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The role of epigenetic clocks in explaining educational inequalities in mortality: a multi-cohort study and meta-analysis

Academic Article
Publication Date:
2022
Short description:
The role of epigenetic clocks in explaining educational inequalities in mortality: a multi-cohort study and meta-analysis / Fiorito, G., Pedron, S., Ochoa-Rosales, C., Mccrory, C., Polidoro, S., Zhang, Y., Dugué, P.a., Ratliff, S., Zhao, W.n., Mckay, G.j., Costa, G., Solinas, M.g., Mullan Harris, K., Tumino, R., Grioni, S., Ricceri, F., Panico, S., Brenner, H., Schwettmann, L., Waldenberger, M., et al.. - In: JOURNALS OF GERONTOLOGY SERIES A-BIOLOGICAL SCIENCES AND MEDICAL SCIENCES. - ISSN 1079-5006. - 17 Series A, glac041,:(2022). [10.1093/gerona/glac041]
abstract:
Educational inequalities in all-cause mortality have been observed for decades. However, the underlying biological mechanisms are not well known. We aimed to assess the role of DNA methylation changes in blood captured by epigenetic clocks in explaining these inequalities.

Data were from eight prospective population-based cohort studies, representing 13,021 participants. First, educational inequalities and their portion explained by Horvath DNAmAge, Hannum DNAmAge, DNAmPhenoAge, and DNAmGrimAge epigenetic clocks were assessed in each cohort via counterfactual-based mediation models, on both absolute (hazard difference) and relative (hazard ratio) scales, and by sex. Second, estimates from each cohort were pooled through a random effect meta-analysis model.

Men with low education had an excess mortality from all causes of 57 deaths per 10,000 person-years (95% confidence interval (CI): 38, 76) compared to their more advantaged counterparts. For women, the excess mortality was 4 deaths per 10,000 person-years (95% CI: -11, 19). On the relative scale, educational inequalities corresponded to hazard ratios of 1.33 (95% CI: 1.12, 1.57) for men and 1.15 (95% CI: 0.96, 1.37) for women. DNAmGrimAge accounted for the largest proportion, approximately 50%, of the educational inequalities for men, while the proportion was negligible for women. Most of this mediation was explained by differential effects of unhealthy lifestyles and morbidities of the WHO risk factors for premature mortality.

These results support DNA methylation-based epigenetic aging as a signature of educational inequalities in life expectancy emphasizing the need for policies to address the unequal social distribution of these WHO risk factors.
Iris type:
1.1 Articolo in rivista
Keywords:
DNA methylation, biomarkers, longevity, social inequalities
List of contributors:
Fiorito, G; Pedron, S; Ochoa-Rosales, C; Mccrory, C; Polidoro, S; Zhang, Y; Dugué, Pa; Ratliff, S; Zhao, Wn; Mckay, Gj; Costa, G; Solinas, Mg; Mullan Harris, K; Tumino, R; Grioni, S; Ricceri, F; Panico, S; Brenner, H; Schwettmann, L; Waldenberger, M; Matias-Garcia, Pr; Peters, A; Hodge, A; Giles, Gg; Schmitz, Ll; Levine, M; Smith, Ja; Liu, Y; Kee, F; Young, Is; Mcguinness, B; Mcknight, Aj; van Meurs, J; Voortman, T; Kenny, Ra; Vineis, P; Carmeli, C.
Authors of the University:
SOLINAS Maria Giuliana
Handle:
https://iris.uniss.it/handle/11388/256819
Published in:
JOURNALS OF GERONTOLOGY SERIES A-BIOLOGICAL SCIENCES AND MEDICAL SCIENCES
Journal
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https://academic.oup.com/biomedgerontology/advance-article-abstract/doi/10.1093/gerona/glac041/6529712?redirectedFrom=fulltext
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