量子产额
产量(工程)
光动力疗法
超分子化学
纳米技术
化学
材料科学
癌症研究
生物物理学
生物
物理
荧光
分子
光学
有机化学
冶金
作者
Shuheng Qin,Xiao Cheng,Ziqi Zhou,Xinran Zhang,Jia‐Yang Chen,Peipei Xu,Ting Wu,Yong Hu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-07-01
卷期号:19 (27): 24985-25006
被引量:4
标识
DOI:10.1021/acsnano.5c04279
摘要
Sentinel lymph nodes (SLNs) are pivotal sites for metastatic progression and key indicators of systemic tumor dissemination, with lymphatic metastasis accounting for ∼90% of cancer-related deaths. However, immunotherapy remains largely ineffective, with response rates below 20%, due to the immunosuppressive tumor microenvironment. Here, we present a protein-confined rotor strategy that leverages the supramolecular nanophotosensitizer (BCP3I@M), integrating a Toll-like receptor (TLR7/8) agonist IMDQ and macrophage membrane cloaking for precise SLN targeting. This strategy exploits the protein cavity as a molecular scaffold to constrain the intramolecular motion of the photosensitizer CP, thereby enhancing intersystem crossing efficiency and boosting 1O2 generation by 5.6-fold over ICG. As a result, it significantly amplifies photodynamic therapy (PDT)-induced immunogenic cell death, potentiating antigen presentation and immune activation. Comparative evaluation of two treatment paradigms─primary tumor irradiation (NIR Tum.) versus SLN-directed PDT (NIR T-SLN)─revealed the superior efficacy of the latter in suppressing metastatic dissemination and reshaping the SLN immunosuppressive microenvironment. Moreover, selective IMDQ release further promoted antigen presentation and T cell activation, synergistically reinforcing both innate and adaptive immunity. This strategy not only eradicated lung metastases but also extended survival, offering a clinically translatable approach to precision tumor immunotherapy.
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