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Maternal obesity and gestational diabetes reprogram the methylome of offspring beyond birth by inducing epigenetic signatures in metabolic and developmental pathways
Juan José Alba‐Linares, Raúl F. Pérez, Juan Ramón Tejedor, David Bastante-Rodríguez, Francisco A. Ponce, Nuria García Carbonell, Rafael Gómez Zafra, Agustín F. Fernández, Mario F. Fraga, Empar Lurbe
Cardiovascular Diabetology · 2023 · ▲ 55 citations
Abstract
BACKGROUND: Obesity is a negative chronic metabolic health condition that represents an additional risk for the development of multiple pathologies. Epidemiological studies have shown how maternal obesity or gestational diabetes mellitus during pregnancy constitute serious risk factors in relation to the appearance of cardiometabolic diseases in the offspring. Furthermore, epigenetic remodelling may help explain the molecular mechanisms that underlie these epidemiological findings. Thus, in this study we explored the DNA methylation landscape of children born to mothers with obesity and gestational diabetes during their first year of life. METHODS: We used Illumina Infinium MethylationEPIC BeadChip arrays to profile more than 770,000 genome-wide CpG sites in blood samples from a paediatric longitudinal cohort consisting of 26 children born to mothers who suffered from obesity or obesity with gestational diabetes mellitus during pregnancy and 13 healthy controls (measurements taken at 0, 6 and 12 month; total N = 90). We carried out cross-sectional and longitudinal analyses to derive DNA methylation alterations associated with developmental and pathology-related epigenomics. RESULTS: We identified abundant DNA methylation changes during child development from birth to 6 months and, to a lesser extent, up to 12 months of age. Using cross-sectional analyses, we discovered DNA methylation biomarkers maintained across the first year of life that could discriminate children born to mothers who suffered from obesity or obesity with gestational diabetes. Importantly, enrichment analyses suggested that these alterations constitute epigenetic signatures that affect genes and pathways involved in the metabolism of fatty acids, postnatal developmental processes and mitochondrial bioenergetics, such as CPT1B, SLC38A4, SLC35F3 and FN3K. Finally, we observed evidence of an interaction between developmental DNA methylation changes and maternal metabolic condition alterations. CONCLUSIONS: Our observations highlight the first six months of development as being the most crucial for epigenetic remodelling. Furthermore, our results support the existence of systemic intrauterine foetal programming linked to obesity and gestational diabetes that affects the childhood methylome beyond birth, which involves alterations related to metabolic pathways, and which may interact with ordinary postnatal development programmes.
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- 10.1186/s12933-023-01774-y
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- 2026-06-03 MST
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APA
Alba‐Linares, J.J., Pérez, R.F., Tejedor, J.R., Bastante-Rodríguez, D., Ponce, F.A., Carbonell, N.G., Zafra, R.G., Fernández, A.F., Fraga, M.F., & Lurbe, E. (2023). Maternal obesity and gestational diabetes reprogram the methylome of offspring beyond birth by inducing epigenetic signatures in metabolic and developmental pathways. <em>Cardiovascular Diabetology</em>. https://doi.org/10.1186/s12933-023-01774-y
Vancouver
Alba‐Linares JJ, Pérez RF, Tejedor JR, Bastante-Rodríguez D, Ponce FA, Carbonell NG, et al. Maternal obesity and gestational diabetes reprogram the methylome of offspring beyond birth by inducing epigenetic signatures in metabolic and developmental pathways. Cardiovascular Diabetology. 2023. doi:10.1186/s12933-023-01774-y.
BibTeX
@article{juan2023Matern,
title = {Maternal obesity and gestational diabetes reprogram the methylome of offspring beyond birth by inducing epigenetic signatures in metabolic and developmental pathways},
author = {Juan José Alba‐Linares and Raúl F. Pérez and Juan Ramón Tejedor and David Bastante-Rodríguez and Francisco A. Ponce and Nuria García Carbonell and Rafael Gómez Zafra and Agustín F. Fernández and Mario F. Fraga and Empar Lurbe},
journal = {Cardiovascular Diabetology},
year = {2023},
doi = {10.1186/s12933-023-01774-y},
}
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