Background and aims: Atherogenesis involves a complex interaction between immune cells and lipids, processes greatly influenced by the vascular smooth muscle cell (VSMC) phenotype. The DNA glycosylase NEIL3 has previously been shown to have a role in atherogenesis, though whether this is due to its ability to repair DNA damage or to other non-canonical functions is not yet clear. Hereby, we investigate the role of NEIL3 in atherogenesis, specifically in VSMC phenotypic modulation, which is critical in plaque formation and stability.Methods: Chow diet-fed atherosclerosis-prone Apoe(-/-) mice deficient in Neil3, and NEIL3-abrogated human primary aortic VSMCs were characterized by qPCR, and immunohistochemical and enzymatic-based assays; moreo...
Rationale: DNA damage is present in both genomic and mitochondrial DNA in atherosclerosis. However, ...
(1) Background: Vascular smooth muscle cells (VSMCs) undergo a complex phenotypic switch in response...
Rationale: B cells are abundant in the adventitia of normal and diseased vessels. Yet, the molecular...
Background and aims: Atherogenesis involves a complex interaction between immune cells and lipids, p...
Cardiovascular diseases are one of the top causes of mortality worldwide, and the main underlying ca...
Cardiovascular disease (CVD), which includes cerebral stroke and myocardial infarction, comprises a ...
Increasing evidence suggests that oxidative DNA damage accumulates in atherosclerosis. Recently, we ...
Abstract Atherosclerosis and its consequences cause considerable morbidity and mortality world-wide....
Rationale: DNA damage and the DNA damage response (DDR) have been identified in human atherosclerosi...
Background—Vascular smooth muscle cells (VSMCs) in human atherosclerosis manifest extensive DNA dama...
BACKGROUND: Atherosclerotic plaques demonstrate extensive accumulation of oxidative DNA damage, pred...
Background: Accumulating evidence has implicated DNA methylation in the progression of atheroscleros...
Atherosclerosis is a chronic arterial disease which impacts systemically the function of organs and ...
Link to dataset related to article "The epigenetic enzyme DOT1L orchestrates vascular smooth muscle ...
Abstract DNA damage contributes to atherosclerosis. However, causative links between DNA double-stra...
Rationale: DNA damage is present in both genomic and mitochondrial DNA in atherosclerosis. However, ...
(1) Background: Vascular smooth muscle cells (VSMCs) undergo a complex phenotypic switch in response...
Rationale: B cells are abundant in the adventitia of normal and diseased vessels. Yet, the molecular...
Background and aims: Atherogenesis involves a complex interaction between immune cells and lipids, p...
Cardiovascular diseases are one of the top causes of mortality worldwide, and the main underlying ca...
Cardiovascular disease (CVD), which includes cerebral stroke and myocardial infarction, comprises a ...
Increasing evidence suggests that oxidative DNA damage accumulates in atherosclerosis. Recently, we ...
Abstract Atherosclerosis and its consequences cause considerable morbidity and mortality world-wide....
Rationale: DNA damage and the DNA damage response (DDR) have been identified in human atherosclerosi...
Background—Vascular smooth muscle cells (VSMCs) in human atherosclerosis manifest extensive DNA dama...
BACKGROUND: Atherosclerotic plaques demonstrate extensive accumulation of oxidative DNA damage, pred...
Background: Accumulating evidence has implicated DNA methylation in the progression of atheroscleros...
Atherosclerosis is a chronic arterial disease which impacts systemically the function of organs and ...
Link to dataset related to article "The epigenetic enzyme DOT1L orchestrates vascular smooth muscle ...
Abstract DNA damage contributes to atherosclerosis. However, causative links between DNA double-stra...
Rationale: DNA damage is present in both genomic and mitochondrial DNA in atherosclerosis. However, ...
(1) Background: Vascular smooth muscle cells (VSMCs) undergo a complex phenotypic switch in response...
Rationale: B cells are abundant in the adventitia of normal and diseased vessels. Yet, the molecular...