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Published on: October 12, 2017
Atherogenic Effect of Homocysteine, a Biomarker of Inflammation and Its Treatment
1Department of Physiology, College of Medicine, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.
Insights
High homocysteine (HHcy) levels are a key risk factor for atherosclerosis and cardiovascular diseases. Reducing HHcy through vitamin therapy and lifestyle changes can prevent these conditions.
Area of Science:
- Cardiovascular Science
- Biochemistry
- Nutritional Science
Background:
- Hyperhomocysteinemia (HHcy) is an independent risk factor for atherosclerosis, a silent condition leading to ischemic stroke and heart disease.
- The synthesis and metabolism of homocysteine (Hcy) involve complex biochemical pathways requiring B vitamins (B6, B9, B12).
Purpose of the Study:
- To elucidate the synthesis, causes, and mechanisms of HHcy-induced atherosclerosis.
- To review therapeutic strategies for managing HHcy and its associated cardiovascular risks.
Main Methods:
- Literature review of homocysteine metabolism, HHcy etiological factors, and pathogenic mechanisms.
- Analysis of therapeutic interventions, including vitamin supplementation and lifestyle modifications.
Main Results:
- HHcy is caused by vitamin deficiencies (B6, B9, B12), genetic factors, and lifestyle choices like smoking and alcohol consumption.
- HHcy promotes atherosclerosis via oxidative stress, reduced nitric oxide availability, inflammation, and increased thrombogenicity.
- Therapy with folic acid (B9), vitamin B6, and vitamin B12 effectively lowers Hcy levels, with folic acid being most potent.
Conclusions:
- HHcy significantly contributes to atherosclerosis by generating atherogenic biomolecules.
- Reducing Hcy levels through vitamin therapy and lifestyle changes is a crucial strategy for preventing and treating atherosclerosis-induced cardiovascular diseases.
Abstract:
Hyperhomocysteinemia (HHcy) is an independent risk factor for atherosclerosis. Ischemic stroke and heart disease, coronary heart disease, and cardiovascular disease are events resulting from long-lasting and silent atherosclerosis. This paper deals with the synthesis of homocysteine (Hcy), causes of HHcy, mechanism of HHcy-induced atherosclerosis, and treatment of HHcy. Synthesis and metabolism of Hcy involves demethylation, transmethylation, and transsulfuration, and these processes require vitamin B 6 and vitamin B 12 folic acid (vitamin B 9 ). Causes of HHcy include deficiency of vitamins B 6 , B 9 , and B 12 , genetic defects, use of smokeless tobacco, cigarette smoking, alcohol consumption, diabetes, rheumatoid arthritis, low thyroid hormone, consumption of caffeine, folic acid antagonist, cholesterol-lowering drugs (niacin), folic acid antagonist (phenytoin), prolonged use of proton pump inhibitors, metformin, and hypertension. HHcy-induced atherosclerosis may be mediated through oxidative stress, decreased availability of nitric oxide (NO), increased expression of monocyte chemoattractant protein-1, smooth muscle cell proliferation, increased thrombogenicity, and induction of arterial connective tissue. HHcy increases the generation of atherogenic biomolecules such as nuclear factor-kappa B, proinflammatory cytokines (IL-1β, IL-6, and IL-8), cell adhesion molecules (intercellular adhesion molecule-1, vascular cell adhesion molecule-1, and E-selection), growth factors (IGF-1 and TGF-β), and monocyte colony-stimulating factor which lead to the development of atherosclerosis. NO which is protective against the development of atherosclerosis is reduced by HHcy. Therapy with folic acid, vitamin B 6 , and vitamin B 12 lowers the levels of Hcy, with folic acid being the most effective. Dietary sources of folic acid, vitamin B 6 , vitamin B 12 , omega-3 fatty acid, and green coffee extract reduce Hcy. Abstaining from drinking coffee and alcohol, and smoking also reduces blood levels of Hcy. In conclusion, HHcy induces atherosclerosis by generating atherogenic biomolecules, and treatment of atherosclerosis-induced diseases may be by reducing the levels of Hcy.
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