Nanoscale Metal-Organic Framework Overcomes Hypoxia for Photodynamic Therapy Primed Cancer Immunotherapy.
Nanoscale Metal-Organic Framework Overcomes Hypoxia for Photodynamic Therapy Primed Cancer Immunotherapy.
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DOI:
10.1021/jacs.8b01072
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发表时间:
2018-05-02
影响因子:
15
通讯作者:
Lin W
中科院分区:
文献类型:
--
作者:
Lan G;Ni K;Xu Z;Veroneau SS;Song Y;Lin W
Immunotherapy has become a promising cancer therapy, but only works for a subset of cancer patients. Immunogenic photodynamic therapy (PDT) can prime cancer immunotherapy to increase the response rates, but its efficacy is severely limited by tumor hypoxia. Here we report a nanoscale metal–organic framework, Fe-TBP, as a novel nanophotosensitizer to overcome tumor hypoxia and sensitize effective PDT, priming non-inflamed tumors for cancer immunotherapy. Fe-TBP was built from iron-oxo clusters and porphyrin ligands and sensitized PDT under both normoxic and hypoxic conditions. Fe-TBP mediated PDT significantly improved the efficacy of anti-programmed death-ligand 1 (α-PD-L1) treatment and elicited abscopal effects in a mouse model of colorectal cancer, resulting in >90% regression of tumors. Mechanistic studies revealed that Fe-TBP mediated PDT induced significant tumor infiltration of cytotoxic T cells.
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DOI:
10.1038/nrc3239
发表时间:
2012-03-22
期刊:
Nature reviews. Cancer
影响因子:
--
作者:
Pardoll DM
通讯作者:
Pardoll DM
影响因子:
38.3
作者:
Luo M;Wang H;Wang Z;Cai H;Lu Z;Li Y;Du M;Huang G;Wang C;Chen X;Porembka MR;Lea J;Frankel AE;Fu YX;Chen ZJ;Gao J
通讯作者:
Gao J
影响因子:
15
作者:
Lu K;He C;Guo N;Chan C;Ni K;Weichselbaum RR;Lin W
通讯作者:
Lin W
影响因子:
38.3
作者:
Spring BQ;Bryan Sears R;Zheng LZ;Mai Z;Watanabe R;Sherwood ME;Schoenfeld DA;Pogue BW;Pereira SP;Villa E;Hasan T
通讯作者:
Hasan T
影响因子:
15
作者:
Wang, Kecheng;Feng, Dawei;Zhou, Hong-Cai
通讯作者:
Zhou, Hong-Cai