4.8 Article

Glucose Oxidase-Instructed Traceable Self-Oxygenation/Hyperthermia Dually Enhanced Cancer Starvation Therapy

期刊

THERANOSTICS
卷 10, 期 4, 页码 1544-1554

出版社

IVYSPRING INT PUBL
DOI: 10.7150/thno.40439

关键词

manganese oxidase; melanin; photothermal therapy; starvation therapy; synergistic therapy

资金

  1. Basic Research Program of Shenzhen [JCYJ2018050 7182413022]
  2. National Natural Science Foundation of China [51573096, 51703132, 31771036]
  3. National Key Research and Development Program [2018YFA0704003]
  4. Guangdong Province Natural Science Foundation of Major Basic Research and Cultivation Project [2018B030308003]
  5. Fok Ying-Tong Education Foundation for Young Teachers in the Higher Education Institutions of China [161032]

向作者/读者索取更多资源

Cancer theranostics based on glucose oxidase (GOx)-induced starvation therapy has got more and more attention in cancer management. Herein, GOx armed manganese dioxide nanosheets (denoted as MNS-GOx) were developed as cancer nanotheranostic agent for magnetic resonance (MR)/photoacoustic (PA) dual-modal imaging guided self-oxygenation/hyperthermia dually enhanced starvation cancer therapy. The manganese dioxide nanomaterials with different morphologies (such as nanoflowers, nanosheets and nanowires) were synthesized by a biomimetic approach using melanin as a biotemplate. Afterwards, the manganese dioxide nanosheets (MNS) with two sides and large surface area were selected as the vehicle to carry and deliver GOx. The as-prepared MNS-GOx can perform the circular reaction of glucose oxidation and H2O, decomposition for enhanced starvation therapy. Moreover, the catalytic activity of GOx could be further improved by the hyperthermia of MNS-GOx upon near-infrared laser irradiation. Most intriguingly, MNS-GOx could achieve turn-on MR imaging and turn-off' PA imaging simultaneously. The theranostic capability of MNS-GOx was evaluated on A375 tumor-bearing mice with all tumor elimination. Our findings integrated molecular imaging and starvation-based synergistic cancer therapy, which provided a new platform for cancer nanotheranostics.

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