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Published on: May 31, 2016
Association Between Homocysteine and Vascular Calcification Incidence, Prevalence, and Progression in the MESA Cohort
Amy B Karger1, Brian T Steffen1, Sarah O Nomura1
1Department of Laboratory Medicine & Pathology University of Minnesota Minneapolis MN.
Insights
Elevated homocysteine levels are linked to increased risk and progression of coronary artery and aortic calcification. This study highlights homocysteine as a potential biomarker for vascular calcification severity.
Area of Science:
- Cardiovascular Research
- Biomarkers
- Atherosclerosis
Background:
- Elevated homocysteine is suspected to contribute to vascular calcification.
- Its precise role as a cardiovascular risk factor for calcification is not fully understood.
Purpose of the Study:
- To investigate the association between homocysteine levels and vascular and valve calcification.
- To assess homocysteine's role in the incidence and progression of calcification in the MESA cohort.
Main Methods:
- Analysis of 6789 MESA participants with baseline homocysteine and CT scans.
- Assessment of coronary artery (CAC), descending thoracic aorta (DTAC), aortic valve (AVC), and mitral annular (MAC) calcification.
- Use of regression models to evaluate relationships with prevalent, incident, and progressive calcification.
Main Results:
- Elevated homocysteine showed increased risk for prevalent and incident CAC and incident DTAC.
- Strong associations were found between elevated homocysteine and CAC/DTAC progression.
- Homocysteine conferred >2-fold risk for severe CAC progression and ≈1.5-fold risk for severe DTAC progression.
Conclusions:
- This is the first study linking elevated homocysteine to both incidence and progression of coronary and extra-coronary vascular calcification.
- Findings suggest homocysteine may be a risk factor for severe vascular calcification progression.
- Further research is needed to confirm homocysteine's utility as a biomarker.
Abstract:
Background While elevated homocysteine has been associated with calcification in several studies, its importance as a cardiovascular risk factor remains unclear. This study examines the relationship between homocysteine and vascular and valve calcification in the MESA (Multi-ethnic Study of Atherosclerosis) cohort. Methods and Results MESA participants with baseline homocysteine measurements and cardiac computed tomography scans were included (N=6789). Baseline and follow-up assessment of vascular (coronary artery [CAC], descending thoracic aorta [DTAC]) and valve (aortic valve [AVC], mitral annular [MAC]) calcification was performed. Prevalence ratio/relative risk regression was used to assess the relationship of homocysteine with prevalent and incident calcification, and multivariable logistic regression was used to assess associations between homocysteine and calcification progression. Elevated homocysteine was associated with greater relative risk of prevalent and incident CAC and incident DTAC. We also identified a strong association between elevated homocysteine and CAC and DTAC progression. Elevated homocysteine was found to confer a >2-fold increased risk of severe CAC progression (defined as ΔCAC ≥100/year) and an ≈1.5-fold increased risk for severe DTAC progression (defined as ΔDTAC ≥100/year). Conclusions To our knowledge, this is the first study demonstrating an association between elevated homocysteine and both incidence and progression of coronary and extra-coronary vascular calcification. Our findings suggest a potential role for elevated homocysteine as a risk factor for severe vascular calcification progression. Future studies are warranted to further assess the utility of homocysteine as a biomarker for vascular calcification incidence and progression. Clinical Trial Registration https://www.clinicaltrials.gov/. Unique identifier: NCT00005487.
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