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Maintained memory in aging is associated with young epigenetic age

Sofie Degerman, Maria Josefsson, Annelie Nordin Adolfsson, Sigrid Wennstedt, Mattias Landfors, Z. Haider, Sara Pudas, Magnus Hultdin, Lars Nyberg, Rolf Adolfsson

Neurobiology of Aging · 2017 · ▲ 102 citations

Abstract

Epigenetic alterations during aging have been proposed to contribute to decline in physical and cognitive functions, and accelerated epigenetic aging has been associated with disease and all-cause mortality later in life. In this study, we estimated epigenetic age dynamics in groups with different memory trajectories (maintained high performance, average decline, and accelerated decline) over a 15-year period. Epigenetic (DNA-methylation [DNAm]) age was assessed, and delta age (DNAm age - chronological age) was calculated in blood samples at baseline (age: 55-65 years) and 15 years later in 52 age- and gender-matched individuals from the Betula study in Sweden. A lower delta DNAm age was observed for those with maintained memory functions compared with those with average (p = 0.035) or accelerated decline (p = 0.037). Moreover, separate analyses revealed that DNAm age at follow-up, but not chronologic age, was a significant predictor of dementia (p = 0.019). Our findings suggest that young epigenetic age contributes to maintained memory in aging.

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OpenAlex
DOI
10.1016/j.neurobiolaging.2017.02.009
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2026-06-03 MST

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APA
Degerman, S., Josefsson, M., Adolfsson, A.N., Wennstedt, S., Landfors, M., Haider, Z., Pudas, S., Hultdin, M., Nyberg, L., &amp; Adolfsson, R. (2017). Maintained memory in aging is associated with young epigenetic age. <em>Neurobiology of Aging</em>. https://doi.org/10.1016/j.neurobiolaging.2017.02.009
Vancouver
Degerman S, Josefsson M, Adolfsson AN, Wennstedt S, Landfors M, Haider Z, et al. Maintained memory in aging is associated with young epigenetic age. Neurobiology of Aging. 2017. doi:10.1016/j.neurobiolaging.2017.02.009.
BibTeX
@article{sofie2017Mainta, title = {Maintained memory in aging is associated with young epigenetic age}, author = {Sofie Degerman and Maria Josefsson and Annelie Nordin Adolfsson and Sigrid Wennstedt and Mattias Landfors and Z. Haider and Sara Pudas and Magnus Hultdin and Lars Nyberg and Rolf Adolfsson}, journal = {Neurobiology of Aging}, year = {2017}, doi = {10.1016/j.neurobiolaging.2017.02.009}, }

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