TY - JOUR
T1 - Accelerated midlife endocrine and bioenergetic brain aging in APOE4 females
AU - Wang, Tian
AU - Mao, Zisu
AU - Shang, Yuan
AU - Merlini, Simona
AU - Vitali, Francesca
AU - Wiegand, Jean Paul
AU - Brinton, Roberta Diaz
N1 - Publisher Copyright:
Copyright © 2025 Wang, Mao, Shang, Merlini, Vitali, Wiegand and Brinton.
PY - 2025
Y1 - 2025
N2 - Female sex, age, and APOE4 genotype are the greatest risk factors for Alzheimer′s disease. Using a translational perimenopause mouse model based on human Stages of Reproductive Aging Works (STRAW) criteria, we investigated the impact of APOE genotype on female midlife endocrine aging, peripheral metabolic indicators, brain bioenergetic pathways, mitochondrial function, neuroimmune activation, and myelination. Compared to APOE3 females, APOE4 females exhibited accelerated endocrine aging that was coincident with failure to mount adaptive bioenergetic reprogramming and significant decline in mitochondrial function that were coupled with increased immune activation and demyelination in brain. In women, APOE4 was associated with early menopause. Further, APOE4 women experiencing early menopause exhibited the highest risk of Alzheimer′s. These results provide plausible mechanistic pathways underlying the earlier emergence and greater risk of Alzheimer′s in APOE4 postmenopausal females. Collectively, these findings support midlife as a critical window for intervention to prevent or delay the onset of the prodromal stage of Alzheimer′s disease in APOE4 carriers.
AB - Female sex, age, and APOE4 genotype are the greatest risk factors for Alzheimer′s disease. Using a translational perimenopause mouse model based on human Stages of Reproductive Aging Works (STRAW) criteria, we investigated the impact of APOE genotype on female midlife endocrine aging, peripheral metabolic indicators, brain bioenergetic pathways, mitochondrial function, neuroimmune activation, and myelination. Compared to APOE3 females, APOE4 females exhibited accelerated endocrine aging that was coincident with failure to mount adaptive bioenergetic reprogramming and significant decline in mitochondrial function that were coupled with increased immune activation and demyelination in brain. In women, APOE4 was associated with early menopause. Further, APOE4 women experiencing early menopause exhibited the highest risk of Alzheimer′s. These results provide plausible mechanistic pathways underlying the earlier emergence and greater risk of Alzheimer′s in APOE4 postmenopausal females. Collectively, these findings support midlife as a critical window for intervention to prevent or delay the onset of the prodromal stage of Alzheimer′s disease in APOE4 carriers.
KW - APOE4
KW - Alzheimer′s
KW - Menopause
KW - mitochondrial function
KW - neuroinflammation
KW - women
UR - https://www.scopus.com/pages/publications/105014754398
UR - https://www.scopus.com/pages/publications/105014754398#tab=citedBy
U2 - 10.3389/fnagi.2025.1632877
DO - 10.3389/fnagi.2025.1632877
M3 - Article
AN - SCOPUS:105014754398
SN - 1663-4365
VL - 17
JO - Frontiers in Aging Neuroscience
JF - Frontiers in Aging Neuroscience
M1 - 1632877
ER -