Skip to content
Open access · CC-BY via OpenAlex

The early-life exposome and epigenetic age acceleration in children

Paula de Prado-Bert, Carlos Ruiz-Arenas, Marta Vives-Usano, Sandra Andrušaitytė, Solène Cadiou, Ángel Carracedo, Maribel Casas, Leda Chatzi, Payam Dadvand, Juan R. González, Regina Gražulevičienė, Kristine B. Gützkow, Line Småstuen Haug, Carles Hernandéz-Ferrer, Hector C. Keun

Environment International · 2021 · ▲ 117 citations

Abstract

The early-life exposome influences future health and accelerated biological aging has been proposed as one of the underlying biological mechanisms. We investigated the association between more than 100 exposures assessed during pregnancy and in childhood (including indoor and outdoor air pollutants, built environment, green environments, tobacco smoking, lifestyle exposures, and biomarkers of chemical pollutants), and epigenetic age acceleration in 1,173 children aged 7 years old from the Human Early-Life Exposome project. Age acceleration was calculated based on Horvath’s Skin and Blood clock using child blood DNA methylation measured by Infinium HumanMethylation450 BeadChips. We performed an exposure-wide association study between prenatal and childhood exposome and age acceleration. Maternal tobacco smoking during pregnancy was nominally associated with increased age acceleration. For childhood exposures, indoor particulate matter absorbance (PMabs) and parental smoking were nominally associated with an increase in age acceleration. Exposure to the organic pesticide dimethyl dithiophosphate and the persistent pollutant polychlorinated biphenyl-138 (inversely associated with child body mass index) were protective for age acceleration. None of the associations remained significant after multiple-testing correction. Pregnancy and childhood exposure to tobacco smoke and childhood exposure to indoor PMabs may accelerate epigenetic aging from an early age.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1016/j.envint.2021.106683
Canonical
link ↗
Fetched
2026-07-22 MST

Cite this

APA
Prado-Bert, P.D., Ruiz-Arenas, C., Vives-Usano, M., Andrušaitytė, S., Cadiou, S., Carracedo, �., Casas, M., Chatzi, L., Dadvand, P., González, J.R., Gražulevičienė, R., Gützkow, K.B., Haug, L.S., Hernandéz-Ferrer, C., Keun, H.C., Lepeule, J., Maître, L., McEachan, R., Nieuwenhuijsen, M., &amp; Pelegrí-Sisó, D. (2021). The early-life exposome and epigenetic age acceleration in children. <em>Environment International</em>. https://doi.org/10.1016/j.envint.2021.106683
Vancouver
Prado-Bert PD, Ruiz-Arenas C, Vives-Usano M, Andrušaitytė S, Cadiou S, Carracedo �, et al. The early-life exposome and epigenetic age acceleration in children. Environment International. 2021. doi:10.1016/j.envint.2021.106683.
BibTeX
@article{paula2021Theear, title = {The early-life exposome and epigenetic age acceleration in children}, author = {Paula de Prado-Bert and Carlos Ruiz-Arenas and Marta Vives-Usano and Sandra Andrušaitytė and Solène Cadiou and Ángel Carracedo and Maribel Casas and Leda Chatzi and Payam Dadvand and Juan R. González and Regina Gražulevičienė and Kristine B. Gützkow and Line Småstuen Haug and Carles Hernandéz-Ferrer and Hector C. Keun and Johanna Lepeule and Léa Maître and Rosie McEachan and Mark Nieuwenhuijsen and Dolors Pelegrí-Sisó and Oliver Robinson and Rémy Slama and Marina Vafeiadi and Jordi Sunyer and Martine Vrijheid}, journal = {Environment International}, year = {2021}, doi = {10.1016/j.envint.2021.106683}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings