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Spatiotemporal-Controlled Nanoagonists Triggered STING Activation for Cascade-Amplified Photothermal Metalloimmunotherapy

作者:Min Mu, Hui Li, Susu Xiao, Chenqian Feng, Bo Chen, Rangrang Fan, Nianyong Chen, Gang Guo · 发表于:Biomacromolecules · 年份:2025 · DOI:10.1021/acs.biomac.4c01774 · 被引用次数:6 · 研究领域:Nanoplatforms for cancer theranostics、interferon and immune responses、Photodynamic Therapy Research Studies

Triple-negative breast cancer is an aggressive subtype of breast cancer characterized by rapid disease progression and a high risk of metastasis. The advent of immunotherapy has revolutionized the treatment paradigm for breast cancer. Herein, a manganese-based nanoagonist (FA-IR780/EGCG@MnO 2 ) featuring mitochondrial targeting and photothermal therapy (PTT) was constructed for STING activation and photothermal metalloimmunotherapy. The engineered FA-IR780/EGCG@MnO 2 was constructed to enable the generation of mitochondria-targeted reactive oxygen species under laser irradiation to release mitochondrial DNA (mtDNA) and induce immunogenic cell death. The released mtDNA, as an endogenous danger-associated molecular pattern, could activate the STING pathway. Concurrently, Mn 2+ further enhanced the activation of the STING pathway. By combining the synergistically enhanced the activation of the STING pathway, the engineered nanoagonist facilitated the DC maturation and T lymphocyte infiltration, resulting in long-term immune memory to inhibit tumor growth. This study revealed the potential combination of metalloimmunotherapy and PTT for rational regulation of the immune microenvironment.