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◆ npj Precision Oncology2026-01-21· Endometrial cancer

An interpretable deep learning model for predicting endometrial cancer molecular subtypes from H&E-stained slides

Qinhao Guo, Haoyu Cui, Yangyang Zhang, Shaoxian Tang, Wentao Yan, Xiaoyan Zhou, Hongmei Ding, Jinhua Zhou, Xingzhu Ju, Zheng Feng, Jun Zhu, Fang Bai, Yanping Zhong, Haiming Li, Jun Xu, X. Wu, Xiangxue Wang, Hao Wen

原始摘要(英文原文)· Original abstract
The molecular subtype of endometrial cancer is important for predicting prognosis and treatment effectiveness. This study aimed to develop an interpretable deep learning model based on H&E-stained whole slide images (WSIs) to predict the molecular subtype of endometrial cancer. Data from the Fudan cohort (n = 364) were used to train an end-to-end prediction network for identifying four molecular subtypes. Two external cohorts-the TCGA (n = 296) and Suzhou (n = 36)-were used to validate model generalizability and potential clinical applicability. We further assessed the correlation between histological and molecular features at both the macro- (WSI) and micro- (patch) levels. The network achieved a macro-average area under the receiver operating characteristic curve (AUROC) of 0.867 (95% CI: 0.823-0.911) in 5-fold cross-validation. The class-wise AUROCs were 0.846 (95% CI: 0.798-0.894) for the microsatellite instability-high (MSI-H) subtype, 0.876 (95% CI: 0.831-0.921) for the nonspecific molecular profile (NSMP) subtype, 0.910 (95% CI: 0.818-1.000) for the p53-abnormal (p53abn) subtype, and 0.835 (95% CI: 0.784-0.886) for the POLE-mutated (POLEmut) subtype. Morphological analysis revealed that MSI-H-subtype tumors exhibited increased stromal lymphocytic infiltration; POLEmut tumors showed higher heterogeneity, solid growth patterns, and elevated tumor grade; p53abn tumors were characterized by papillary growth and serous-like features; while NSMP tumors demonstrated high stromal cellularity. This method provides an accurate and interpretable tool for molecular subtype prediction, offering a theoretical basis for future individualized treatment strategies in endometrial cancer.
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