材料科学
重编程
免疫疗法
巨噬细胞极化
癌症免疫疗法
表型
肿瘤微环境
巨噬细胞
清脆的
免疫系统
癌症研究
生物
免疫学
肿瘤细胞
遗传学
细胞
体外
基因
作者
Caiyan Zhao,Yaya Cheng,Pei Huang,Changrong Wang,Weipeng Wang,Mengjiao Wang,Wenbo Shan,Hongzhang Deng
标识
DOI:10.1002/adma.202208059
摘要
Abstract Effective repolarization of macrophages has emerged as a promising approach for anticancer therapy. However, there are very few studies on the effect of reprogramming macrophages from M2 phenotype to M1 phenotype without reconversion while maintaining an activated M1 phenotype. Moreover, these immunomodulatory methods have serious drawbacks due to the activation of normal monocytic cells. Therefore, it remains a challenge to selectively reprogram tumor‐associated macrophages (TAMs) without systemic toxicities. Here, X‐ray‐guided and triggered remote control of a CRISPR/Cas9 genome editing system (X‐CC9) that exclusively activates therapeutic agents at tumor sites is established. Under X‐ray irradiation, X‐CC9 selectively enhances M2‐to‐M1 repolarization within the tumor microenvironment, and significantly improves antitumor efficacy with robust immune responses in two animal models. This strategy provides an ideal method for improving the safety of macrophage polarization and may constitute a promising immunotherapy strategy.
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