Contrasting roles of PD-L1 expression in tumor and stroma: Biological and prognostic implications in esophageal squamous cell carcinoma.

间质细胞 肿瘤微环境 免疫系统 免疫疗法 癌症研究 生物 生物标志物 免疫检查点 医学 肿瘤进展 入侵足纲 病态的 免疫学 基质 细胞 转录组 免疫监视 细胞毒性T细胞 肿瘤浸润淋巴细胞 T细胞 食管鳞状细胞癌 基质金属蛋白酶 肿瘤异质性 间充质干细胞 间质瘤 基因表达谱 计算生物学 机制(生物学) 生物信息学 基因表达调控
作者
Eisuke Booka,Tomohiro Murakami,Hiroya Takeuchi
出处
期刊:PubMed [National Institutes of Health]
卷期号:: 25063-25063
标识
DOI:10.14670/hh-25-063
摘要

Programmed death-ligand 1 (PD-L1) plays a central role in immune regulation in esophageal squamous cell carcinoma (ESCC) and has been widely used as a biomarker for immune checkpoint inhibitor therapy. However, the biological and clinical significance of PD-L1 expression remains controversial, partly due to its marked spatial heterogeneity and dynamic regulation within the tumor immune microenvironment (TIME). In particular, conventional assessment methods do not sufficiently distinguish between PD-L1 expression in tumor cells and that in the surrounding stromal compartment. Accumulating evidence indicates that tumoral and stromal PD-L1 expression reflect distinct biological processes and may have contrasting prognostic and therapeutic implications. Tumoral PD-L1 expression often represents adaptive immune resistance induced by cytotoxic T-cell-derived cytokines and may serve as a surrogate marker of an immune-active tumor. In contrast, stromal PD-L1 expression integrates signals from immune cells, cancer-associated fibroblasts, and other non-neoplastic components, frequently reflecting an immune-enriched microenvironment associated with restrained tumor progression and sustained chemotherapy efficacy. Recent advances in digital pathology and artificial intelligence-assisted image analysis have enabled quantitative, compartment-specific evaluation of PD-L1 expression across whole-slide images, providing new insights into its spatial distribution and clinical relevance. These approaches facilitate refined interpretation beyond binary scoring systems such as the combined positive score or tumor proportion score. In this review, we summarize current knowledge on the regulation and pathological assessment of PD-L1 in ESCC, with particular emphasis on its compartment-specific roles in tumor cells and the stroma. By integrating biological mechanisms, methodological advances, and clinical implications, we propose a conceptual framework for spatially resolved PD-L1 evaluation that may improve prognostic stratification and support more personalized treatment strategies in ESCC.
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