Epigenetic clocks were initially developed to track chronological age, but accumulating evidence indicates that they can also predict biological age. They are usually based on the analysis of DNA methylation by genome-wide methods, but targeted approaches, based on the assessment of a small number of CpG sites, are advisable in several settings. In this study, we developed a targeted epigenetic clock purposely optimized for the measurement of biological age. The clock includes six genomic regions mapping in ELOVL2, NHLRC1, AIM2, EDARADD, SIRT7 and TFAP2E genes, selected from a re-analysis of existing microarray data, whose DNA methylation is measured by EpiTYPER assay. In healthy subjects (n = 278), epigenetic age calculated using the targe...
BACKGROUND: Epigenetic clocks use DNA methylation (DNAm) levels of specific sets of CpG dinucleotide...
Inferring the chronological and biological age of individuals is fundamental to population ecology a...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Epigenetic clocks were initially developed to track chronological age, but accumulating evidence ind...
This research was supported by the Australian Research Council (DP160102400), the Australian Nationa...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as ‘epigeneti...
Children have special rights for protection compared to adults in our society. However, more than 1/...
DNA methylation has been proven to be highly correlated with age. This has enabled the development o...
Abstract Background Epigenetic clocks have been recog...
Epigenetic changes have long been investigated in association with the process of aging in humans. D...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as 'epigeneti...
BACKGROUND: Epigenetic clocks use DNA methylation (DNAm) levels of specific sets of CpG dinucleotide...
Inferring the chronological and biological age of individuals is fundamental to population ecology a...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Epigenetic clocks were initially developed to track chronological age, but accumulating evidence ind...
This research was supported by the Australian Research Council (DP160102400), the Australian Nationa...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as ‘epigeneti...
Children have special rights for protection compared to adults in our society. However, more than 1/...
DNA methylation has been proven to be highly correlated with age. This has enabled the development o...
Abstract Background Epigenetic clocks have been recog...
Epigenetic changes have long been investigated in association with the process of aging in humans. D...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as 'epigeneti...
BACKGROUND: Epigenetic clocks use DNA methylation (DNAm) levels of specific sets of CpG dinucleotide...
Inferring the chronological and biological age of individuals is fundamental to population ecology a...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...