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Evidence of epigenetic alterations in thrombosis and coagulation: A systematic review
M D Patsouras1, P G Vlachoyiannopoulos1
1Department of Pathophysiology, School of Medicine, National and Kapodistrian University of Athens, Greece.
Insights
Epigenetic alterations, including DNA methylation and histone modifications, are linked to thrombosis and cardiovascular disease (CVD). These changes, influenced by environmental factors, offer potential therapeutic targets for thrombotic disorders.
Area of Science:
- Cardiovascular Science
- Epigenetics
- Thrombosis Research
Background:
- Cardiovascular disease (CVD) and thrombosis are leading global causes of death, with complex underlying mechanisms.
- While heritability plays a role, lifestyle and environmental factors significantly influence CVD incidence.
- Epigenetic variations, arising from gene-environment interactions, are increasingly recognized in cardiovascular pathophysiology.
Purpose of the Study:
- To systematically review human studies on epigenetic alterations implicated in thrombosis.
- To explore the role of epigenetic regulators like DNA methylation, histone PTMs, and miRNAs in thrombotic diseases.
- To assess the potential diagnostic and therapeutic utility of epigenetic modifications in thrombosis.
Main Methods:
- Systematic review of human studies.
- Analysis of data on epigenetic alterations in thrombotic diseases.
- Examination of associations between epigenetic changes and CVD risk factors.
Main Results:
- Epigenetic alterations are evident in coronary artery disease, cerebrovascular disease, preeclampsia, and antiphospholipid syndrome.
- Differential CpG methylation and histone PTMs are linked to prothrombotic and proinflammatory gene expression.
- These epigenetic changes correlate with risk factors like smoking, pollution, hypertriglyceridemia, and comorbidities.
Conclusions:
- Epigenetic regulation significantly impacts the pathophysiology of thrombotic disorders.
- Epigenetic modifications represent promising targets for the diagnosis and treatment of thrombosis and CVD.
- Further research can elucidate the dynamic and potentially reversible nature of epigenetic control in cardiovascular health.
Abstract:
Thrombosis in the context of Cardiovascular disease (CVD) affects mainly the blood vessels supplying the heart, brain and peripheries and it is the leading cause of death worldwide. The pathophysiological thrombotic mechanisms are largely unknown. Heritability contributes to a 30% of the incidence of CVD. The remaining variation can be explained by life style factors such as smoking, dietary and exercise habits, environmental exposure to toxins, and drug usage and other comorbidities. Epigenetic variation can be acquired or inherited and constitutes an interaction between genes and the environment. Epigenetics have been implicated in atherosclerosis, ischemia/reperfusion damage and the cardiovascular response to hypoxia. Epigenetic regulators of gene expression are mainly the methylation of CpG islands, histone post translational modifications (PTMs) and microRNAs (miRNAs). These epigenetic regulators control gene expression either through activation or silencing. Epigenetic control is mostly dynamic and can potentially be manipulated to prevent or reverse the uncontrolled expression of genes, a trait that renders them putative therapeutic targets. In the current review, we systematically studied and present available data on epigenetic alterations implicated in thrombosis derived from human studies. Evidence of epigenetic alterations is observed in several thrombotic diseases such as Coronary Artery Disease and Cerebrovascular Disease, Preeclampsia and Antiphospholipid Syndrome. Differential CpG methylation and specific histone PTMs that control transcription of prothrombotic and proinflammatory genes have also been associated with predisposing factors of thrombosis and CVD, such us smoking, air pollution, hypertriglyceridemia, occupational exposure to particulate matter and comorbidities including cancer, Chronic Obstructive Pulmonary Disease and Chronic Kidney Disease. These clinical observations are further supported by in vitro experiments and indicate that epigenetic regulation affects the pathophysiology of thrombotic disorders with potential diagnostic or therapeutic utility.
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