Abstract Background Epigenetics changes have been shown to be affected by cigarette smoking. Cigarette smoke (CS)-mediated DNA methylation can potentially affect several cellular and pathophysiological processes, acute exacerbations, and comorbidity in the lungs of patients with chronic obstructive pulmonary disease (COPD). We sought to determine whether genome-wide lung DNA methylation profiles of smokers and patients with COPD were significantly different from non-smokers. We isolated DNA from parenchymal lung tissues of patients including eight lifelong non-smokers, eight current smokers, and eight patients with COPD and analyzed the samples using Illumina’s Infinium HumanMethylation450 BeadChip. Results Our data revealed that the differ...
DNA methylation patterns in chronic pulmonary obstructive disease (COPD) might offer new insights in...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...
Background: Epigenetics changes have been shown to be affected by cigarette smoking. Cigarette smoke...
Background: Epigenetics changes have been shown to be affected by cigarette smoking. Cigarette smoke...
Background: Epigenetics changes have been shown to be affected by cigarette smoking. Cigarette smoke...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Background Genetic and environmental factors play a role in the development of COPD. The epigenome, ...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Background Genetic and environmental factors play a role in the development of COPD. The epigenome, ...
BACKGROUND: Active smoking is the main risk factor for COPD. Here, epigenetic mechanisms may play a ...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...
DNA methylation patterns in chronic pulmonary obstructive disease (COPD) might offer new insights in...
DNA methylation patterns in chronic pulmonary obstructive disease (COPD) might offer new insights in...
DNA methylation patterns in chronic pulmonary obstructive disease (COPD) might offer new insights in...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...
Background: Epigenetics changes have been shown to be affected by cigarette smoking. Cigarette smoke...
Background: Epigenetics changes have been shown to be affected by cigarette smoking. Cigarette smoke...
Background: Epigenetics changes have been shown to be affected by cigarette smoking. Cigarette smoke...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Background Genetic and environmental factors play a role in the development of COPD. The epigenome, ...
Background: Genetic and environmental factors play a role in the development of COPD. The epigenome,...
Background Genetic and environmental factors play a role in the development of COPD. The epigenome, ...
BACKGROUND: Active smoking is the main risk factor for COPD. Here, epigenetic mechanisms may play a ...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...
DNA methylation patterns in chronic pulmonary obstructive disease (COPD) might offer new insights in...
DNA methylation patterns in chronic pulmonary obstructive disease (COPD) might offer new insights in...
DNA methylation patterns in chronic pulmonary obstructive disease (COPD) might offer new insights in...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...
Active smoking is the main risk factor for COPD and epigenetic mechanisms such as DNA methylation up...