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Relationship between Pulse Wave Velocity and Cardiovascular Biomarkers in Patients with Risk Factors
Rayne Ramos Fagundes1, Priscila Valverde Oliveira Vitorino2, Ellen de Souza Lelis2
1Universidade Federal de Goiás,Goiânia, GO - Brasil.
Insights
Pulse wave velocity (PWV) correlates with structural changes in the heart and carotid arteries. Increased PWV is linked to left ventricular hypertrophy and carotid plaque, indicating target organ damage.
Area of Science:
- Cardiovascular Medicine
- Biomarkers
- Vascular Biology
Background:
- The relationship between pulse wave velocity (PWV) and biomarkers of structural changes in the left ventricle and carotid arteries is not well understood.
- Assessing these relationships is crucial for understanding cardiovascular risk.
Purpose of the Study:
- To investigate the association between PWV and biomarkers of structural changes in the left ventricle and carotid arteries.
- To determine if PWV is an independent predictor of these structural changes.
Main Methods:
- Retrospective, cross-sectional study analyzing medical records of 355 patients with diabetes, dyslipidemia, and hypertension.
- Central blood pressure (CBP) measurements using Mobil-O-Graph® and carotid Doppler or echocardiography were analyzed.
- Statistical analyses included Pearson/Spearman correlation and linear regression.
Main Results:
- PWV showed significant correlations with intima-media thickness (IMT) of carotids, left ventricular septal and posterior wall thickness, and left atrial diameter.
- IMT was independently associated with PWV, with IMT > 1 mm increasing the odds of PWV > 10 m/s by 3.94 times.
- Higher PWV was observed in patients with left ventricular hypertrophy, increased IMT, carotid plaque, stenosis ≥ 50%, and target-organ damage.
Conclusions:
- PWV is correlated with IMT and echocardiographic parameters, and independently associated with IMT.
- The association between PWV and structural changes is stronger in individuals with existing cardiovascular damage.
- PWV may serve as a valuable non-invasive marker for assessing cardiovascular structural alterations.
Background:
The relationship between pulse wave velocity (PWV) and biomarkers of structural changes of the left ventricle and carotid arteries remains poorly understood.
Objective:
To investigate the relationship between PWV and these biomarkers.
Methods:
This was an analytical, retrospective, cross-sectional study. Medical records of patients with diabetes mellitus, dyslipidemia, and pre-hypertension or hypertension, who underwent central blood pressure (CBP) measurement using Mobil-O-Graph®, and carotid doppler or echocardiography three months before and after the CBPM were analyzed. Statistical analysis was performed using Pearson or Spearman correlation, linear bivariate and multiple regression analysis, and the t test (independent) or Mann-Whitney test. A p <0.05 indicated statistical significance.
Results:
Medical records of 355 patients were analyzed, mean age 56.1 (±14.8) years, 51% male. PWV was correlated with intima-media thickness (IMT) of carotids (r=0.310) and left ventricular septal thickness (r=0.191), left ventricular posterior wall thickness (r=0.215), and left atrial diameter (r=0.181). IMT was associated with PWV adjusted by age and peripheral systolic pressure (p=0.0004); IMT greater than 1 mm increased the chance of having PWV above 10 m/s by 3.94 times. PWV was significantly higher in individuals with left ventricular hypertrophy (p=0.0001), IMT > 1 mm (p=0.006), carotid plaque (p=0.0001), stenosis ≥ 50% (p=0.003), and target-organ damage (p=0.0001).
Conclusion:
PWV was correlated with IMT and echocardiographic parameters, and independently associated with IMT. This association was stronger in individuals with left ventricular hypertrophy, increased IMT, carotid plaque, stenosis ≥ 50%, and target organ damage. (Arq Bras Cardiol. 2020; 115(6):1125-1132).
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