AbstractEpigenetic dysregulation of gene expression is thought to be critically involved in the pathophysiology of Alzheimer's disease (AD). Recent studies indicate that DNA methylation and DNA hydroxymethylation are 2 important epigenetic mechanisms that regulate gene expression in the aging brain. However, very little is known about the levels of markers of DNA methylation and hydroxymethylation in the brains of patients with AD, the cell-type specificity of putative AD-related alterations in these markers, as well as the link between epigenetic alterations and the gross pathology of AD. The present quantitative immunohistochemical study investigated the levels of the 2 most important markers of DNA methylation and hydroxymethylation, tha...
Objective We explore the role of DNA methylation in Alzheimer's disease (AD). To elucidate where DN...
Epigenetic processes play a key role in the central nervous system and altered levels of 5-methylcyt...
The epigenome dynamically regulates chromatin structure to control cellular function and homeostasis...
Epigenetic dysregulation of gene expression is thought to be critically involved in the pathophysiol...
Epigenetic dysregulation of gene expression is thought to be critically involved in the pathophysiol...
AbstractEpigenetic dysregulation of gene expression is thought to be critically involved in the path...
Background Late-onset Alzheimer's disease (AD) is a complex multifactorial affliction, the pathogene...
The observation that Alzheimer's disease (AD) patients with similar and even identical genetic backg...
Brain aging has been associated with aberrant DNA methylation patterns, and changes in the levels of...
With the aging of the world’s population, Alzheimer’s disease (AD) is a growing problem. It is cause...
Epigenetic modifications to cytosine have been shown to regulate transcription in cancer, embryonic ...
Late-onset Alzheimer's disease (AD) is a complex multifactorial affliction, the pathogenesis of whic...
Brain aging has been associated with aberrant DNA methylation patterns, and changes in the levels of...
Brain aging has been associated with aberrant DNA methylation patterns, and changes in the levels of...
Objective: We explore the role of DNA methylation in Alzheimer’s disease (AD). To elucidate where DN...
Objective We explore the role of DNA methylation in Alzheimer's disease (AD). To elucidate where DN...
Epigenetic processes play a key role in the central nervous system and altered levels of 5-methylcyt...
The epigenome dynamically regulates chromatin structure to control cellular function and homeostasis...
Epigenetic dysregulation of gene expression is thought to be critically involved in the pathophysiol...
Epigenetic dysregulation of gene expression is thought to be critically involved in the pathophysiol...
AbstractEpigenetic dysregulation of gene expression is thought to be critically involved in the path...
Background Late-onset Alzheimer's disease (AD) is a complex multifactorial affliction, the pathogene...
The observation that Alzheimer's disease (AD) patients with similar and even identical genetic backg...
Brain aging has been associated with aberrant DNA methylation patterns, and changes in the levels of...
With the aging of the world’s population, Alzheimer’s disease (AD) is a growing problem. It is cause...
Epigenetic modifications to cytosine have been shown to regulate transcription in cancer, embryonic ...
Late-onset Alzheimer's disease (AD) is a complex multifactorial affliction, the pathogenesis of whic...
Brain aging has been associated with aberrant DNA methylation patterns, and changes in the levels of...
Brain aging has been associated with aberrant DNA methylation patterns, and changes in the levels of...
Objective: We explore the role of DNA methylation in Alzheimer’s disease (AD). To elucidate where DN...
Objective We explore the role of DNA methylation in Alzheimer's disease (AD). To elucidate where DN...
Epigenetic processes play a key role in the central nervous system and altered levels of 5-methylcyt...
The epigenome dynamically regulates chromatin structure to control cellular function and homeostasis...