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Published on: December 2, 2014
Circulating homocysteine and large arterial stiffness and thickness in a population-based sample of middle-aged and
H R Nakhai-Pour1, D E Grobbee, M L Bots
1Julius Center for Health Sciences and Primary Care, University Medical Center Utrecht, Utrecht, The Netherlands.
Insights
This study found no independent link between high homocysteine levels and arterial stiffness or thickness in middle-aged and elderly men. Further research is needed to understand homocysteine
Area of Science:
- Cardiovascular Science
- Clinical Biochemistry
- Vascular Biology
Background:
- Elevated plasma homocysteine (tHcy) is a potential risk factor for cardiovascular events.
- tHcy has been linked to arterial stiffness and subclinical atherosclerosis.
Purpose of the Study:
- To investigate the association between plasma tHcy levels and changes in large artery structure and function.
- To measure aortic pulse-wave velocity (PWV) for arterial stiffness and carotid artery intima-media thickness (CIMT) for atherosclerosis.
Main Methods:
- A population-based sample of 376 middle-aged and elderly men was studied.
- Plasma tHcy was measured using fluorescence polarization immunoassay.
- Aortic stiffness (PWV) and CIMT were assessed non-invasively using applanation tonometry and ultrasonography, respectively.
- Multivariate linear regression analysis was employed.
Main Results:
- Univariate analysis showed increased PWV and CIMT with higher tHcy concentrations.
- After adjusting for confounders, the association between tHcy and PWV was no longer statistically significant.
- The association between tHcy and CIMT also lost statistical significance after adjustment for age and cardiovascular risk factors.
Conclusions:
- The study does not support an independent relationship between circulating tHcy levels and large artery stiffness or thickness.
- The findings suggest that other cardiovascular risk factors may mediate the observed associations.
Abstract:
Elevated plasma homocysteine (tHcy) is considered as a risk factor for cardiovascular events, and has been associated with arterial stiffness and subclinical atherosclerosis in subjects with classical cardiovascular risk factors. The aim of this study is to investigate the association of plasma tHcy with functional and structural changes in the large arteries by measuring aortic pulse-wave velocity (PWV) and carotid artery intima-media thickness (CIMT). In a population-based sample of 376 middle-aged and elderly men, tHcy levels were measured by using fluorescence polarization immunoassay. Aortic stiffness was assessed non-invasively by measuring carotid-femoral PWV with the use of applanation tonometry. CIMT was measured by ultrasonography. We used multivariate linear regression analysis with the log-transformed value of tHcy as the determinant, and aortic PWV and CIMT as outcomes. In the univariate model, PWV increased with increasing tHcy concentration; PWV increased by 2.64 m/s (95% confidence interval (CI) 1.74; 3.54) per unit change in log tHcy. After adjustment for confounders, no statistically significant association remained; PWV increased by 0.42 m/s (95% CI -0.27; 1.11) per unit change in log tHcy. Furthermore, in the univariate model, CIMT increased significantly with increasing tHcy concentration; CIMT increased by 0.19 mm (95% CI 0.11; 0.26) per unit increase log tHcy. This association was attenuated and did not remain significant after additional adjustment for age and cardiovascular confounders (beta=0.06 (95% CI -0.01; 0.13)). The results of this study do not support the presence of an independent relationship between circulating tHcy levels and large artery stiffness and thickness.
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