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DNA methylation clock DNAmFitAge shows regular exercise is associated with slower aging and systemic adaptation

Mátyás Jókai, Ferenc Torma, Kristen M. McGreevy, Erika Koltai, Zoltán Bori, Gergely Babszki, Péter Bakonyi, Zoltán Gombos, Bernadett György, Dóra Aczél, László S. Tóth, Péter Osváth, Marcell Fridvalszky, Tímea Téglás, Anikó Pósa

GeroScience · 2023 · ▲ 51 citations

Abstract

Abstract DNAmPhenoAge, DNAmGrimAge, and the newly developed DNAmFitAge are DNA methylation (DNAm)-based biomarkers that reflect the individual aging process. Here, we examine the relationship between physical fitness and DNAm-based biomarkers in adults aged 33–88 with a wide range of physical fitness (including athletes with long-term training history). Higher levels of VO 2 max ( ρ = 0.2, p = 6.4E − 4, r = 0.19, p = 1.2E − 3), Jumpmax ( p = 0.11, p = 5.5E − 2, r = 0.13, p = 2.8E − 2), Gripmax ( ρ = 0.17, p = 3.5E − 3, r = 0.16, p = 5.6E − 3), and HDL levels ( ρ = 0.18, p = 1.95E − 3, r = 0.19, p = 1.1E − 3) are associated with better verbal short-term memory. In addition, verbal short-term memory is associated with decelerated aging assessed with the new DNAm biomarker FitAgeAcceleration ( ρ : − 0.18, p = 0.0017). DNAmFitAge can distinguish high-fitness individuals from low/medium-fitness individuals better than existing DNAm biomarkers and estimates a younger biological age in the high-fit males and females (1.5 and 2.0 years younger, respectively). Our research shows that regular physical exercise contributes to observable physiological and methylation differences which are beneficial to the aging process. DNAmFitAge has now emerged as a new biological marker of quality of life.

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Provenance

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OpenAlex
DOI
10.1007/s11357-023-00826-1
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2026-06-22 MST

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APA
Jókai, M., Torma, F., McGreevy, K.M., Koltai, E., Bori, Z., Babszki, G., Bakonyi, P., Gombos, Z., György, B., Aczél, D., Tóth, L.S., Osváth, P., Fridvalszky, M., Téglás, T., Pósa, A., Kujach, S., Olek, R.A., Kawamura, T., Seki, Y., &amp; Suzuki, K. (2023). DNA methylation clock DNAmFitAge shows regular exercise is associated with slower aging and systemic adaptation. <em>GeroScience</em>. https://doi.org/10.1007/s11357-023-00826-1
Vancouver
Jókai M, Torma F, McGreevy KM, Koltai E, Bori Z, Babszki G, et al. DNA methylation clock DNAmFitAge shows regular exercise is associated with slower aging and systemic adaptation. GeroScience. 2023. doi:10.1007/s11357-023-00826-1.
BibTeX
@article{mtys2023DNAmet, title = {DNA methylation clock DNAmFitAge shows regular exercise is associated with slower aging and systemic adaptation}, author = {Mátyás Jókai and Ferenc Torma and Kristen M. McGreevy and Erika Koltai and Zoltán Bori and Gergely Babszki and Péter Bakonyi and Zoltán Gombos and Bernadett György and Dóra Aczél and László S. Tóth and Péter Osváth and Marcell Fridvalszky and Tímea Téglás and Anikó Pósa and Sylwester Kujach and Robert A. Olek and Takuji Kawamura and Yasuhiro Seki and Katsuhiko Suzuki and Kumpei Tanisawa and Sataro Goto and Csaba Kerepesi and István Boldogh and Xueqing Ba}, journal = {GeroScience}, year = {2023}, doi = {10.1007/s11357-023-00826-1}, }

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