Related Experiment Video
Updated: Jan 24, 2026

Methylated DNA Immunoprecipitation
Published on: January 2, 2009
DNA methylation abnormalities in atherosclerosis
Samira Tabaei1, Seyyedeh Samaneh Tabaee2
1a Department of Immunology, School of Medicine, Shiraz University of Medical Sciences , Shiraz , Iran.
Insights
DNA methylation, an epigenetic mechanism, significantly impacts atherosclerosis development by altering gene expression. This review explores its role in vascular cell function and disease progression.
Area of Science:
- Cardiovascular Biology
- Epigenetics
- Molecular Medicine
Background:
- Atherosclerosis involves lipid accumulation, inflammation, and endothelial dysfunction in arteries.
- DNA methylation is a key epigenetic mechanism regulating gene expression and cellular processes.
- Its role in atherosclerosis initiation and progression is increasingly recognized.
Purpose of the Study:
- To review recent findings on DNA methylation patterns in atherosclerosis.
- To interpret the functional significance of DNA methylation in vascular cells and tissues.
- To discuss the association of DNA methylation with risk factors like oxidative stress and inflammation.
Main Methods:
- Literature review of studies on DNA methylation and atherosclerosis.
- Analysis of epigenetic regulation in cells and tissues implicated in atherosclerosis.
- Synthesis of data linking DNA methylation to disease pathogenesis.
Main Results:
- DNA methylation regulates genes involved in smooth muscle cell proliferation and endothelial cell integrity.
- Aberrant DNA methylation patterns are linked to atherosclerosis development.
- DNA methyltransferases are critical in arteriosclerosis formation.
Conclusions:
- DNA methylation is undeniably involved in the pathogenesis of atherosclerosis.
- Understanding DNA methylation patterns offers insights into disease mechanisms.
- Further research into epigenetics is crucial for atherosclerosis treatment strategies.
Abstract:
Atherosclerosis is a complex disease with involvement of intermediate-, large-sized arteries. Atherosclerosis is characterized by the accumulation of vascular lipids, immune system activation, inflammation, oxidative stress and oxidized low-density lipoproteins (LDLs), endothelial cell (EC) activation, arterial smooth muscle cell (SMC) proliferation, macrophage activation and foam cell formation that cause endothelial dysfunction. DNA methylation is one of important epigenetic mechanisms which changes gene expression. It has been evident that this mechanism plays an important role in the initiation and propagation of atherosclerosis. Furthermore, DNA methylation is a crucial and distinct mechanism that modulates genes governing cell proliferation, thereby connecting environmental insults with gene expression. This study represents many atherosclerosis-related genes which are regulated through DNA methylation mechanism. Although the role of epigenetics in atherosclerosis is at their infancy. Nevertheless, various studies demonstrated that DNA methylation involvement in this disease is undeniable. DNA methyltransferases are the main player of the smooth muscle cell proliferation, endothelial cell integrity, as well as arteriosclerosis formation. In this review, we focus on recent achievements in the functional and description interpretation of the DNA methylation pattern of cells and tissues implicated in atherosclerosis. Besides, we discuss the association of DNA methylation with oxidative stress, hyperhomocysteinemia (HHcy), ageing, and inflammation in the development and pathogenesis of atherosclerosis.
Related Concept Videos
Abnormal Proliferation
Atherosclerosis III: Management
Atherosclerosis I: Introduction
Respiratory System Abnormal Finding I: Inspection and Percussion
Inspection Findings
During an inspection, several findings may suggest the presence of respiratory distress or disease. Pursed-lip breathing, where exhalation is slowed by...
Cardiovascular System Abnormal Findings I: Inspection and Palpation
Abnormal findings observed during an inspection
Cardiovascular System Abnormal Findings II: Auscultation
Abnormal Heart Sounds
Gallops:

