4.8 Article

A Heterojunction Structured WO2.9-WSe2 Nanoradiosensitizer Increases Local Tumor Ablation and Checkpoint Blockade Immunotherapy upon Low Radiation Dose

期刊

ACS NANO
卷 14, 期 5, 页码 5400-5416

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.9b08962

关键词

radiotherapy; heterojunction structure; checkpoint blockade immunotherapy; radiosensitizer; WO2.9-WSe2 nanoparticles

资金

  1. National Basic Research Program o f China [2016YFA2021600, 2018YFA0703500]
  2. National Natural Science Foundation of China [51822207, 51772292, 31571015, 11621505]
  3. Chinese Academy of Sciences Youth Innovation Promotion Association [2013007]
  4. CAS Key Research Program of Frontier Sciences [QYZDJSSW-SLH022]

向作者/读者索取更多资源

Radiotherapy (RT) in practical use often suffers from offtarget side effects and ineffectiveness against hypoxic tumor micro-environment (TME) as well as remote metastases. With regard to these problems, herein, we provide semiconductor heterojunction structured WO2.9-WSe2-PEG nanoparticles to realize a synergistic RT/photothermal therapy (PTT)/checkpoint blockade immunotherapy (CBT) for enhanced antitumor and antimetastatic effect. Based on the heterojunction structured nanoparticle with high Z element, the nanosystem could realize non-oxygen-dependent reactive oxygen species generation by catalyzing highly expressed H2O2 in TME upon X-ray irradiation, which could further induce immunogenic cell death. Meanwhile, this nanosystem could also induce hyperthermia upon near-infrared irradiation to enhance RT outcome. With the addition of anti-PD-L1 antibody-based CBT, our results give potent evidence that local RT/PTT upon mild temperature and low radiation dose could efficiently ablate local tumors and inhibit tumor metastasis as well as prevent tumor rechallenge. Our study provides not only one kind of radiosensitizer based on semiconductor nanoparticles but also a versatile nanoplatform for simultaneous triple-combined therapy (RT/PTT/CBT) for treating both local and metastasis tumors.

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