重编程
癌症研究
免疫系统
髓样
转移性乳腺癌
医学
树突状细胞
免疫
免疫疗法
癌症
乳腺癌
生物
免疫学
髓源性抑制细胞
癌细胞
肿瘤进展
T细胞
抗原
转移
细胞
三阴性乳腺癌
获得性免疫系统
细胞毒性T细胞
肿瘤微环境
癌症免疫疗法
原发性肿瘤
髓系细胞
先天免疫系统
肿瘤发生
免疫耐受
作者
Jie Yang,Di Chang,Y. Li,Z. Y. Xu,Daoshuang Li,Jing Xu,Zhiqi Zhang,Y. Li,Jianqiong Zhang,Jinbing Xie,Zebin Xiao,Shenghong Ju
标识
DOI:10.1038/s41467-026-70859-5
摘要
Immunosuppressive myeloid cells, including immature dendritic cells (DC) and tumor-promoting macrophages, drive tumor progression and immune evasion. Reprogramming these cells into immune effectors remains challenging. Here, we present a programmable nanomicelle platform that reconfigures myeloid immunity to combat both primary and metastatic breast cancer (BC). The nanomicelles co-deliver photosensitizers (IR825), anti-PD-L1 antibodies, and antagomiR-182 with spatiotemporal precision. Upon activation, they induce immunogenic cell death, promoting DC maturation to enhance antigen presentation. Concurrently, miR-182 inhibition repolarizes M2-like macrophages into M1-like phenotypes via the TLR4/MYD88/NF-κB pathway. This dual reprogramming enhances CD8+ T cell infiltration and functionality, driving durable anti-tumor responses. In multiple BC models, the platform suppresses tumor growth, prevents metastasis, and induces long-term immune memory. Its efficacy and immunomodulatory effects were further validated in a patient-derived tumor fragment assay and patient-derived xenograft models, highlighting translational potential. This work offers a clinically relevant strategy to rewire tumor-promoting myeloid cells for cancer immunotherapy.
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