Desert Immune Phenotype in Endometrial Carcinoma: A Distinct Subgroup With Poor Prognosis and Targetable Mutations
Details
Publication Year 2026-04-10,Volume 39,Issue #6,Page 101000
Journal Title
Modern Pathology
Publication Type
Research article
Abstract
Accurate assessment of the tumor immune microenvironment is increasingly important for risk stratification in endometrial carcinoma (EC). Existing immune profiling methods often rely on immunohistochemistry and digital quantification to distinguish inflamed and excluded phenotypes, whereas the Desert phenotype-marked by minimal immune infiltration-may be identifiable on routine hematoxylin and eosin (H&E) slides. Therefore, we developed a qualitative histological scoring system to define the Desert phenotype on H&E slides and used it to examine clinicopathological and molecular associations, evaluate prognostic relevance, and assess interobserver reproducibility. Five expert gynecological pathologists defined consensus criteria for the Desert phenotype in a molecularly classified development cohort (n = 20) and applied them to a testing cohort from the randomized PORTEC-3 trial (n = 380), which included patients with high-risk EC randomized to radiotherapy or chemoradiotherapy. In the PORTEC-3 cohort, 28% of tumors displayed the Desert phenotype. Desert EC were enriched for the no specific molecular profile (NSMP) and p53-abnormal (p53abn) molecular classes and exhibited a distinct mutational profile, including a higher prevalence of CTNNB1 and AKT1 mutations, an effect that was driven by the NSMP subgroup. Desert EC had worse recurrence-free survival compared with Non-Desert EC. Across molecular classes, worse overall survival was only observed in Desert p53abn EC compared to Non-Desert p53abn EC. Interobserver agreement was moderate (κ = 0.57). To conclude, the Desert immune phenotype, as identified on routine H&E slides with moderate agreement, is a biologically distinct and prognostically significant subset of EC. Future work to improve reproducibility is essential to validate its potential for clinical use both for risk stratification and for guiding immunotherapy.
Publisher
Elsevier
Keywords
Desert immune phenotype; endometrial carcinoma; hematoxylin and eosin–based immune scoring; interobserver variability; molecular classification; tumor immune microenvironment
Department(s)
Medical Oncology
Open Access at Publisher's Site
https://doi.org/10.1016/j.modpat.2026.101000
Terms of Use/Rights Notice
Refer to copyright notice on published article.


Creation Date: 2026-04-28 02:39:59
Last Modified: 2026-06-04 11:59:37
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