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Intracavity generation of glioma stem cell–specific CAR macrophages primes locoregional immunity for postoperative glioblastoma therapy

医学 胶质瘤 免疫系统 癌症研究 干细胞 揭穿 免疫 小胶质细胞 获得性免疫系统 免疫学 癌症 生物 内科学 卵巢癌 炎症 遗传学
作者
Chen Chen,Weiqiang Jing,Yu Chen,Ganyu Wang,Mohnad Abdalla,Lin Gao,Maosen Han,Chongdeng Shi,Anning Li,Peng Sun,Xin Jiang,Xin Jiang,Zhenmei Yang,Shengchang Zhang,Jing Zhang,Chunwei Tang,Ying Liu,Rui Zhang,Feng‐Bo Xu,Baixiang Dong
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:14 (656): eabn1128-eabn1128 被引量:265
标识
DOI:10.1126/scitranslmed.abn1128
摘要

Glioblastoma multiforme (GBM) remains incurable despite aggressive implementation of multimodal treatments after surgical debulking. Almost all patients with GBM relapse within a narrow margin around the initial resected lesion due to postsurgery residual glioma stem cells (GSCs). Tracking and eradicating postsurgery residual GSCs is critical for preventing postoperative relapse of this devastating disease, yet effective strategies remain elusive. Here, we report a cavity-injectable nanoporter-hydrogel superstructure that creates GSC-specific chimeric antigen receptor (CAR) macrophages/microglia (MΦs) surrounding the cavity to prevent GBM relapse. Specifically, we demonstrate that the CAR gene-laden nanoporter in the hydrogel can introduce GSC-targeted CAR genes into MΦ nuclei after intracavity delivery to generate CAR-MΦs in mouse models of GBM. These CAR-MΦs were able to seek and engulf GSCs and clear residual GSCs by stimulating an adaptive antitumor immune response in the tumor microenvironment and prevented postoperative glioma relapse by inducing long-term antitumor immunity in mice. In an orthotopic patient-derived glioblastoma humanized mouse model, the combined treatment with nanoporter-hydrogel superstructure and CD47 antibody increased the frequency of positive immune responding cells and suppressed the negative immune regulating cells, conferring a robust tumoricidal immunity surrounding the postsurgical cavity and inhibiting postoperative glioblastoma relapse. Therefore, our work establishes a locoregional treatment strategy for priming cancer stem cell-specific tumoricidal immunity with broad application in patients suffering from recurrent malignancies.
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