期刊
ACS NANO
卷 16, 期 10, 页码 16177-16190出版社
AMER CHEMICAL SOC
DOI: 10.1021/acsnano.2c04983
关键词
Photoacoustic imaging; Extracellular vesicles; Immune checkpoint blockade; Immunogenic cell death; Chemoimmunotherapy; Imaging-guided therapy
类别
资金
- National Natural Science Foundation of China [82002253, 81922034, 81902138]
This study synthesized engineered cellular nanovesicles (ECNVs) with tumor-homing and immune-reprogramming functions for photoacoustic (PA) imaging-guided precision chemo-immunotherapy. The ECNVs effectively targeted tumor tissues and used the photothermal ability to release drugs. The combination of chemotherapy and immune response resulted in enhanced antitumor effects.
Many studies have focused on developing effective therapeutic strategies to selectively destroy primary tumors, eliminate metastatic lesions, and prevent tumor recurrence with minimal side effects on normal tissues. In this work, we synthesized engineered cellular nanovesicles (ECNVs) with tumor-homing and immune-reprogramming functions for photoacoustic (PA) imaging-guided precision chemo-immunotherapy. M1-macrophage-derived cellular nanovesicles (CNVs) were loaded with gold nanorods (GNRs), gemcitabine (GEM), CpG ODN, and PD-L1 aptamer. The good histocompatibility and tumor-homing effect of CNVs improved drug retention in the bloodstream and led to their enrichment in tumor tissues. Furthermore, the photothermal ability of GNRs enabled PA imaging-guided drug release. GEM induced tumor immunogenic cell death (ICD), and CpG ODN promoted an immune response to the antigens released by ICD, leading to long-term specific antitumor immunity. In addition, the PD-L1 aptamer relieved the inhibitory effect of the PD1/PD-L1 checkpoint on CD8(+) T-cells and augmented the immunotherapeutic effect. The synergistic innate and adaptive immune responses enhanced the antitumor effect of ECNVs. In summary, this nanoplatform integrates local targeted photothermal therapy with extensive progressive chemotherapy and uses ICD to reshape the immune microenvironment for tumor ablation.
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