Macrophage-like cells derived from vascular smooth muscle cells (SMCs) play critical roles in atherogenesis, and DNA hydroxymethylation was implicated in transdifferentiation. We examined transcriptomes and (hydroxy)methylomes of human coronary artery SMCs during cholesterol-induced transdifferentiation. A unique approach of exhaustive identification of differentially expressed genes followed by Gene Ontology-centric clustering facilitated deeper understanding of multifaceted modulations of genes involved in extracellular matrix organization, angiogenesis, cell migration, hypoxia response, and cholesterol biosynthesis. Intriguingly, type I interferon response was transiently activated, presumably forming an immuno-metabolic circuit with cho...
Atherosclerosis involves phenotypic modulation and transdifferentiation of vascular smooth muscle ce...
A key element of atherosclerosis, the primary cause of coronary artery disease (CAD), is chronic inf...
Aims: Genetics can explain just above 10% of the observed heritability in cardiovascular diseases. E...
Coronary artery disease is complex, arising from many genetic and environmental factors. Thedisease ...
Although nowadays it is well known that the human transcriptome can importantly vary according to ex...
Abstract Background Atherosclerosis (AT) is a chronic...
Abstract Background Atherosclerosis (AT) is a chronic...
Although nowadays it is well known that the human transcriptome can importantly vary according to ex...
Epigenetic mechanisms of gene regulation in context of cardiovascular diseases are of considerable i...
Epigenetic mechanisms of gene regulation in context of cardiovascular diseases are of considerable i...
Atherosclerosis is a chronic arterial disease which impacts systemically the function of organs and ...
<div><p>Epigenetic mechanisms of gene regulation in context of cardiovascular diseases are of consid...
This article contains further data and information from our published manuscript [1]. We aim to iden...
Spontaneous coronary artery dissection (SCAD) and coronary artery disease (CAD) both represent cardi...
Spontaneous coronary artery dissection (SCAD) and coronary artery disease (CAD) both represent cardi...
Atherosclerosis involves phenotypic modulation and transdifferentiation of vascular smooth muscle ce...
A key element of atherosclerosis, the primary cause of coronary artery disease (CAD), is chronic inf...
Aims: Genetics can explain just above 10% of the observed heritability in cardiovascular diseases. E...
Coronary artery disease is complex, arising from many genetic and environmental factors. Thedisease ...
Although nowadays it is well known that the human transcriptome can importantly vary according to ex...
Abstract Background Atherosclerosis (AT) is a chronic...
Abstract Background Atherosclerosis (AT) is a chronic...
Although nowadays it is well known that the human transcriptome can importantly vary according to ex...
Epigenetic mechanisms of gene regulation in context of cardiovascular diseases are of considerable i...
Epigenetic mechanisms of gene regulation in context of cardiovascular diseases are of considerable i...
Atherosclerosis is a chronic arterial disease which impacts systemically the function of organs and ...
<div><p>Epigenetic mechanisms of gene regulation in context of cardiovascular diseases are of consid...
This article contains further data and information from our published manuscript [1]. We aim to iden...
Spontaneous coronary artery dissection (SCAD) and coronary artery disease (CAD) both represent cardi...
Spontaneous coronary artery dissection (SCAD) and coronary artery disease (CAD) both represent cardi...
Atherosclerosis involves phenotypic modulation and transdifferentiation of vascular smooth muscle ce...
A key element of atherosclerosis, the primary cause of coronary artery disease (CAD), is chronic inf...
Aims: Genetics can explain just above 10% of the observed heritability in cardiovascular diseases. E...