Brain DNA Methylation Age, Lifestyle Factors and Dementia in the Swedish Twin Registry.
cross_sectional · Level IV
Where this comes from
- Record sourced from PubMed, PMID 40491362.
- Also identified by DOI 10.1111/acel.70117 and PMC identifier 12341783.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Advanced age is the most important risk factor for dementia. Measures of biological ageing such as DNA methylation age (DNAmAge) can give more information about the accumulation of age-related molecular damage in different organs than chronological age alone. Using post-mortem brain tissue from Swedish Twin Registry participants, we explored the relationship between lifestyle factors, dementia and DNAmAge measures from prefrontal cortex and cerebellum (n = 27 individuals) and paired blood samples (n = 20 individuals). We observed that smoking was associated with a higher DNAmAge deviation (PCBrainAge + 6.4 years in prefrontal cortex, CI [2.5, 10.3], p = 0.004). Conversely, a longer time spent in formal education was associated with a lower DNAmAge deviation (DNAmClock<sub>Cortical</sub> - 4.8 years in prefrontal cortex, CI [-7.9, -1.8], p = 0.007). We found no significant differences between DNAmAge deviation of dementia cases versus controls, though among dementia cases there was a tendency towards higher DNAmClock<sub>Cortical</sub> deviation in prefrontal cortex for those with a more advanced Braak stage on histopathological assessment (+ 3.4 years, CI [-0.68, 7.50], p = 0.13). There were no clear associations between DNAmAge from brain and blood samples collected prior to death. In summary, these data highlight the impact of smoking and education on biomarkers of brain ageing and emphasise the role for organ-specific biomarkers of ageing.
Medical subject headings
- DNA Methylation
- Life Style
- Dementia
- Brain
- Aging