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Sex-Biased Pharmacotherapeutic Disparities in Hypertension
Serge Yaacoub1, Charles Bardawil2, Ryan Yammine3
1Center for Cancer and Immunology Research, Children's National Medical Center, Washington, DC, USA.
Insights
Hypertension shows significant sex differences in development and treatment response. Current guidelines inadequately address these disparities, hindering effective blood pressure management for men and women.
Area of Science:
- Cardiovascular Medicine
- Endocrinology
- Pharmacology
- Genetics
Background:
- Hypertension exhibits notable sex-based disparities in prevalence, pathophysiology, and treatment outcomes.
- Hormonal differences (estrogen, testosterone) significantly influence cardiovascular aging and vascular tone.
- Existing clinical guidelines lack sufficient sex-specific stratification, leading to suboptimal patient care.
Purpose of the Study:
- To review the molecular, physiological, and pharmacotherapeutic aspects of sexual dimorphism in hypertension.
- To highlight the inadequacy of current uniform management strategies for hypertension.
- To advocate for precision medicine approaches tailored to individual sex-based characteristics.
Main Methods:
- Synthesis of current literature on sex differences in hypertension.
- Analysis of hormonal influences on the renin-angiotensin-aldosterone system (RAAS) and vascular aging.
- Evaluation of sex-specific pharmacokinetic and pharmacodynamic responses to antihypertensive medications.
Main Results:
- Men experience higher blood pressure in early adulthood; post-menopausal women face accelerated cardiovascular risk.
- Distinct hormonal actions (testosterone vs. estrogen) affect receptor activity and nitric oxide bioavailability.
- Sex-specific responses to antihypertensives (e.g., ACE inhibitors, beta-blockers, diuretics) are evident.
- Epigenetic factors like miRNAs and sex-hormone regulators contribute to disparities in vascular tone and drug metabolism.
Conclusions:
- Significant molecular and physiological sex differences necessitate a reappraisal of hypertension management.
- Precision medicine integrating hormonal status, aging, and genetics is crucial for effective antihypertensive therapy.
- Addressing sex-based disparities will improve global hypertension control and reduce cardiovascular disease burden.
Abstract:
Hypertension manifests with striking sex-based disparities in prevalence, pathophysiology, and therapeutic outcomes, necessitating the reappraisal of current management paradigms. For example, men exhibit higher blood pressure (BP) in early adulthood, while post-menopausal women suffer from accelerated cardiovascular risk owing to estrogen depletion, endothelial dysfunction, and distinct aging trajectories. Moreover, the renin-angiotensin-aldosterone system (RAAS) operates rather divergently: testosterone upregulates vasoconstrictive angiotensin II type 1 receptors in men, whereas estrogen enhances nitric oxide bioavailability and modulates angiotensin II type 2 receptor in premenopausal women. These hormonal influences extend to cardiovascular aging, as women develop greater arterial stiffness post-menopause, predisposing them to heart failure with preserved ejection fraction. Conversely, men demonstrate higher endothelial dysfunction and cardiomyocyte apoptosis. Furthermore, sex-specific pharmacokinetic profiles (e.g., renal clearance, hepatic metabolism) and pharmacodynamic responses to antihypertensives underscore the inadequacy of uniform treatment strategies. This is demonstrated in women by the observed reduced efficacy of angiotensin-converting enzymes inhibitors, but superior blood pressure control using diuretics. Men, however, respond more robustly to beta blockers. Emerging evidence highlights epigenetic modifiers, including X-chromosome-linked microRNAs (miRNAs) and sex-hormone-driven transcriptional regulators, as pivotal mediators of vascular tone and drug metabolism disparities. Despite these insights, clinical guidelines remain relatively inadequately stratified by sex, perpetuating suboptimal outcomes. This review synthesizes molecular, physiologic, and pharmacotherapeutic axes of sexual dimorphism in hypertension. It also advocates for precision medicine approaches that integrate hormonal status, aging-related vascular remodeling, and genetic polymorphisms. Addressing these physiological paradigms promises to bridge the translational gap between bench and bedside, ultimately mitigating the global burden of hypertensive disease, while mitigating shortcomings in sex-based antihypertensive management.
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