癌症研究
放射治疗
CD8型
免疫系统
髓样
免疫疗法
医学
细胞因子
先天免疫系统
干细胞
化疗
免疫学
生物
内科学
细胞生物学
作者
Yannik Kaiser,Christopher Garris,Eliana Marinari,Hyung Shik Kim,Juhyun Oh,Martin Pédard,Elias A. Halabi,Moonhyun Choi,Sepideh Parvanian,Rainer H. Köhler,Denis Migliorini,Ralph Weissleder
标识
DOI:10.1038/s41551-025-01533-2
摘要
Abstract Glioblastoma is a highly aggressive brain tumour with a high risk of recurrence after surgery, even when combined with chemotherapy and radiotherapy. A major barrier to lasting treatment is the tumour’s immunosuppressive environment, which is largely dominated by myeloid cells. Here we describe the development of a biodegradable implant to sustainably release immune-modulator small molecules to reprogram tumour-infiltrating myeloid cells toward a pro-inflammatory, antitumour phenotype in the surgical cavity after tumour removal. In immunocompetent mouse models, this therapy induces interleukin-12 expression in myeloid cells without systemic cytokine elevation, and increases the infiltration of CD8 + and CD4 + T cells. Over 50% of mice treated (in combination with radiotherapy and chemotherapy) remain tumour-free during the experimental course (80 days). We further treated human glioblastoma explants ex vivo with the therapy and observed increased interleukin-12 expression in tumour-infiltrating myeloid cells, supporting the translational potential of this strategy. This implantable system offers a promising approach to prevent glioblastoma recurrence by activating innate immunity and sustaining immune surveillance post-surgery.
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