Inferring the chronological and biological age of individuals is fundamental to population ecology and our understanding of ageing itself, its evolution, and the biological processes that affect or even cause ageing. Epigenetic clocks based on DNA methylation (DNAm) at specific CpG sites show a strong correlation with chronological age in humans, and discrepancies between inferred and actual chronological age predict morbidity and mortality. Recently, a growing number of epigenetic clocks have been developed in non-model animals and we here review these studies. We also conduct a meta-analysis to assess the effects of different aspects of experimental protocol on the performance of epigenetic clocks for non-model animals. Two measures of pe...
open3noMethylage is an epigenetic marker of biological age that exploits the correlation between the...
Age-associated DNA methylation reflects aspect of biological aging-therefore epigenetic clocks for m...
Abstract Evaluation of biological age, as opposed to chronological age, is of high relevance for int...
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. The...
Epigenetic changes have long been investigated in association with the process of aging in humans. D...
Background DNA methylation changes with age. Chronological age predictors built from DNA methylation...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as ‘epigeneti...
The number of age predictors based on DNA methylation (DNAm) profile is rising due to their potentia...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Children have special rights for protection compared to adults in our society. However, more than 1/...
Epigenetic clocks for mice were generated based on deep-sequencing analysis of the methylome. Here, ...
Abstract Background Epigenetic clocks have been recog...
DNA methylation age (DNAm age, epigenetic clock) is a novel and promising biomarker of aging. It is ...
open3noMethylage is an epigenetic marker of biological age that exploits the correlation between the...
Age-associated DNA methylation reflects aspect of biological aging-therefore epigenetic clocks for m...
Abstract Evaluation of biological age, as opposed to chronological age, is of high relevance for int...
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. The...
Epigenetic changes have long been investigated in association with the process of aging in humans. D...
Background DNA methylation changes with age. Chronological age predictors built from DNA methylation...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as ‘epigeneti...
The number of age predictors based on DNA methylation (DNAm) profile is rising due to their potentia...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
Children have special rights for protection compared to adults in our society. However, more than 1/...
Epigenetic clocks for mice were generated based on deep-sequencing analysis of the methylome. Here, ...
Abstract Background Epigenetic clocks have been recog...
DNA methylation age (DNAm age, epigenetic clock) is a novel and promising biomarker of aging. It is ...
open3noMethylage is an epigenetic marker of biological age that exploits the correlation between the...
Age-associated DNA methylation reflects aspect of biological aging-therefore epigenetic clocks for m...
Abstract Evaluation of biological age, as opposed to chronological age, is of high relevance for int...