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Sex Differences in the Biology and Pathology of the Aging Heart
Kaitlyn M Keller1, Susan E Howlett2
1Department of Pharmacology, Dalhousie University, Halifax, Nova Scotia, Canada.
Insights
Advanced age causes maladaptive cardiac remodeling, increasing cardiovascular disease risk. Understanding these age-related heart changes, including fibrosis and dysfunction, is crucial for developing targeted therapies.
Area of Science:
- Cardiovascular research
- Gerontology
- Cardiac physiology
Background:
- Advanced age is a primary risk factor for cardiovascular disease (CVD).
- Understanding cardiac aging is key to explaining age-related heart disease susceptibility.
- The aging heart undergoes structural and functional changes, even without overt disease.
Purpose of the Study:
- To review the structural and functional changes in the aging heart.
- To explore the mechanisms and sex-specific variations in cardiac aging.
- To highlight the potential for therapeutic interventions based on understanding cardiac aging.
Main Methods:
- Review of existing human and animal studies on cardiac aging.
- Analysis of age-dependent structural changes (e.g., hypertrophy, fibrosis).
- Examination of functional consequences (e.g., diastolic dysfunction, arrhythmias).
Main Results:
- Aging leads to maladaptive cardiac remodeling, including atrial and left ventricular fibrosis and stiffness.
- These changes predispose to conditions like atrial fibrillation and heart failure with preserved ejection fraction.
- Sex-specific differences exist, with men showing myocyte loss and higher risk of heart failure with reduced ejection fraction.
Conclusions:
- Cardiac aging involves detrimental structural and functional alterations, increasing CVD risk.
- Mechanisms include impaired calcium handling, neurohormonal activation, and mitochondrial dysfunction.
- Further research into sex-specific cardiac aging is essential for personalized treatment strategies.
Abstract:
The knowledge that advanced age is a major risk factor for cardiovascular disease (CVD) has stimulated interest in cardiac aging. Understanding how the heart remodels with age can help us appreciate why older individuals are more likely to acquire heart disease. Growing evidence in both humans and animals shows that the heart exhibits distinct structural and functional changes as a consequence of age. These changes occur even in the absence of overt cardiovascular disease and are often maladaptive. For example, atrial hypertrophy and fibrosis may increase susceptibility to atrial fibrillation in older adults. Age-dependent increases in left ventricular fibrosis, stiffness, and wall thickness promote diastolic dysfunction, predisposing to heart failure with preserved ejection fraction. The influence of age on the heart is evident at rest but is even more prominent during exercise. There is also evidence for sex-specific variation in age-associated remodelling. For instance, there is some evidence that the number of ventricular myocytes declines with age through apoptosis in men but not in women. This helps explain why older men are more likely than women to experience heart failure with reduced ejection fraction. Emerging evidence from preclinical studies suggests that frailty rather than chronological age promotes adverse cardiac remodelling. Mechanisms implicated in cardiac aging include impaired calcium handling, excessive activation of the ß-adrenergic and renin-angiotensin systems, and mitochondrial dysfunction. Further research into cardiac aging in both sexes is needed, because it may be possible to modify disease treatment if the substrate upon which the disease first develops is better understood.
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