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Autonomic nervous system dysfunction throughout menopausal transition: A potential mechanism underpinning
Karla G Schwarz1, Sinay C Vicencio1, Nibaldo C Inestrosa2
1Laboratory of Cardiorespiratory Control, Pontificia Universidad Católica de Chile, Santiago, Chile.
Insights
Menopause-related estrogen decline may cause autonomic dysfunction, increasing cardiovascular disease and Alzheimer
Area of Science:
- Neuroendocrinology
- Cardiovascular Science
- Gerontology
Background:
- Cardiovascular diseases (CVD) and Alzheimer's disease (AD) significantly impact women's quality of life.
- A potential link between CVD prevalence in women and AD risk is suggested by sex-based differences.
- The heart-brain axis, orchestrated by the autonomic nervous system (ANS), is implicated in cardiovascular events.
Approach:
- This review synthesizes current evidence on estrogen's role in ANS regulation during menopause.
- Focuses on estrogen's impact on central nervous system (CNS) structures governing autonomic control.
- Examines the contribution of estrogen to sympathoexcitation and its cardiovascular and cognitive consequences.
Key Points:
- Declining estrogen levels during menopause transition may lead to ANS dysfunction.
- Estrogen-mediated signaling in CNS autonomic centers influences sympathetic activity.
- Autonomic dysfunction contributes to cardiovascular and cognitive decline in women.
Conclusions:
- Understanding the ANS's role in menopause-related cardiovascular and cognitive changes is crucial.
- Targeting estrogen-mediated autonomic pathways could improve women's health outcomes.
- This knowledge can enhance clinical management and quality of life for aging women.
Abstract:
Cardiovascular diseases (CVD) and neurodegenerative disorders, such as Alzheimer's disease (AD), are highly prevalent conditions in middle-aged women that severely impair quality of life. Recent evidence suggests the existence of an intimate cross-talk between the heart and the brain, resulting from a complex network of neurohumoral circuits. From a pathophysiological perspective, the higher prevalence of AD in women may be explained, at least in part, by sex-related differences in the incidence/prevalence of CVD. Notably, the autonomic nervous system, the main heart-brain axis physiological orchestrator, has been suggested to play a role in the incidence of adverse cardiovascular events in middle-aged women because of decreases in oestrogen-related signalling during transition into menopause. Despite its overt relevance for public health, this hypothesis has not been thoroughly tested. Accordingly, in this review, we aim to provide up to date evidence supporting how changes in circulating oestrogen levels during transition to menopause may trigger autonomic dysfunction, thus promoting cardiovascular and cognitive decline in women. A main focus on the effects of oestrogen-mediated signalling at CNS structures related to autonomic regulation is provided, particularly on the role of oestrogens in sympathoexcitation. Improving the understanding of the contribution of the autonomic nervous system on the development, maintenance and/or progression of both cardiovascular and cognitive dysfunction during the transition to menopause should help improve the clinical management of elderly women, with the outcome being an improved life quality during the natural ageing process.
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