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Updated: May 28, 2026

Imaging Approaches to Assessments of Toxicological Oxidative Stress Using Genetically-encoded Fluorogenic Sensors
Published on: February 7, 2018
Hypothesis: hyperhomocysteinemia is an indicator of oxidant stress
1Pathology & Laboratory Medicine Service, Durham VA Medical Center, Durham, NC 27705, USA.
Insights
Elevated homocysteine levels are linked to various diseases. However, vitamin supplements don't reduce cardiovascular risk, suggesting homocysteine may be a marker, not a cause, of disease.
Area of Science:
- Biochemistry
- Cardiovascular Disease
- Nutritional Science
Background:
- Elevated plasma homocysteine is linked to atherosclerosis, thrombosis, and other pathologies.
- Homocysteine metabolism requires B-vitamins; levels are sensitive to folate status.
- Clinical trials show vitamin supplementation lowers homocysteine but not cardiovascular events.
Purpose of the Study:
- To review data linking hyperhomocysteinemia, folate status, and oxidant stress.
- To explore whether homocysteine is a causal factor or a marker for disease pathologies.
Main Methods:
- Literature review of studies on homocysteine, B-vitamins, and cardiovascular outcomes.
- Analysis of data connecting hyperhomocysteinemia with oxidant stress mechanisms.
Main Results:
- Homocysteine is associated with increased risk of atherosclerosis and thrombosis.
- Vitamin supplementation effectively reduces homocysteine levels.
- Despite homocysteine reduction, clinical trials show no significant benefit for cardiovascular events.
Conclusions:
- Homocysteine may not be a direct cause of atherothrombotic disorders.
- Hyperhomocysteinemia might serve as a marker for underlying oxidant stress.
- Oxidant stress, rather than homocysteine itself, could be the primary mediator of these disorders.
Abstract:
Elevated plasma homocysteine levels are associated with an increased risk of atherosclerosis and thrombosis, as well as a variety of other pathologies such as birth defects, Alzheimer's disease and other dementias, osteoporosis, diabetes and renal disease. Homocysteine metabolism is catalyzed by a number of enzymes that require B-vitamins as cofactors, and homocysteine levels are particularly responsive to folate status. The predictive power of plasma homocysteine level as a risk factor for atherothrombotic orders raised the appealing hypothesis that reduction of homocysteine levels by vitamin supplementation might result in a commensurate reduction is the risk of atherothrombotic events. Unfortunately, most clinical trials failed to show a significant benefit of vitamin supplementation on cardiovascular events, in spite of significant lowering of plasma homocysteine levels. Thus, it is not clear whether homocysteine actually plays a causal role in many pathologies with which it is associated, or whether it is instead a marker for some other underlying mechanism. A large body of data links hyperhomocysteinemia and folate status with oxidant stress. In this article I review data that suggests that homocysteine not only promotes cellular and protein injury via oxidant mechanisms, but is also a marker for the presence of pathological oxidant stress. Thus, it is possible that hyperhomocysteinemia is not a common primary cause of atherothrombotic disorders in the general population, but rather a marker of systemic or endothelial oxidant stress that is a major mediator of these disorders.
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