Epigenetic Clock Explains White Matter Hyperintensity Burden Irrespective of Chronological Age

Author:

Jiménez-Balado Joan,Giralt-Steinhauer Eva,Fernández-Pérez IsabelORCID,Rey Lucía,Cuadrado-Godia ElisaORCID,Ois ÁngelORCID,Rodríguez-Campello AnaORCID,Soriano-Tárraga CarolinaORCID,Lazcano UxueORCID,Macias-Gómez AdriàORCID,Suárez-Pérez Antoni,Revert Anna,Estragués Isabel,Beltrán-Mármol Brigitte,Medrano-Martorell Santiago,Capellades Jaume,Roquer JaumeORCID,Jiménez-Conde JordiORCID

Abstract

In this manuscript we studied the relationship between WMH and biological age (B-age) in patients with acute stroke. We included in this study 247 patients with acute stroke recruited at Hospital del Mar having both epigenetic (DNA methylation) and magnetic resonance imaging data. WMH were measured using a semi-automated method. B-age was calculated using two widely used methods: the Hannum and Horvath formulas. We used multiple linear regression models to interrogate the role of B-age on WMH volume after adjusting for chronological age (C-age) and other covariables. Average C-age of the sample was 68.4 (±11.8) and we observed a relatively high median WMH volume (median = 8.8 cm3, Q1–Q3 = 4.05–18.8). After adjusting for potential confounders, we observed a significant effect of B-ageHannum on WMH volume (βHannum = 0.023, p-value = 0.029) independently of C-age, which remained significant (βC-age = 0.021, p-value = 0.036). Finally, we performed a mediation analysis, which allowed us to discover that 42.7% of the effect of C-age on WMH is mediated by B-ageHannum. On the other hand, B-ageHoarvath showed no significant associations with WMH after being adjusted for C-age. In conclusion, we show for the first time that biological age, measured through DNA methylation, contributes substantially to explain WMH volumetric burden irrespective of chronological age.

Funder

“Registro BASICMAR” Funding

Fondos de Investigación Sanitaria ISC III

Instituto de Salud Carlos III (ISCIII) and by the European Union NextGenerationEU, Mecanismo para la Recuperación y la Resiliencia

Recercaixa’13

Spain’s Ministry of Health-Instituto de Salud Carlos III

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

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