Aging clocks dissociate biological from chronological age. The estimation of biological age is important for identifying gerontogenes and assessing environmental, nutritional, or therapeutic impacts on the aging process. Recently, methylation markers were shown to allow estimation of biological age based on age-dependent somatic epigenetic alterations. However, DNA methylation is absent in some species such as Caenorhabditis elegans and it remains unclear whether and how the epigenetic clocks affect gene expression. Aging clocks based on transcriptomes have suffered from considerable variation in the data and relatively low accuracy. Here, we devised an approach that uses temporal scaling and binarization of C. elegans transcriptomes to def...
The development of biological markers of aging has primarily focused on adult samples. Epigenetic cl...
Epigenetic alterations pose one major hallmark of organismal aging. Here, we provide an overview on ...
The biological basis of lifespan regulation is a subject of intense interest, and epigenetic control...
Epigenetic clocks were initially developed to track chronological age, but accumulating evidence ind...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Aging research is essential to identifying factors that influence healthy aging, with improved well-...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as 'epigeneti...
Background DNA methylation changes with age. Chronological age predictors built from DNA methylation...
BACKGROUND: DNA methylation changes at a discrete set of sites in the human genome are predictive of...
The number of age predictors based on DNA methylation (DNAm) profile is rising due to their potentia...
BACKGROUND: DNA methylation changes at a discrete set of sites in the human genome are predictive of...
The aging process results in multiple traceable footprints, which can be quantified and used to esti...
Biological aging reflects decline in physiological functions and is an effective indicator of morbid...
DNA methylation has been proven to be highly correlated with age. This has enabled the development o...
The development of biological markers of aging has primarily focused on adult samples. Epigenetic cl...
Epigenetic alterations pose one major hallmark of organismal aging. Here, we provide an overview on ...
The biological basis of lifespan regulation is a subject of intense interest, and epigenetic control...
Epigenetic clocks were initially developed to track chronological age, but accumulating evidence ind...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Aging research is essential to identifying factors that influence healthy aging, with improved well-...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as 'epigeneti...
Background DNA methylation changes with age. Chronological age predictors built from DNA methylation...
BACKGROUND: DNA methylation changes at a discrete set of sites in the human genome are predictive of...
The number of age predictors based on DNA methylation (DNAm) profile is rising due to their potentia...
BACKGROUND: DNA methylation changes at a discrete set of sites in the human genome are predictive of...
The aging process results in multiple traceable footprints, which can be quantified and used to esti...
Biological aging reflects decline in physiological functions and is an effective indicator of morbid...
DNA methylation has been proven to be highly correlated with age. This has enabled the development o...
The development of biological markers of aging has primarily focused on adult samples. Epigenetic cl...
Epigenetic alterations pose one major hallmark of organismal aging. Here, we provide an overview on ...
The biological basis of lifespan regulation is a subject of intense interest, and epigenetic control...