嵌合抗原受体
癌症研究
抗原
胶质母细胞瘤
免疫抑制
肿瘤微环境
胶质瘤
髓样
免疫疗法
医学
疾病
免疫系统
髓系细胞
细胞
下调和上调
T细胞
免疫学
巨噬细胞
生物
相伴的
抗原处理
移植
封锁
受体
抗原呈递
细胞毒性T细胞
癌症
化学
脑癌
作者
Neil Savage,Shan Grewal,Muhammad Vaseem Shaikh,Franz J. Zemp,Dillon McKenna,Nicholas Mikolajewicz,Hinda Najem,Joanna Pyczek,Jiuran Wei,Mo Taleb,Lucas Asselstine,Alisha Anand,Shawn C. Chafe,Kui Zhai,William T. Maich,Chirayu R. Chokshi,Hardikkumar Patel,Tiegan E. Korman,Minomi Subapanditha,Zoya Tabunshchyk
出处
期刊:Nature
[Nature Portfolio]
日期:2026-07-01
被引量:3
标识
DOI:10.1038/s41586-026-10641-1
摘要
Abstract Glioblastoma is a lethal brain tumour for which current multimodal treatment rarely prevents recurrence 1 . Therapeutic failure is driven by extensive intratumoural cellular heterogeneity 2 with a microenvironment dominated by tumour-associated macrophages that sustain tumour growth and immunosuppression 3 . Although chimeric antigen receptor (CAR)-T cell therapies are being developed for glioblastoma, sustained response has been undermined by non-uniform antigen expression, antigen loss and microenvironmental barriers that are not directly engaged by tumour-targeting designs 4 . These limitations motivate new strategies that address the disease as a coupled tumour–immune system rather than a single malignant compartment. Here we use a multi-omic target discovery platform to identify GPNMB as a dual-compartment antigen in glioblastoma. Anti-GPNMB CAR-T cells showed potent anti-tumour activity, with long-term disease control in orthotopic patient-derived xenografts and syngeneic glioma models through concomitant depletion of GPNMB + tumour and immunosuppressive myeloid populations. By collapsing tumour control and microenvironmental reprogramming, these findings provide a new strategy for antigen selection and targeting in heterogenous, myeloid-rich solid cancers.
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