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April 22, 2026Cells1 citationsOpen Access

Epigenetics as Biomarkers of Cumulative Physical Performance in Community-Dwelling Adults: A Cross-Sectional Feasibility Study

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MIMaayan InslerMSMaxim ShapiroVHVered Hermush

Key Points

  • This research aims to explore the feasibility of DNA methylation-based epigenetic clocks as biomarkers for assessing cumulative physical performance.
  • Examined epigenetic age estimators using standardized motor function assessments in 24 adults aged 39 and older.
  • Evaluated associations between epigenetic markers and a composite score of physical performance.
  • DNAmAgeHannum showed a strong correlation with physical performance (ρ = −0.59, p < 0.005).
  • Both DNAmAge and DNAmPhenoAge were significantly associated with motor function assessments (ρ = −0.48, p < 0.026).

Abstract

With global life expectancy steadily rising, promoting healthy aging is becoming a critical objective of public health. Physical function tends to decline gradually, often beginning in midlife, when subtle changes start to occur and accumulate undetected until later years. This study examines the feasibility of using DNA methylation-based epigenetic clocks as biomarkers for cumulative physical performance in 24 community-dwelling adults aged 39 years and older. Our findings reveal that several epigenetic age estimators, particularly DNAmAgeHannum, are significantly associated with a novel composite score criterion derived from standardized motor function assessments (DNAmAge: ρ = −0.48, p < 0.026; DNAmPhenoAge: ρ = −0.48, p < 0.026) with DNAmAgeHannum (ρ = −0.59, p < 0.005). These findings support the potential of using epigenetic aging markers to detect early physiological decline, even in relatively healthy, midlife populations, offering a promising tool for the early identification of age-related functional deterioration.

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Cite This Study

Insler et al. (2026) studied this question.

synapsesocial.com/papers/69e865126e0dea528dde9ac4https://doi.org/10.3390/cells15080718
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