TY - JOUR
T1 - Sex and APOE genotype specific brain regional vulnerability to Alzheimer's Disease
AU - Members of the Alzheimers Disease Neuroimaging Initiative
AU - Zeng, Qi
AU - Wang, Minghui
AU - Wang, Erming
AU - Zhou, Xianxiao
AU - Xu, Peng
AU - Haroutunian, Vahram
AU - Cai, Dongming
AU - Zhang, Bin
AU - Spicer, Kenneth
AU - Longmire, Crystal Flynn
AU - Mintzer, Jacobo
AU - Rojas, Yaneicy Gonazalez
AU - Sotelo, V.
AU - Hu, William
AU - Jones, Floyd
AU - Saklad, Amy
AU - Seshadri, Sudha
AU - Boegel, Amy
AU - Hill, Sydni Jenee
AU - Newhouse, Paul
AU - Long, Rebecca
AU - Long, Campbell
AU - Williams, Arthur
AU - Acree, Allison
AU - Brawman-Mintzer, Olga
AU - Reichert, Chelsea
AU - Pomara, Vita
AU - Hernando, Raymundo
AU - Pomara, Nunzio
AU - Acothley, Skieff
AU - Elayan, Nadeen
AU - Slaughter, Micah Ellis
AU - Garcia, Angelica
AU - Sabbagh, Marwan
AU - Gurung, Maushami
AU - Le, Richard
AU - Masdeu, Joseph
AU - Rosario, Christina
AU - Smith, Caroline
AU - Kalowsky, Teresa
AU - Rivera, Edgardo
AU - Okhravi, Hamid
AU - Devine, Rebecca
AU - Yong, Meagan
AU - Roglaski, Emily
AU - Janavs, Juris
AU - Echevarria, Jenny
AU - Mba, Ijeoma
AU - Smith, Amanda
AU - Aladeen, Traci
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026
Y1 - 2026
N2 - Alzheimer’s disease (AD) disproportionately affects women and carriers of the apolipoprotein E ε4 allele (APOE4), yet little is known about how sex and APOE interact to influence white matter (WM) integrity during disease progression. We integrated diffusion MRI and matched blood transcriptomic data to investigate these interactions and their underlying biological mechanisms. WM microstructure was quantified using diffusion tensor imaging (DTI) and neurite orientation dispersion and density imaging (NODDI), and regional vulnerability was assessed with a composite vulnerability score (CVS) derived from associations between diffusion features and AD severity across clinical traits in each of the four sex-APOE groups (female or male, with or without APOE4). Brain parcellation with the Eve atlas revealed regions consistently affected across sex-APOE groups (e.g., parahippocampal and superior temporal gyri) and regions specific to individual groups (e.g., the cingulum in females with APOE4 and the middle frontal gyrus in males without APOE4). Gene co-expression network analysis of the matched blood expression data identified gene subnetworks linked to group-specific regional vulnerability, including a muscle tissue morphogenesis module regulated by NEURL1B and HIST1H2BN associated with middle frontal gyrus vulnerability. These findings demonstrate that sex and APOE genotype jointly shape region-specific WM vulnerability and its molecular signatures in AD. Understanding these interactions provides novel mechanistic insights and may inform precision approaches to drug development, biomarker discovery, and clinical trial design for AD.
AB - Alzheimer’s disease (AD) disproportionately affects women and carriers of the apolipoprotein E ε4 allele (APOE4), yet little is known about how sex and APOE interact to influence white matter (WM) integrity during disease progression. We integrated diffusion MRI and matched blood transcriptomic data to investigate these interactions and their underlying biological mechanisms. WM microstructure was quantified using diffusion tensor imaging (DTI) and neurite orientation dispersion and density imaging (NODDI), and regional vulnerability was assessed with a composite vulnerability score (CVS) derived from associations between diffusion features and AD severity across clinical traits in each of the four sex-APOE groups (female or male, with or without APOE4). Brain parcellation with the Eve atlas revealed regions consistently affected across sex-APOE groups (e.g., parahippocampal and superior temporal gyri) and regions specific to individual groups (e.g., the cingulum in females with APOE4 and the middle frontal gyrus in males without APOE4). Gene co-expression network analysis of the matched blood expression data identified gene subnetworks linked to group-specific regional vulnerability, including a muscle tissue morphogenesis module regulated by NEURL1B and HIST1H2BN associated with middle frontal gyrus vulnerability. These findings demonstrate that sex and APOE genotype jointly shape region-specific WM vulnerability and its molecular signatures in AD. Understanding these interactions provides novel mechanistic insights and may inform precision approaches to drug development, biomarker discovery, and clinical trial design for AD.
KW - Alzheimer’s disease
KW - Apolipoprotein E
KW - Diffusion tensor imaging, gene coexpression network analysis
KW - Sex
UR - https://www.scopus.com/pages/publications/105032161383
U2 - 10.1007/s11357-025-02089-4
DO - 10.1007/s11357-025-02089-4
M3 - Article
C2 - 41708549
AN - SCOPUS:105032161383
SN - 2509-2715
JO - GeroScience
JF - GeroScience
ER -