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Metallopolymer strategy to explore hypoxic active narrow-bandgap photosensitizers for effective cancer photodynamic therapy
Zhang, Zhao1; Wei, Zixiang1; Guo, Jintong1; Lyu, Jinxiao1; Wang, Bingzhe2; Wang, Gang2; Wang, Chunfei1; Zhou, Liqiang1,3; Yuan, Zhen1,3; Xing, Guichuan2; Wu, Changfeng4; Zhang, Xuanjun1,3
2024-12
Source PublicationNature Communications
ISSN2041-1723
Volume15Issue:1Pages:170
Abstract

Practical photodynamic therapy calls for high-performance, less O-dependent, long-wavelength-light-activated photosensitizers to suit the hypoxic tumor microenvironment. Iridium-based photosensitizers exhibit excellent photocatalytic performance, but the in vivo applications are hindered by conventional O-dependent Type-II photochemistry and poor absorption. Here we show a general metallopolymerization strategy for engineering iridium complexes exhibiting Type-I photochemistry and enhancing absorption intensity in the blue to near-infrared region. Reactive oxygen species generation of metallopolymer Ir-P1, where the iridium atom is covalently coupled to the polymer backbone, is over 80 times higher than that of its mother polymer without iridium under 680 nm irradiation. This strategy also works effectively when the iridium atom is directly included (Ir-P2) in the polymer backbones, exhibiting wide generality. The metallopolymer nanoparticles exhibiting efficient O generation are conjugated with integrin αvβ3 binding cRGD to achieve targeted photodynamic therapy.

KeywordPolymer Dots Iridium(Iii) Complexes Oxygen Nanoparticles
DOI10.1038/s41467-023-43890-z
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaScience & Technology - Other Topics
WOS SubjectMultidisciplinary Sciences
WOS IDWOS:001158425400011
PublisherNATURE PORTFOLIOHEIDELBERGER PLATZ 3, BERLIN 14197, GERMANY
Scopus ID2-s2.0-85181241254
Fulltext Access
Citation statistics
Document TypeJournal article
CollectionMinistry of Education Frontiers Science Center for Precision Oncology, University of Macau
Faculty of Health Sciences
INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Cancer Centre
Centre of Reproduction, Development and Aging
DEPARTMENT OF PUBLIC HEALTH AND MEDICINAL ADMINISTRATION
Corresponding AuthorZhang, Xuanjun
Affiliation1.Cancer Centre and Centre of Reproduction, Development and Aging, Faculty of Health Sciences, University of Macau, 999078, Macao
2.Institute of Applied Physics and Materials Engineering, University of Macau, 999078, Macao
3.MOE Frontiers Science Centre for Precision Oncology, University of Macau, 999078, Macao
4.Department of Biomedical Engineering, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, China
First Author AffilicationCentre of Reproduction, Development and Aging
Corresponding Author AffilicationCentre of Reproduction, Development and Aging;  University of Macau
Recommended Citation
GB/T 7714
Zhang, Zhao,Wei, Zixiang,Guo, Jintong,et al. Metallopolymer strategy to explore hypoxic active narrow-bandgap photosensitizers for effective cancer photodynamic therapy[J]. Nature Communications, 2024, 15(1), 170.
APA Zhang, Zhao., Wei, Zixiang., Guo, Jintong., Lyu, Jinxiao., Wang, Bingzhe., Wang, Gang., Wang, Chunfei., Zhou, Liqiang., Yuan, Zhen., Xing, Guichuan., Wu, Changfeng., & Zhang, Xuanjun (2024). Metallopolymer strategy to explore hypoxic active narrow-bandgap photosensitizers for effective cancer photodynamic therapy. Nature Communications, 15(1), 170.
MLA Zhang, Zhao,et al."Metallopolymer strategy to explore hypoxic active narrow-bandgap photosensitizers for effective cancer photodynamic therapy".Nature Communications 15.1(2024):170.
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