Publication date: Jun 24, 2025
Cancer treatment has been revolutionized by the immune checkpoint inhibitors (ICIs). However, a subset of patients do not respond and/or experience significant adverse events. Attempts to integrate reliable biomarkers of ICI response as part of standard care have been hampered by limited generalizability. We previously reported our supervised machine learning (ML) model in a retrospective cohort of metastatic melanoma. Here, we expanded our testing to include larger cohorts of melanoma patients accrued at several sites, including patients enrolled in clinical trials in both adjuvant and metastatic settings. We examined pre-treatment hematoxylin and eosin slides from 639 patients with stage III/IV melanoma treated with ICI (anti-CTLA-4 n=212, anti-PD-1 n=271, or the combination n=156). We tested the generalizability of our supervised ML algorithm to predict response to ICI in the metastatic melanoma cohort, then developed a self-supervised ML model to identify the histologic morphologies associated with patients’ survival following ICI use in adjuvant and metastatic melanoma cohorts. We predicted the response to ICI with an area under the curve of 0. 72. The deep convolutional neural network classified patients into high and low risk based on their likelihood of progression-free survival (P
Semantics
| Type | Source | Name |
|---|---|---|
| disease | MESH | Cancer |
| disease | MESH | melanoma |
| pathway | KEGG | Melanoma |