Endogenous and Exogenous Estrogen Exposures: How Women’s Reproductive Health Can Drive Brain Aging and Inform Alzheimer’s Prevention
Эндогенное и экзогенное воздействие эстрогенов: как репродуктивное здоровье женщин может влиять на старение мозга и определять подходы к профилактике болезни Альцгеймера
2022-03-09
SCID: 54.1/efe2qbkg
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Alzheimer’s disease riskendogenous estrogen exposureexogenous estrogen exposuremenopause transitionreproductive lifespan
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Abstract (AI)
After advanced age, female sex is the major risk factor for late-onset Alzheimer's disease (AD), the most common cause of dementia affecting over 24 million people worldwide. The prevalence of AD is higher in women than in men, with postmenopausal women accounting for over 60% of all those affected. While most research has focused on gender-combined risk, emerging data indicate sex and gender differences in AD pathophysiology, onset, and progression, which may help account for the higher prevalence in women. Notably, AD-related brain changes develop during a 10-20 year prodromal phase originating in midlife, thus proximate with the hormonal transitions of endocrine aging characteristic of the menopause transition in women. Preclinical evidence for neuroprotective effects of gonadal sex steroid hormones, especially 17β-estradiol, strongly argue for associations between female fertility, reproductive history, and AD risk. The level of gonadal hormones to which the female brain is exposed changes considerably across the lifespan, with relevance to AD risk. However, the neurobiological consequences of hormonal fluctuations, as well as that of hormone therapies, are yet to be fully understood. Epidemiological studies have yielded contrasting results of protective, deleterious and null effects of estrogen exposure on dementia risk. In contrast, brain imaging studies provide encouraging evidence for positive associations between greater cumulative lifetime estrogen exposure and lower AD risk in women, whereas estrogen deprivation is associated with negative consequences on brain structure, function, and biochemistry. Herein, we review the existing literature and evaluate the strength of observed associations between female-specific reproductive health factors and AD risk in women, with a focus on the role of endogenous and exogenous estrogen exposures as a key underlying mechanism. Chief among these variables are reproductive lifespan, menopause status, type of menopause (spontaneous vs. induced), number of pregnancies, and exposure to hormonal therapy, including hormonal contraceptives, hormonal therapy for menopause, and anti-estrogen treatment. As aging is the greatest risk factor for AD followed by female sex, understanding sex-specific biological pathways through which reproductive history modulates brain aging is crucial to inform preventative and therapeutic strategies for AD.
Key Findings
1
Alzheimer’s-related brain changes begin 10–20 years before clinical onset, overlapping with midlife menopause-related hormonal transitions.
2
Epidemiological findings on estrogen and dementia risk remain conflicting, and the neurobiological effects of hormonal fluctuations and therapies are not yet fully understood.
3
Greater cumulative lifetime estrogen exposure is associated in brain imaging studies with lower Alzheimer’s risk, whereas estrogen deprivation relates to adverse brain structure, function, and biochemistry.
4
Reproductive lifespan, menopause status and type, number of pregnancies, and hormonal therapies may modulate Alzheimer’s risk through endogenous and exogenous estrogen exposure.
5
Women, particularly postmenopausal women, bear a disproportionate burden of late-onset Alzheimer’s disease, with sex-specific biological pathways potentially contributing to risk.
Research Object
Women’s brain aging and Alzheimer’s disease risk in relation to reproductive health and lifetime estrogen exposure
Research Subject
Associations and underlying mechanisms linking endogenous and exogenous estrogen exposure, reproductive history, menopause characteristics, and hormone therapy with brain structure, function, biochemistry, aging, and Alzheimer’s disease risk
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2022-03-09
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