Background: Tobacco smoking is a risk factor for multiple diseases, including cardiovascular disease and diabetes. Many smoking-associated signals have been detected in the blood methylome, but the extent to which these changes are widespread to metabolically relevant tissues, and impact gene expression or metabolic health, remains unclear. Methods: We investigated smoking-associated DNA methylation and gene expression variation in adipose tissue biopsies from 542 healthy female twins. Replication, tissue specificity, and longitudinal stability of the smoking-associated effects were explored in additional adipose, blood, skin, and lung samples. We characterized the impact of adipose tissue smoking methylation and expression signals o...
AIM: Epigenetic changes may occur in response to environmental stressors, and an altered epigenome p...
We conducted a genome-wide association study of blood DNA methylation and smoking, attempted replica...
Background: Tobacco smoking is a well-known modifiable risk factor for many chronic diseases, includ...
Background: Tobacco smoking is a risk factor for multiple diseases, including cardiovascular disease...
Background Tobacco smoking is a well-known modifiable risk factor for many chronic diseases, includi...
Advanced integrative analysis of DNA methylation and transcriptomics data may provide deeper insight...
Abstract Background Smoking remains one of the leadin...
Background DNA methylation leaves a long-term signature of smoking exposure and is one potential mec...
Background: Smoking has been reported to be associated with peripheral blood DNA methylation, but th...
AIMS/HYPOTHESIS: Tobacco smoking, a risk factor for diabetes, is an established modifier of DNA meth...
Background: Smoking has been reported to be associated with peripheral blood DNA methylation, but th...
Changes in DNA methylation may be a potential mechanism that mediates the effects of smoking on phys...
<div><p>Environmental factors such as tobacco smoking may have long-lasting effects on DNA methylati...
<p>Smoking increases the risk of many diseases and could act through changes in DNA methylation patt...
Environmental factors such as tobacco smoking may have long-lasting effects on DNA methylation patte...
AIM: Epigenetic changes may occur in response to environmental stressors, and an altered epigenome p...
We conducted a genome-wide association study of blood DNA methylation and smoking, attempted replica...
Background: Tobacco smoking is a well-known modifiable risk factor for many chronic diseases, includ...
Background: Tobacco smoking is a risk factor for multiple diseases, including cardiovascular disease...
Background Tobacco smoking is a well-known modifiable risk factor for many chronic diseases, includi...
Advanced integrative analysis of DNA methylation and transcriptomics data may provide deeper insight...
Abstract Background Smoking remains one of the leadin...
Background DNA methylation leaves a long-term signature of smoking exposure and is one potential mec...
Background: Smoking has been reported to be associated with peripheral blood DNA methylation, but th...
AIMS/HYPOTHESIS: Tobacco smoking, a risk factor for diabetes, is an established modifier of DNA meth...
Background: Smoking has been reported to be associated with peripheral blood DNA methylation, but th...
Changes in DNA methylation may be a potential mechanism that mediates the effects of smoking on phys...
<div><p>Environmental factors such as tobacco smoking may have long-lasting effects on DNA methylati...
<p>Smoking increases the risk of many diseases and could act through changes in DNA methylation patt...
Environmental factors such as tobacco smoking may have long-lasting effects on DNA methylation patte...
AIM: Epigenetic changes may occur in response to environmental stressors, and an altered epigenome p...
We conducted a genome-wide association study of blood DNA methylation and smoking, attempted replica...
Background: Tobacco smoking is a well-known modifiable risk factor for many chronic diseases, includ...