Human DNA methylation data have been used to develop biomarkers of ageing, referred to as ‘epigenetic clocks’, which have been widely used to identify differences between chronological age and biological age in health and disease including neurodegeneration, dementia and other brain phenotypes. Existing DNA methylation clocks have been shown to be highly accurate in blood but are less precise when used in older samples or in tissue types not included in training the model, including brain. We aimed to develop a novel epigenetic clock that performs optimally in human cortex tissue and has the potential to identify phenotypes associated with biological ageing in the brain. We generated an extensive dataset of human cortex DNA methylation data...
Background: The Horvath epigenetic clock is widely used. It predicts age quite well from 353 CpG sit...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
open3noMethylage is an epigenetic marker of biological age that exploits the correlation between the...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as 'epigeneti...
Epigenetic clocks are calculated by combining DNA methylation states across select CpG sites to esti...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. The...
The number of age predictors based on DNA methylation (DNAm) profile is rising due to their potentia...
Epigenetic changes have long been investigated in association with the process of aging in humans. D...
This research was supported by the Australian Research Council (DP160102400), the Australian Nationa...
Epigenetic clocks were initially developed to track chronological age, but accumulating evidence ind...
Inferring the chronological and biological age of individuals is fundamental to population ecology a...
DNA methylation (DNAm)-based age clocks have been studied extensively as a biomarker of human ageing...
Published onlineJournal ArticleDNA methylation (DNAm) levels lend themselves for defining an epigene...
Children have special rights for protection compared to adults in our society. However, more than 1/...
Abstract Background Epigenetic clocks have been recog...
Background: The Horvath epigenetic clock is widely used. It predicts age quite well from 353 CpG sit...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
open3noMethylage is an epigenetic marker of biological age that exploits the correlation between the...
Human DNA methylation data have been used to develop biomarkers of ageing, referred to as 'epigeneti...
Epigenetic clocks are calculated by combining DNA methylation states across select CpG sites to esti...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. The...
The number of age predictors based on DNA methylation (DNAm) profile is rising due to their potentia...
Epigenetic changes have long been investigated in association with the process of aging in humans. D...
This research was supported by the Australian Research Council (DP160102400), the Australian Nationa...
Epigenetic clocks were initially developed to track chronological age, but accumulating evidence ind...
Inferring the chronological and biological age of individuals is fundamental to population ecology a...
DNA methylation (DNAm)-based age clocks have been studied extensively as a biomarker of human ageing...
Published onlineJournal ArticleDNA methylation (DNAm) levels lend themselves for defining an epigene...
Children have special rights for protection compared to adults in our society. However, more than 1/...
Abstract Background Epigenetic clocks have been recog...
Background: The Horvath epigenetic clock is widely used. It predicts age quite well from 353 CpG sit...
Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. Thes...
open3noMethylage is an epigenetic marker of biological age that exploits the correlation between the...