early life influences on epigenetic age in children: a study of mother–offspring pairs from two cohort studies
Andrew J. Simpkin, Gibran Hemani, Matthew Suderman, Tom R. Gaunt, Oliver Lyttleton, Wendy L. McArdle, Susan M. Ring, Gemma C. Sharp, Kate Tilling, Steve Horvath, Sonja Kunze, Annette Peters, Mélanie Waldenberger, Cavin Ward‐Caviness, Ellen A. Nøhr
Human Molecular Genetics · 2015 · ▲ 257 citations
Abstract
DNA methylation-based biomarkers of aging are highly correlated with actual age. Departures of methylation-estimated age from actual age can be used to define epigenetic measures of child development or age acceleration (AA) in adults. Very little is known about genetic or environmental determinants of these epigenetic measures of aging. We obtained DNA methylation profiles using Infinium HumanMethylation450 BeadChips across five time-points in 1018 mother-child pairs from the Avon Longitudinal Study of Parents and Children. Using the Horvath age estimation method, we calculated epigenetic age for these samples. AA was defined as the residuals from regressing epigenetic age on actual age. AA was tested for associations with cross-sectional clinical variables in children. We identified associations between AA and sex, birth weight, birth by caesarean section and several maternal characteristics in pregnancy, namely smoking, weight, BMI, selenium and cholesterol level. Offspring of non-drinkers had higher AA on average but this difference appeared to resolve during childhood. The associations between sex, birth weight and AA found in ARIES were replicated in an independent cohort (GOYA). In children, epigenetic AA measures are associated with several clinically relevant variables, and early life exposures appear to be associated with changes in AA during adolescence. Further research into epigenetic aging, including the use of causal inference methods, is required to better our understanding of aging.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1093/hmg/ddv456
- Canonical
- link ↗
- Fetched
- 2026-07-15 MST
Cite this
APA
Simpkin, A.J., Hemani, G., Suderman, M., Gaunt, T.R., Lyttleton, O., McArdle, W.L., Ring, S.M., Sharp, G.C., Tilling, K., Horvath, S., Kunze, S., Peters, A., Waldenberger, M., Ward‐Caviness, C., Nøhr, E.A., Sørensen, T.I.A., Relton, C.L., & Smith, G.D. (2015). Prenatal and early life influences on epigenetic age in children: a study of mother–offspring pairs from two cohort studies. <em>Human Molecular Genetics</em>. https://doi.org/10.1093/hmg/ddv456
Vancouver
Simpkin AJ, Hemani G, Suderman M, Gaunt TR, Lyttleton O, McArdle WL, et al. Prenatal and early life influences on epigenetic age in children: a study of mother–offspring pairs from two cohort studies. Human Molecular Genetics. 2015. doi:10.1093/hmg/ddv456.
BibTeX
@article{andrew2015Prenat,
title = {Prenatal and early life influences on epigenetic age in children: a study of mother–offspring pairs from two cohort studies},
author = {Andrew J. Simpkin and Gibran Hemani and Matthew Suderman and Tom R. Gaunt and Oliver Lyttleton and Wendy L. McArdle and Susan M. Ring and Gemma C. Sharp and Kate Tilling and Steve Horvath and Sonja Kunze and Annette Peters and Mélanie Waldenberger and Cavin Ward‐Caviness and Ellen A. Nøhr and Thorkild I. A. Sørensen and Caroline L. Relton and George Davey Smith},
journal = {Human Molecular Genetics},
year = {2015},
doi = {10.1093/hmg/ddv456},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
International Journal of Epidemiology 2016
Open access · CC-BY
The epigenetic clock and physical development during childhood and adolescence: longitudinal analysis from a UK birth cohort
Clinical Epigenetics 2023
Open access · CC-BY
DNA methylation age at birth and childhood: performance of epigenetic clocks and characteristics associated with epigenetic age acceleration in the Project Viva cohort
Environment International 2021
Open access · CC-BY
The early-life exposome and epigenetic age acceleration in children
Aging Cell 2023
Open access · CC-BY
The association between adverse childhood experiences and epigenetic age acceleration in the Canadian longitudinal study on aging (<scp>CLSA</scp>)
Clinical Epigenetics 2017
Open access · CC-BY
Associations between maternal risk factors of adverse pregnancy and birth outcomes and the offspring epigenetic clock of gestational age at birth
Frontiers in Molecular Neuroscience 2022
Open access · CC-BY