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Updated: May 22, 2026

Evaluation of Bioenergetic Function in Cerebral Vascular Endothelial Cells
Published on: November 19, 2016
C(1) metabolism and CVD outcomes in older adults
Helene McNulty1, J J Strain, Kristina Pentieva
1Northern Ireland Centre for Food and Health, University of Ulster, Cromore Road, Coleraine BT52 1SA, UK. h.mcnulty@ulster.ac.uk
Insights
Folic acid and B-vitamins may not prevent cardiovascular disease (CVD) events in high-risk patients. However, folic acid shows promise in reducing stroke risk, particularly for those without a prior stroke history.
Area of Science:
- Nutritional Science
- Cardiovascular Medicine
- Genetics
Background:
- Cardiovascular disease (CVD) is a leading cause of death in older adults.
- C(1) donors, including folate and B-vitamins, are investigated for their potential protective effects against CVD.
- The role of plasma homocysteine levels and B-vitamin status in CVD risk is a key area of research.
Purpose of the Study:
- To review the latest evidence on the protective effects of C(1) donors (folate and B-vitamins) in CVD.
- To examine whether these effects are mediated by homocysteine levels.
- To explore novel gene-nutrient interactions, such as with methylenetetrahydrofolate reductase (MTHFR), in CVD.
Main Methods:
- Review of secondary prevention trials and meta-analyses of randomized controlled trials.
- Analysis of genetic studies investigating the MTHFR gene variant (C677T).
- Examination of intervention studies with folic acid and riboflavin.
Main Results:
- Secondary prevention trials generally show no benefit of B-vitamin therapy for CVD events in high-risk patients.
- Folic acid supplementation demonstrates a reduced risk of stroke, especially in individuals without a prior stroke.
- Individuals with the MTHFR 677TT genotype have a higher CVD risk, and riboflavin intervention lowers blood pressure in this group.
Conclusions:
- High-dose folic acid is unlikely to prevent recurrent cardiac events in established CVD patients.
- Evidence supports a role for folic acid in stroke prevention, particularly in primary prevention settings.
- Gene-nutrient interactions, like riboflavin with MTHFR genotype, offer new insights into CVD mechanisms.
Abstract:
CVD is the most common cause of death in people over 65 years. This review considers the latest evidence for a potential protective effect of C(1) donors (folate and the metabolically related B-vitamins) in CVD. Such an effect may or may not be mediated via the role of these nutrients in maintaining plasma homocysteine concentrations within a desirable range. Despite predictions from epidemiological studies that lowering plasma homocysteine would reduce cardiovascular risk, several secondary prevention trials in at-risk patients published since 2004 have failed to demonstrate a benefit of homocysteine-lowering therapy with B-vitamins on CVD events generally. All these trials were performed in CVD patients with advanced disease; thus current evidence suggests that intervention with high-dose folic acid is of no benefit in preventing another event, at least in the case of heart disease. The evidence at this time, however, is stronger for stroke, with meta-analyses of randomised trials showing that folic acid reduces the risk of stroke, particularly in people with no history of stroke. Genetic studies provide convincing evidence to support a causal relationship between sub-optimal B-vitamin status and CVD. People homozygous for the common C677T variant in the gene encoding the folate-metabolising enzyme, methylenetetrahydrofolate reductase (MTHFR), typically have a 14-21% higher risk of CVD. Apart from folate, riboflavin is required as a co-factor for MTHFR. New evidence shows that riboflavin intervention results in marked lowering of blood pressure, specifically in patients with the MTHFR 677TT genotype. This novel gene-nutrient interaction may provide insights as to the mechanism that links C(1) metabolism with CVD outcomes.
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