PubMed · 42749890
Sex-specific biological aging clocks across organs and omics.
Abstract
Sex differentially shapes aging, neurodevelopment and neurodegenerative diseases such as Alzheimer's disease (AD). However, most biological aging clocks (artificial intelligence-predicted age minus chronological age) were trained on sex-pooled samples and implicitly assume sex invariance.Here we developed 38 sex-specific biological aging clocks across 15 organ systems. We first demonstrate the importance of sex-stratified training for constructing sex-specific healthy normative references and then reveal marked divergence between female and male clocks. Key genetic parameters and Mendelian randomization results indicate that organ-specific aging liability and its relationships to cardiometabolic, endocrine and mental traits are configured differently in females and males. Proteomic analyses identify distinct, organ-resolved synaptic, immune, vascular and metabolic networks that differentially track female and male biological aging. In longitudinal survival analyses, sex-specific clocks predict whole-body systemic diseases and all-cause mortality in a sex-dependent and organ-dependent manner. Further analyses reveal sex-dependent associations between the brain aging clock and cognitive decline trajectory during a preclinical AD clinical trial. Sex-stratified clocks may offer distinct value by defining biological age against sex-appropriate normative references and revealing sex-dependent genetic, molecular and clinical signatures that pooled models may obscure. Meanwhile, sex-pooled and sex-interaction approaches remain valuable, as human aging and disease also share fundamental biological similarities between females and males. Together, these findings reveal sex-specific biological aging signatures in aging, AD and systemic health, highlighting the need for explicitly sex-stratified modeling approaches.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
MULTI Consortium, Zhiyuan Song, Derek Feng, Naowal Azraf Rahman, Michael R Duggan, Qu Tian, Jian Zeng, Xia Zhou, Chunrui Zou, Michael S Rafii, Li Shen, Paul Thompson, Eleanor M Simonsick, Keenan A Walker, Andrew Zalesky, Christos Davatzikos, Paul Aisen, Luigi Ferrucci, Susan M Resnick, Junhao Wen. 2026-09-16. Sex-specific biological aging clocks across organs and omics.. https://doi.org/10.1038/s41591-026-04662-6
Cite the original work for its findings. Save a collection to share your selection of sources.