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Published on: June 16, 2014
Longitudinal association among endothelial function, arterial stiffness and subclinical organ damage in hypertension
Hirofumi Tomiyama1, Tomoko Ishizu2, Takahide Kohro3
1Department of Cardiology, Tokyo Medical University, Tokyo, Japan.
Insights
In hypertension, endothelial dysfunction predicts arterial stiffness progression, but arterial stiffness is more strongly linked to atherosclerotic vascular damage. This highlights the endothelial dysfunction-arterial stiffness-atherosclerosis continuum in hypertension.
Area of Science:
- Cardiovascular Medicine
- Hypertension Research
- Vascular Biology
Background:
- Endothelial dysfunction and arterial stiffness are key factors in cardiovascular disease.
- Their longitudinal relationship and impact on subclinical organ damage require further elucidation.
Purpose of the Study:
- To investigate the longitudinal association between endothelial dysfunction and arterial stiffness.
- To determine which factor is more predictive of subclinical organ damage progression in hypertensive patients.
Main Methods:
- 674 Japanese hypertensive patients underwent measurements of brachial-ankle pulse wave velocity (baPWV), carotid intima-media thickness (CIMT), and flow-mediated vasodilatation (FMD) at 1.5-year intervals.
- Longitudinal changes and associations between baseline and follow-up measurements were analyzed.
Main Results:
- Lower baseline FMD correlated with greater baPWV progression.
- Lower baseline baPWV correlated with smaller CIMT progression.
- Baseline baPWV, but not FMD, was significantly associated with end-of-study CIMT.
Conclusions:
- Endothelial dysfunction is associated with arterial stiffness progression in hypertension.
- Arterial stiffness appears more closely linked to atherosclerotic vascular damage progression than endothelial dysfunction.
- The interplay of endothelial dysfunction, arterial stiffness, and atherosclerosis is crucial in hypertensive vascular disease.
Objectives:
To examine the longitudinal mutual association between endothelial dysfunction and arterial stiffness, and also to determine which of the two variables was more closely associated with the progression of subclinical organ damage.
Methods:
The brachial-ankle pulse wave velocity (baPWV), carotid intima-media thickness (CIMT), estimated glomerular filtration rate, microalbuminuria and flow-mediated vasodilatation of the brachial artery (FMD) were measured three times at 1.5-year intervals in 674 Japanese patients receiving antihypertensive treatment.
Results:
The change of the baPWV during the study period was larger in the subjects with baseline FMD values in the lowest tertile as compared to those with baseline FMD values in the highest tertile. The change of the CIMT was smaller in the subjects with baseline baPWV values in the lowest tertile than in those with baseline baPWV values in the highest tertile. After the adjustment, the FMD value at the baseline was inversely associated with the baPWV at the end of the study period (beta=-0.07, p=0.01), although, the reverse association was not significant. The baPWV, but not the FMD value, at the baseline was associated with the CIMT (beta=0.06, p=0.04) measured at the end of the study period.
Conclusions:
In hypertension, endothelial dysfunction was associated with the progression of arterial stiffness, although the reverse association was not confirmed. The increased arterial stiffness rather than endothelial dysfunction may be more closely associated with the progression of atherosclerotic vascular damage, and the endothelial dysfunction-arterial stiffness-atherosclerosis continuum may be important in hypertension.
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