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Sex-Specific Differences in the Pathophysiology of Hypertension
Hannah Zhang1,2, Pawan K Singal1,2, Amir Ravandi1,2,3
1Department of Physiology and Pathophysiology, St. Boniface Hospital Albrechtsen Research Centre, Institute of Cardiovascular Sciences, Rady College of Medicine, Max Rady Faculty of Health Sciences, University of Manitoba, Rm. 3042, 351 Taché Avenue, Winnipeg, MB R2H 2A6, Canada.
Insights
Sex hormones influence hypertension by altering fat metabolism. Estrogen promotes healthier fat storage, reducing hypertension risk in pre-menopausal women, while androgens and low estrogen promote visceral fat, increasing risk in men and post-menopausal women.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Metabolic Disease Research
Background:
- Hypertension is a common comorbidity in cardiometabolic diseases, affecting nearly one-third of adults.
- Established mechanisms include pressure natriuresis, the renin-angiotensin system (RAS), sympathetic nervous system activity, oxidative stress, and endothelial dysfunction.
- Significant sex-based differences in hypertension development exist, but underlying pathophysiological mechanisms remain incompletely understood.
Purpose of the Study:
- To review and postulate the role of sexually dimorphic fat metabolism in the physiology of hypertension.
- To elucidate how sex hormones, particularly estrogen and androgens, influence adipose tissue distribution and function in relation to hypertension.
- To highlight potential sex-specific therapeutic targets for hypertension management.
Main Methods:
- This is a review article, synthesizing existing literature on hypertension, sex hormones, and fat metabolism.
- The review focuses on the contrasting effects of estrogen and androgens on adipose tissue deposition (subcutaneous vs. visceral) and function.
- Pathophysiological pathways linking fat metabolism to hypertension, including inflammation and RAS activation, are discussed.
Main Results:
- Estrogen promotes subcutaneous fat deposition and adaptive hyperplasia, leading to anti-inflammatory effects, inhibition of metabolic dysfunction-associated fatty liver disease (MAFLD), and reduced RAS activation, contributing to lower hypertension rates in pre-menopausal females.
- Androgens and estrogen deficiency promote visceral and ectopic fat deposition (including hepatic), increasing pro-inflammatory cytokines and potentially activating the RAS, thereby contributing to hypertension development in males and post-menopausal females.
- Sexually dimorphic fat metabolism represents a critical, yet understudied, factor in hypertension pathogenesis.
Conclusions:
- Sex-specific differences in fat metabolism, driven by sex hormones, significantly contribute to the varying prevalence and mechanisms of hypertension between males and females.
- Targeting sex-specific fat metabolism pathways may offer novel strategies for personalized hypertension prevention and treatment.
- Further research into these sex-specific mechanisms is crucial for developing comprehensive, tailored cardiovascular care.
Abstract:
Hypertension is one of the most common comorbidities in cardiometabolic diseases, affecting nearly one third of adults. As a result, its pathophysiological mechanisms have been studied extensively and are focused around pressure natriuresis, the renin-angiotensin system (RAS), the sympathetic nervous system, oxidative stress, and endothelial dysfunction. Additionally, hypertension secondary to other underlying etiologies also exists. While clinical evidence has clearly shown differences in hypertension development in males and females, relatively little is known about the pathophysiological mechanisms behind these differences. Sex hormones likely play a key role, as they modulate many factors related to hypertension development. In this review, we postulate the potential role for sexually dimorphic fat metabolism in the physiology of hypertension. In brief, estrogen promotes subcutaneous fat deposition over visceral fat and increases in mass via adaptive hyperplasia rather than pathogenic hypertrophy. This adipose tissue subsequently produces anti-inflammatory effects and inhibits metabolic dysfunction-associated fatty liver disease (MAFLD) and RAS activation, ultimately leading to decreased levels of hypertension in pre-menopausal females. On the other hand, androgens and the lack of estrogens promote visceral and ectopic fat deposition, including in the liver, and lead to increased circulating pro-inflammatory cytokines and potentially subsequent RAS activation and hypertension development in males and post-menopausal females. Understanding the sex-specific differences in fat metabolism may provide deeper insights into the patho-mechanisms associated with hypertension and lead to more comprehensive sex-specific care.
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