4.7 Article

H2O2-Sensitive Upconversion Nanocluster Bomb for Tri-Mode Imaging-Guided Photodynamic Therapy in Deep Tumor Tissue

期刊

ADVANCED HEALTHCARE MATERIALS
卷 8, 期 20, 页码 -

出版社

WILEY
DOI: 10.1002/adhm.201900972

关键词

cerium oxide; hypoxia; metformin; photodynamic therapy; upconversion nanoparticles

资金

  1. National Key Research and Development Program of China [2018YFF0215500, 2017YFA0205400]
  2. National Natural Science Foundation of China [51773089, 51973091]
  3. Natural Science Foundation of Jiangsu Province [BK20181204, BK20171258]
  4. Science and Technology R&D Fund of Shenzhen City [JCYJ20170818110736342]
  5. Science and Technology Items Fund of NanTong City (Applied Basic Research Programs) [2017-N, MS12017027-2]

向作者/读者索取更多资源

Low penetration depth of excited light, undesirable distribution of photosensitizers, severe hypoxia, and inefficient reactive oxygen species (ROS) generation in tumors, lead to the poor therapeutic effects in photodynamic therapy. Herein, a multifunctional nanocluster bomb (UCGM naonoparticles) composed of upconversion nanoparticles (NPs), CeOx, graphite-C3N4 (g-C3N4) NPs, and metformin (Met) are developed to mitigate the hypoxia by oxidizing H2O2 into O-2 due to the catalysis of CeOx. The presence of Met can act on the mitochondrion to inhibit the respiration of tumor cells, further improving the O-2 level. Meanwhile, g-C3N4 NPs are released from UCGM NPs and penetrate tumor tissue deeply because of their small size. Upon 808 nm laser illumination, UCGM NPs show remarkable photothermal ability and efficiently convert near infrared to ultraviolet light to activate the g-C3N4 NPs to generate ROS in a whole tumor to facilitate a combined antitumor effect against deeply located tumors. Moreover, these UCGM NPs also display excellent performances in upconversion luminescence, magnetic resonance imaging, and computerized tomographic imaging, making them a potential imaging-guided drug delivery system in cancer therapy.

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