Sex difference in cardiovascular risk: role of pulse pressure amplification
Véronique Regnault1, Frédérique Thomas, Michel E Safar
1INSERM, U961, Nancy, France.
Insights
The brachial/carotid pulse pressure (B/C-PP) ratio predicts cardiovascular death risk differently in men and women. This ratio
Area of Science:
- Cardiovascular Medicine
- Gerontology
- Biomedical Engineering
Background:
- Cardiovascular (CV) complications are more severe in men and post-menopausal women.
- The brachial/carotid pulse pressure (B/C-PP) ratio indicates pulse pressure amplification between brachial and carotid arteries.
- This ratio tends to approach 1.0 with age.
Purpose of the Study:
- To investigate if the B/C-PP ratio predicts sex-specific differences in age-related CV death.
- To analyze the impact of B/C-PP ratio on all-cause and CV mortality across different age groups and sexes.
Main Methods:
- Analysis of 72,437 men and 52,714 women over a 12-year follow-up period.
- Carotid pulse pressure (C-PP) calculated using multiple regression including brachial pulse pressure (B-PP), age, height, and risk factors.
- Hazard ratios (HR) for all-cause and CV mortality were determined based on the B/C-PP ratio.
Main Results:
- The B/C-PP ratio was a significant predictor of both all-cause and CV mortality in both sexes.
- Women exhibited a substantially higher HR for CV mortality (4.46) compared to men (1.81).
- The impact of B/C-PP ratio on mortality increased significantly with age in women, but not in men.
Conclusions:
- Pulse pressure amplification, indicated by the B/C-PP ratio, is a strong predictor of CV risk disparities between sexes.
- In post-menopausal women, reduced pulse pressure amplification, linked to increased aortic stiffness, contributes to elevated CV risk.
Objectives:
The study was to explore whether the brachial/carotid pulse pressure (B/C-PP) ratio selectively predicts the sex difference in age-related cardiovascular (CV) death.
Background:
Hypertension and CV complications are more severe in men and post-menopausal women than in pre-menopausal women. C-PP is lower than B-PP, and the B/C-PP ratio is a physiological marker of PP amplification between B and C arteries that tends toward 1.0 with age.
Methods:
The study involved 72,437 men (ages 41.0 ± 11.1 years) and 52,714 women (39.5 ± 11.6 years). C-PP was calculated for each sex by a multiple regression analysis including B-PP, age, height and risk factors, and a method validated beforehand in a subgroup of 834 subjects. During the 12 years of follow-up, 3,028 men and 969 women died.
Results:
In the total population, the adjusted hazard ratios (HR) (95% confidence interval [CI]) of B/C-PP ratio were: 1) for all-cause mortality: men, HR: 1.51 (95% CI: 1.47 to 1.56), women; HR: 2.46 (95% CI: 2.27 to 2.67) (p < 0.0001); and 2) for CV mortality: men, HR 1.81 (95% CI: 1.70 to 1.93); women, HR: 4.46 (95% CI: 3.66 to 5.45) (p < 0.0001). The B/C-PP impact on mortality did not significantly increase from younger men to those ≥ 55 years of age, from: HR: 1.44 (95% CI: 1.31 to 1.58) to HR 1.65 (95% CI: 1.48 to 1.84), but increased significantly with age in women: HR: 3.19 (95% CI: 2.08 to 4.89) versus HR: 5.60 (95% CI: 4.17 to 7.50) (p < 0.01). Thus, the mortality impact of B/C-PP ratio was 3-fold higher in women than in men ≥ 55 years old.
Conclusions:
PP amplification is highly predictive of differences in CV risk between men and women. In post-menopausal women, the attenuation of PP amplification, mainly related to increased aortic stiffness, contributes to the significant increase in CV risk.
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