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NEOage clocks - epigenetic clocks to estimate post-menstrual and postnatal age in preterm infants

Stefan Graw, Marie Camerota, Brian S. Carter, Jennifer Helderman, Julie A. Hofheimer, Elisabeth C. McGowan, Charles R. Neal, Steven L. Pastyrnak, Lynne M. Smith, Sheri A. DellaGrotta, Lynne M. Dansereau, James F. Padbury, Michael O’Shea, Barry M. Lester, Carmen J. Marsit

Aging · 2021 · ▲ 22 citations

Abstract

Epigenetic clocks based on DNA methylation (DNAm) can accurately predict chronological age and are thought to capture biological aging. A variety of epigenetic clocks have been developed for different tissue types and age ranges, but none have focused on postnatal age prediction for preterm infants. Epigenetic estimators of biological age might be especially informative in epidemiologic studies of neonates since DNAm is highly dynamic during the neonatal period and this is a key developmental window. Additionally, markers of biological aging could be particularly important for those born preterm since they are at heightened risk of developmental impairments. We aimed to fill this gap by developing epigenetic clocks for neonatal aging in preterm infants. As part of the Neonatal Neurobehavior and Outcomes in Very Preterm Infants (NOVI) study, buccal cells were collected at NICU discharge to profile DNAm levels in 542 very preterm infants. We applied elastic net regression to identify four epigenetic clocks (NEOage Clocks) predictive of post-menstrual and postnatal age, compatible with the Illumina EPIC and 450K arrays. We observed high correlations between predicted and reported ages (0.93 - 0.94) with root mean squared errors (1.28 - 1.63 weeks). Epigenetic estimators of neonatal aging in preterm infants can be useful tools to evaluate biological maturity and associations with neonatal and long-term morbidities.

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Provenance

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OpenAlex
DOI
10.18632/aging.203637
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2026-07-24 MST

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APA
Graw, S., Camerota, M., Carter, B.S., Helderman, J., Hofheimer, J.A., McGowan, E.C., Neal, C.R., Pastyrnak, S.L., Smith, L.M., DellaGrotta, S.A., Dansereau, L.M., Padbury, J.F., O’Shea, M., Lester, B.M., Marsit, C.J., &amp; Everson, T.M. (2021). NEOage clocks - epigenetic clocks to estimate post-menstrual and postnatal age in preterm infants. <em>Aging</em>. https://doi.org/10.18632/aging.203637
Vancouver
Graw S, Camerota M, Carter BS, Helderman J, Hofheimer JA, McGowan EC, et al. NEOage clocks - epigenetic clocks to estimate post-menstrual and postnatal age in preterm infants. Aging. 2021. doi:10.18632/aging.203637.
BibTeX
@article{stefan2021NEOage, title = {NEOage clocks - epigenetic clocks to estimate post-menstrual and postnatal age in preterm infants}, author = {Stefan Graw and Marie Camerota and Brian S. Carter and Jennifer Helderman and Julie A. Hofheimer and Elisabeth C. McGowan and Charles R. Neal and Steven L. Pastyrnak and Lynne M. Smith and Sheri A. DellaGrotta and Lynne M. Dansereau and James F. Padbury and Michael O’Shea and Barry M. Lester and Carmen J. Marsit and Todd M. Everson}, journal = {Aging}, year = {2021}, doi = {10.18632/aging.203637}, }

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