0000000000532618

AUTHOR

Sillanpää Elina

showing 2 related works from this author

Leisure-time physical activity and DNA methylation age-a twin study.

2018

Background Epigenetic clocks may increase our understanding on human aging and how genetic and environmental factors regulate an individual aging process. One of the most promising clocks is Horvath’s DNA methylation (DNAm) age. Age acceleration, i.e., discrepancy between DNAm age and chronological age, tells us whether the person is biologically young or old compared to his/her chronological age. Several environmental and lifestyle factors have been shown to affect life span. We investigated genetic and environmental predictors of DNAm age in young and older monozygotic (MZ) and dizygotic (DZ) twins with a focus on leisure time physical activity. Results Quantitative genetic modeling revea…

AdultMaleEpigenetic clockQuantitative geneticsPhysical activityResearchTwin designAge FactorsTwins MonozygoticDNA MethylationMiddle AgedMethylationEpigenesis GeneticCohort StudiesYoung AdultAge DistributionTwins DizygoticHumansFemaleExerciseLife StyleAgedClinical epigenetics
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Biological clocks and physical functioning in monozygotic female twins

2018

Background Biomarkers of biological aging – DNA methylation age (DNAm age) and leukocyte telomere length (LTL)– correlate strongly with chronological age across the life course. It is, however, unclear how these measures of cellular wear and tear are associated with muscle strength and functional capacity, which are known to decline with older age and are associated with mortality. We investigated if DNAm age and LTL were associated with body composition and physical functioning by examining 48 monozygotic twin sisters. Methods White blood cell DNAm age (predicted years) was calculated from Illumina 450 k BeadChip methylation data using an online calculator. DNAm age acceleration was define…

AgingEpigenetic clockTwin designfyysinen toimintakykybiomarkkeritWalkinglcsh:GeriatricsMethylationphysical functionAGEBiological ClocksPost-menopausalHumansMuscle Strengthpost-menopausalkaksostutkimusOLDERHERITABILITYHORMONE REPLACEMENT THERAPYMORTALITYTwins MonozygoticMiddle AgedBODY-MASS INDEXlcsh:RC952-954.6ikääntyminenTelomerestwin design3121 General medicine internal medicine and other clinical medicineTELOMERE LENGTHBody CompositionPhysical functionSKELETAL-MUSCLEFemaletelomeeritGRIP STRENGTHmethylationepigenetic clockResearch Article
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