Menopause Transition and Cardiovascular Disease Risk: Implications for Timing of Early Prevention: A Scientific
Insights
The menopause transition (MT) accelerates cardiovascular disease (CVD) risk in women due to hormonal shifts and adverse body composition changes. Midlife monitoring and early interventions are crucial for reducing postmenopausal CVD risk.
Area of Science:
- Cardiovascular Health
- Women's Health
- Endocrinology
Background:
- Cardiovascular disease (CVD) is the leading cause of death in women.
- Women's risk for CVD significantly increases after menopause, with onset typically years after men.
Purpose of the Study:
- To synthesize contemporary literature on the menopause transition (MT) and its relation to CVD risk.
- To increase awareness of adverse cardiometabolic changes during midlife and the MT.
Main Methods:
- Longitudinal studies following women through menopause.
- Analysis of sex hormone changes, body composition, lipids, lipoproteins, and vascular health.
Main Results:
- The MT is associated with distinct sex hormone changes.
- Adverse alterations in body composition, lipids, and vascular health occur during the MT.
- These changes increase a woman's risk of developing CVD postmenopausally.
Conclusions:
- The MT is a critical period of accelerating CVD risk in women.
- Midlife monitoring and early intervention strategies are essential for CVD prevention.
- Current guidelines may not fully incorporate MT-related CVD risk factors.
Abstract:
Cardiovascular disease (CVD) is the leading cause of death in women, who have a notable increase in the risk for this disease after menopause and typically develop coronary heart disease several years later than men. This observation led to the hypothesis that the menopause transition (MT) contributes to the increase in coronary heart disease risk. Over the past 20 years, longitudinal studies of women traversing menopause have contributed significantly to our understanding of the relationship between the MT and CVD risk. By following women over this period, researchers have been able to disentangle chronological and ovarian aging with respect to CVD risk. These studies have documented distinct patterns of sex hormone changes, as well as adverse alterations in body composition, lipids and lipoproteins, and measures of vascular health over the MT, which can increase a woman's risk of developing CVD postmenopausally. The reported findings underline the significance of the MT as a time of accelerating CVD risk, thereby emphasizing the importance of monitoring women's health during midlife, a critical window for implementing early intervention strategies to reduce CVD risk. Notably, the 2011 American Heart Association guidelines for CVD prevention in women (the latest sex-specific guidelines to date) did not include information now available about the contribution of the MT to increased CVD in women. Therefore, there is a crucial need to discuss the contemporary literature on menopause and CVD risk with the intent of increasing awareness of the significant adverse cardiometabolic health-related changes accompanying midlife and the MT. This scientific statement provides an up-to-date synthesis of the existing data on the MT and how it relates to CVD.
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