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Impaired homocysteine metabolism and atherothrombotic disease
1L'Institut National de la Santé et de la Recherche Médicale, Biochimie des Lipoprotéines et Interactions Vasculaires, Faculté de Médecine, Université de Bourgogne, Dijon, France.
Insights
Mild to moderate elevation of plasma homocysteine is a risk factor for cardiovascular disease. Folate and vitamin B6 deficiencies are key determinants, and therapies lowering homocysteine may reduce cardiovascular risk.
Area of Science:
- Cardiovascular Medicine
- Biochemistry
- Nutritional Science
Background:
- Mild to moderate elevation of plasma homocysteine is an established independent risk factor for cardiovascular disease and thrombosis.
- Hyperhomocysteinemia arises from disruptions in homocysteine metabolism pathways, including remethylation and transsulfuration.
- Dietary factors like high methionine intake and deficiencies in folate or vitamin B6 are implicated in elevated homocysteine levels.
Purpose of the Study:
- To review the evidence linking hyperhomocysteinemia to cardiovascular disease.
- To explore the metabolic pathways and risk factors associated with elevated homocysteine.
- To discuss the potential of homocysteine-lowering therapies in cardiovascular risk reduction.
Main Methods:
- Review of retrospective, prospective, and experimental studies.
- Analysis of homocysteine metabolism pathways and associated deficiencies.
- Examination of experimental data on homocysteine's effects on vascular and coagulation systems.
Main Results:
- Elevated homocysteine levels are linked to atherothrombotic disease by affecting vascular wall structure and blood coagulation.
- Oxidative stress from impaired homocysteine metabolism may be a key mechanism in hyperhomocysteinemia-mediated vascular disorders.
- Folate supplementation effectively reduces plasma homocysteine levels.
Conclusions:
- Hyperhomocysteinemia is a significant risk factor for cardiovascular and atherothrombotic diseases.
- Folate and vitamin B6 status are critical in managing homocysteine levels.
- Further research and clinical trials are needed to confirm the efficacy of homocysteine-lowering therapies in cardiovascular disease prevention.
Abstract:
Based on recent retrospective, prospective, and experimental studies, mild to moderate elevation of fasting or postmethionine-load plasma homocysteine is accepted as an independent risk factor for cardiovascular disease and thrombosis in both men and women. Hyperhomocysteinemia results from an inhibition of the remethylation pathway or from an inhibition or a saturation of the transsulfuration pathway of homocysteine metabolism. The involvement of a high dietary intake of methionine-rich animal proteins has not yet been investigated and cannot be ruled out. However, folate deficiency, either associated or not associated with the thermolabile mutation of the N(5,10)-methylenetetrahydrofolate reductase, and vitamin B(6) deficiency, perhaps associated with cystathionine beta-synthase defects or with methionine excess, are believed to be major determinants of the increased risk of cardiovascular disease related to hyperhomocysteinemia. Recent experimental studies have suggested that moderately elevated homocysteine levels are a causal risk factor for atherothrombotic disease because they affect both the vascular wall structure and the blood coagulation system. The oxidant stress that results from impaired homocysteine metabolism, which modifies the intracellular redox status, might play a central role in the molecular mechanisms underlying moderate hyperhomocysteinemia-mediated vascular disorders. Because folate supplementation can efficiently reduce plasma homocysteine levels, both in the fasting state and after methionine loading, results from further prospective cohort studies and from on-going interventional trials will determine whether homocysteine-lowering therapies can contribute to the prevention and reduction of cardiovascular risk. Additionally, these studies will provide unequivocal arguments for the independent and causal relationship between hyperhomocysteinemia and atherothrombotic disease.