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Published on: October 15, 2010
Role of hyperhomocysteinemia in endothelial dysfunction and atherothrombotic disease
R C Austin1, S R Lentz, G H Werstuck
1Department of Pathology and Molecular Medicine, McMaster University and the Henderson Research Centre, Hamilton, Ontario, Canada. raustin@thrombosis.hhscr.org
Insights
High homocysteine levels (HHcy) are a risk factor for cardiovascular disease. HHcy causes endothelial dysfunction and atherosclerosis, but B vitamin supplementation may help mitigate these effects.
Area of Science:
- Cardiovascular Science
- Metabolic Disease
- Cellular Biology
Background:
- Hyperhomocysteinemia (HHcy) is an independent risk factor for cardiovascular diseases like stroke and heart disease.
- Genetic mutations (CBS, MTHFR) or nutritional deficiencies (B vitamins) can cause HHcy.
- HHcy is linked to endothelial dysfunction and atherosclerosis.
Purpose of the Study:
- To review the role of HHcy in endothelial dysfunction.
- To explore cellular mechanisms, including ER stress, contributing to HHcy-induced atherothrombosis.
Main Methods:
- Review of in vitro and in vivo studies.
- Analysis of animal models for genetic and diet-induced HHcy.
- Examination of cellular pathways like endoplasmic reticulum (ER) stress and unfolded protein response (UPR).
Main Results:
- Animal studies confirm HHcy's causal role in endothelial dysfunction and atherosclerosis.
- B vitamin enrichment mitigates HHcy's adverse vascular effects.
- HHcy induces endoplasmic reticulum (ER) stress and unfolded protein response (UPR) activation.
Conclusions:
- HHcy contributes to endothelial dysfunction and atherosclerosis.
- ER stress is a key cellular mechanism underlying HHcy's atherogenic effects.
- B vitamins may offer a therapeutic strategy against HHcy-related cardiovascular risks.
Abstract:
Hyperhomocysteinemia (HHcy) is an independent risk factor for cardiovascular disease, including ischemic heart disease, stroke, and peripheral vascular disease. Mutations in the enzymes responsible for homocysteine metabolism, particularly cystathionine beta-synthase (CBS) or 5,10-methylenetetrahydrofolate reductase (MTHFR), result in severe forms of HHcy. Additionally, nutritional deficiencies in B vitamin cofactors required for homocysteine metabolism, including folic acid, vitamin B6 (pyridoxal phosphate), and/or B12 (methylcobalamin), can induce HHcy. Studies using animal models of genetic- and diet-induced HHcy have recently demonstrated a causal relationship between HHcy, endothelial dysfunction, and accelerated atherosclerosis. Dietary enrichment in B vitamins attenuates these adverse effects of HHcy. Although oxidative stress and activation of proinflammatory factors have been proposed to explain the atherogenic effects of HHcy, recent in vitro and in vivo studies demonstrate that HHcy induces endoplasmic reticulum (ER) stress, leading to activation of the unfolded protein response (UPR). This review summarizes the current role of HHcy in endothelial dysfunction and explores the cellular mechanisms, including ER stress, that contribute to atherothrombosis.
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