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Published on: February 10, 2023
In-treatment stroke volume predicts cardiovascular risk in hypertension
Mai T Lønnebakken1, Eva Gerdts, Kurt Boman
1Department of Heart Disease, Haukeland University Hospital, Bergen, Norway. mai.tone.lonnebakken@helse-bergen.no
Insights
Lower stroke volume during antihypertensive treatment predicts cardiovascular events, independent of left ventricular structure. This finding highlights the importance of assessing cardiac remodeling in treated hypertensive patients for better risk prediction.
Area of Science:
- Cardiology
- Hypertension Research
- Clinical Echocardiography
Background:
- Hypertension management aims to prevent cardiovascular events.
- Left ventricular geometric patterns are known risk factors.
- The prognostic value of stroke volume during treatment is less understood.
Purpose of the Study:
- To determine if left ventricular stroke volume during antihypertensive treatment predicts cardiovascular events.
- To assess this prediction independently of left ventricular geometric patterns.
Main Methods:
- Analysis of 855 patients from the LIFE echocardiography substudy.
- Cox regression analysis of baseline and follow-up data over 4.8 years.
- Time-varying multivariable models assessing stroke volume and cardiovascular endpoints.
Main Results:
- Lower in-treatment stroke volume indexed for height significantly predicted cardiovascular death, stroke, and myocardial infarction.
- This association remained significant and independent of left ventricular mass, geometry, and diastolic function.
- Hazard ratio of 1.69 per 1 SD lower stroke volume (P < 0.001).
Conclusions:
- In-treatment left ventricular stroke volume provides additional cardiovascular risk information in treated hypertensive patients.
- It may reflect underlying cardiac and vascular remodeling and impairment.
- Assessment of stroke volume complements structural analysis for risk stratification.
Objective:
To evaluate whether lower stroke volume during antihypertensive treatment is a predictor of cardiovascular events independent of left ventricular geometric pattern.
Methods:
The association between left ventricular stroke volume and combined cardiovascular death, stroke and myocardial infarction, the prespecified primary study endpoint, was assessed in Cox regression analysis using data from baseline and annual follow-up visits in 855 patients during 4.8 years of randomized losartan-based or atenolol-based treatment in the Losartan Intervention For Endpoint reduction in hypertension (LIFE) echocardiography substudy.
Results:
During follow-up, a total of 91 primary endpoints occurred. At baseline, lower left ventricular stroke volume was associated with smaller body size, female sex, lower left ventricular mass and stress-corrected midwall shortening, higher relative wall thickness and total peripheral resistance, more concentric left ventricular geometry and impaired diastolic relaxation (all P < 0.01). Baseline stroke volume did not predict outcome. However, in time-varying multivariable Cox regression analysis, lower in-treatment left ventricular stroke volume indexed for height was associated with higher risk of cardiovascular events {hazard ratio 1.69 per 1 SD (6 ml/m) lower stroke volume [95% confidence interval (CI) 1.35-2.11], P < 0.001} independent of in-treatment left ventricular mass and concentric geometry and in a secondary model also independent of stress-corrected midwall shortening, impaired diastolic relaxation, heart rate, new-onset atrial fibrillation and study treatment [hazard ratio 1.46 per 1 SD (6 ml/m) lower stroke volume (95% CI 1.13-1.88)].
Conclusion:
Assessment of in-treatment left ventricular stroke volume may reflect cardiac and vascular remodeling and impairment and, hence, adds information on cardiovascular risk in treated hypertensive patients beyond assessment of left ventricular structure alone.
Clinical Trial Registration Information:
NCT 00338260.
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