头颈部癌
生物
生态系统
生态位
多样性(政治)
医学
生态学
癌症
利基
肿瘤微环境
结果(博弈论)
头颈部
生物多样性
疾病
背景(考古学)
作者
Jianhong An,Erqiang Hu,Qunlun Shen,Jing Zhu,Jiye Zhu,Naijia Liu,Qingxiang Lin,Leti Núñez,Shamsu Bello,Yuting Ren,Selin Kurt,Kelise Harris,Nicole Kawachi,Gregory Rosenblatt,Ruichen Ye,Jeffrey E. Segall,Harry Ostrer,Tiffany Hebert,Roger Fecher,Qiang Liu
出处
期刊:Med
[Elsevier BV]
日期:2026-07-01
卷期号:: 101214-101214
标识
DOI:10.1016/j.medj.2026.101214
摘要
Background Head and neck squamous cell carcinoma (HNSCC) exhibits substantial biological heterogeneity that is not fully explained by human papillomavirus (HPV) status. The spatial organization of tumor, immune, and stromal cell populations and its relationship to clinical outcome remain incompletely understood. Methods We performed single-cell spatial transcriptomic and proteomic profiling of 44 primary HNSCC tumors, generating a spatial atlas of 19,471,501 cells across whole-slide tissue sections. Spatial niches and ecosystem states were identified through integrated computational analyses and evaluated for associations with tumor programs, clinicopathologic features, and patient outcomes. Findings HPV-negative tumors were enriched for fibroblast-rich, immune-poor niches associated with epithelial-mesenchymal transition and hypometabolic tumor programs, whereas HPV-positive tumors displayed more diverse immune, stromal, and vascular niche combinations and were enriched for immunogenic ecosystem states. Approximately 20% of HPV-positive tumors exhibited fibroblast-rich ecosystem architectures resembling HPV-negative disease and were associated with less favorable outcomes than other HPV-positive tumors of similar stage. In patient-derived co-culture models, extracellular matrix-associated fibroblasts were associated with epithelial-mesenchymal transition (EMT)-like tumor states, CD8 + T cell dysfunction, and chemotherapy resistance-associated phenotypes. Conclusions Spatial ecosystem architecture is associated with clinically relevant heterogeneity beyond conventional HPV-based classification. Fibroblast-rich, immune-poor ecosystem states characterize a high-risk subset of HPV-positive tumors and may provide a framework for improved biological classification and risk stratification in HNSCC. Funding This work was supported by the National Institutes of Health (R01CA291607 and R21CA267527-01) and the Feldstein Medical Foundation.
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