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◆ Frontiers in immunology2026-01-01

Spatial architecture of tumor-infiltrating lymphocytes adds predictive value beyond stromal TIL density for neoadjuvant response in triple-negative breast cancer.

Ke Yang, Hua Huang, Wei Shen, Yang Liu, Daxin Gao, Tian Hao, Haiyu Zhou, Yonghong Huang

一句话结论 · In one sentence

This study developed a seven-gene Pg-associated prognostic signature for OSCC and provided complementary transcriptomic, immune-correlation, tissue, and cell-based evidence that placed the signature in biological context. The model showed limited-to-moderate discrimination and is not ready for clinical use. The enrichment, gene-correlation, and immune-correlation findings are hypothesis-generating rather than mechanistic evidence. Further independent validation and dedicated functional studies are required.

原始摘要(英文原文)· Original abstract
BACKGROUND: Stromal tumor-infiltrating lymphocytes (TILs) are established biomarkers in triple-negative breast cancer (TNBC), but conventional density-based assessment does not capture their spatial relationship to tumor nests. We evaluated whether an H&E-derived spatial architecture index (SAI) provides predictive information beyond stromal TIL density for pathologic complete response (pCR) after neoadjuvant therapy. METHODS: This single-center retrospective cohort included 236 patients with TNBC who had evaluable pretreatment core biopsy slides and definitive surgical response assessment. The primary SAI was the equally weighted mean of standardized close interaction ratio and lymphocyte cluster index, together with reverse-coded standardized lymphocyte-tumor distance and edge enrichment. The primary multivariable analysis included 231 patients with complete clinicopathologic data. Robustness was evaluated using bootstrap optimism correction, alternative SAI constructions, treatment-regimen and propensity-score analyses, repeated nested cross-validation, and a 60-case reproducibility assessment. During internal validation, preprocessing and SAI construction were repeated within each training fold. RESULTS: Of 236 patients, 122 (51.7%) achieved pCR. In the main multivariable model, the SAI remained associated with pCR (OR 2.79 per 1 SD, 95% CI 1.79-4.35; P < 0.001), whereas stromal TIL density was not independently significant (OR 0.88 per 10% increase, 95% CI 0.74-1.04; P = 0.123). Bootstrap optimism-corrected AUROCs were 0.698 for the clinical model, 0.705 after the addition of stromal TIL density, 0.764 after the addition of the SAI, and 0.765 after the addition of both. Across six internally validated algorithms using the full feature set, mean AUROCs ranged from 0.730 to 0.752, with only modest between-algorithm differences. The SAI showed excellent interobserver reproducibility (ICC 0.93, 95% CI 0.89-0.95). Its association with pCR persisted in the chemotherapy-only subgroup (OR 2.48, 95% CI 1.52-4.05; P < 0.001), whereas the interaction with pembrolizumab-containing treatment was not significant (P = 0.222). CONCLUSION: In this exploratory single-center retrospective cohort, the H&E-derived SAI provided internally validated predictive information beyond stromal TIL density for pCR. External multicenter validation, assessment of intersite technical reproducibility, and prospective calibration are required before clinical implementation.
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Spatial architecture of tumor-infiltrating lymphocytes adds predictive value beyond stromal TIL density for neoadjuvant response in triple-negative breast cancer. — 科研速览 Science Skim