In situ reprogramming of glioma stem cells into dendritic cell-like cells for glioblastoma immunotherapy

Immunotherapy has revolutionized the treatment landscape for many cancers, but fails to improve the outcomes of glioblastoma multiforme (GBM), in which low tumor antigen presentation restricts the recognition and eradication of cancerous cells by immunocytes. We here report an approach to in situ reprogramming hypoimmunogenic glioblastoma stem cells (GSCs) into type 1 conventional dendritic cell (cDC1)-like cells for presenting endogenous tumor antigens and priming sustained tumoricidal T-cell responses. Specifically, our cavity-injectable nucleobase-derived lipid nanoparticle (LNP)-hydrogel superstructure efficiently delivers transcription factors (PU.1, IRF8, BATF3) and the costimulatory molecule (TNFSF9) into GSCs to induce cDC1-like reprogramming. These cDC1-like cells potentiate GBM immunogenicity, elicit robust adaptive immunity and long-term antitumor memory, thereby inhibiting tumor growth and preventing postoperative GBM relapse in mice. Collectively, this work establishes in situ tumor cell reprogramming into licensed cDC1-like cells as a therapeutic paradigm for converting immunologically “cold” tumors into a self-vaccinating immune niche with broad translational potential for hypoimmunogenic malignancy treatment. Limited tumor antigen presentation restricts the recognition and eradication of cancer cells by immunocytes. Here this group reports a strategy of in situ reprogramming hypoimmunogenic glioblastoma stem cells into type 1 conventional dendritic cel-like cells thereby presenting endogenous tumor antigens and priming sustained tumoricidal T-cell responses.

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Publication Details

Journal
Nature Communications
Published
2026-09-28
DOI
https://doi.org/10.1038/s41467-026-78070-2
Primary Topic
Glioma Diagnosis and Treatment
Type
article
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In situ reprogramming of glioma stem cells into dendritic cell-like cells for glioblastoma immunotherapy

Jian Gao, Xin Wen, Jingyi Han, 孙维绎 et al.
Nature Communications
Glioma Diagnosis and Treatment
article

In situ reprogramming of glioma stem cells into dendritic cell-like cells for glioblastoma immunotherapy

Jian Gao, Xin Wen, Jingyi Han, 孙维绎, Zichao Yao, Zhenmei Yang, Zhaoyu Chen, Xinyi Jiang, Yulin Zhang, Xiaotian Zhao, Kun Zhao, Xianghui Dong, Jinxin Gao, Zhipeng Fu, Maosen Han, Miaoyan Liu, Yan Wang, Xiao Yue, Kun Han, Chen Chen, Chunwei Tang, Ying Liu, Jing Zhang
article en

Abstract

Immunotherapy has revolutionized the treatment landscape for many cancers, but fails to improve the outcomes of glioblastoma multiforme (GBM), in which low tumor antigen presentation restricts the recognition and eradication of cancerous cells by immunocytes. We here report an approach to in situ reprogramming hypoimmunogenic glioblastoma stem cells (GSCs) into type 1 conventional dendritic cell (cDC1)-like cells for presenting endogenous tumor antigens and priming sustained tumoricidal T-cell responses. Specifically, our cavity-injectable nucleobase-derived lipid nanoparticle (LNP)-hydrogel superstructure efficiently delivers transcription factors (PU.1, IRF8, BATF3) and the costimulatory molecule (TNFSF9) into GSCs to induce cDC1-like reprogramming. These cDC1-like cells potentiate GBM immunogenicity, elicit robust adaptive immunity and long-term antitumor memory, thereby inhibiting tumor growth and preventing postoperative GBM relapse in mice. Collectively, this work establishes in situ tumor cell reprogramming into licensed cDC1-like cells as a therapeutic paradigm for converting immunologically “cold” tumors into a self-vaccinating immune niche with broad translational potential for hypoimmunogenic malignancy treatment. Limited tumor antigen presentation restricts the recognition and eradication of cancer cells by immunocytes. Here this group reports a strategy of in situ reprogramming hypoimmunogenic glioblastoma stem cells into type 1 conventional dendritic cel-like cells thereby presenting endogenous tumor antigens and priming sustained tumoricidal T-cell responses.

Nature Communications
Shandong University of Traditional Chinese Medicine (CN), Shandong University (CN), Qilu Hospital of Shandong University (CN)
Good health and well-being
Openalex Percentile: Top 12%
Glioma Diagnosis and Treatment
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