JOURNAL ARTICLE

Phenylthiol-BODIPY-based supramolecular metallacycles for synergistic tumor chemo-photodynamic therapy

Xiongjie LinFeng ChenXiujun YuHeng WangHuayu QiuYang LiShouchun YinPeter J. Stang

Year: 2022 Journal:   Proceedings of the National Academy of Sciences Vol: 119 (29)Pages: e2203994119-e2203994119   Publisher: National Academy of Sciences

Abstract

The development of more effective tumor therapy remains challenging and has received widespread attention. In the past decade, there has been growing interest in synergistic tumor therapy based on supramolecular coordination complexes. Herein, we describe two triangular metallacycles (1 and 2) constructed by the formation of pyridyl boron dipyrromethene (BODIPY)–platinum coordination. Metallacycle 2 had considerable tumor penetration, as evidenced by the phenylthiol-BODIPY ligand imparting red fluorescent emission at ∼660 nm, enabling bioimaging, and transport visualization within the tumor. Based on the therapeutic efficacy of the platinum(II) acceptor and high singlet oxygen ( 1 O 2 ) generation ability of BODIPY, 2 was successfully incorporated into nanoparticles and applied in chemo-photodynamic tumor therapy against malignant human glioma U87 cells, showing excellent synergistic therapeutic efficacy. A half-maximal inhibitory concentration of 0.35 μM was measured for 2 against U87 cancer cells in vitro. In vivo experiments indicated that 2 displayed precise tumor targeting ability and good biocompatibility, along with strong antitumor effects. This work provides a promising approach for treating solid tumors by synergistic chemo-photodynamic therapy of supramolecular coordination complexes.

Keywords:
BODIPY Photodynamic therapy Supramolecular chemistry Singlet oxygen Cancer research Photosensitizer Chemistry In vivo Biophysics Fluorescence Photochemistry Medicine Biology Oxygen Organic chemistry

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Topics

Nanoplatforms for cancer theranostics
Physical Sciences →  Engineering →  Biomedical Engineering
Luminescence and Fluorescent Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Supramolecular Chemistry and Complexes
Physical Sciences →  Chemistry →  Organic Chemistry
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