Literature DB >> 35126878

Indocyanine green assembled free oxygen-nanobubbles towards enhanced near-infrared induced photodynamic therapy.

Li Yang1, Bin Huang1,2, Shiqi Hu3, Yuan An1, Jingyi Sheng1, Yan Li1, Yuxin Wang3, Ning Gu1.   

Abstract

Photodynamic therapy (PDT) has shown a promising capability for cancer treatment with minimal side effects. Indocyanine green (ICG), the only clinically approved near-infrared (NIR) fluorophore, has been used as a photosensitizer for PDT in clinical application. However, the main obstacle of directly utilizing ICG in the clinic lies in its low singlet oxygen (1O2) quantum yield (QY) and instability in aqueous solution. To improve the PDT efficacy of ICG, free ICG molecules were assembled with free oxygen nanobubbles (NBs-O2) to fabricate ICG-NBs-O2 by hydrophilic-hydrophobe interactions on the gas-liquid interface. Interestingly, 1O2 QY of ICG-NBs-O2 solution was significantly increased to 1.6%, which was estimated to be 8 times as high as that of free ICG solution. Meanwhile, ICG-NBs-O2 exhibited better aqueous solution stability compared with free ICG. Furthermore, through establishing tumor models in nude mice, the therapeutic efficacy of ICG-NBs-O2 was also assessed in the PDT treatment of oral cancer. The tumor volume in ICG-NBs-O2 treated group on day 14 decreased to 0.56 of the initial tumor size on day 1, while the tumor volume in free ICG treated group increased to 2.4 times. The results demonstrated that ICG-NBs-O2 showed excellent tumor ablation in vivo. Therefore, this facile method provided an effective strategy for enhanced PDT treatment of ICG and showed great potential in clinical application. Electronic Supplementary Material: Supplementary material (measurements of the singlet oxygen quantum yield of ICG-NBs-O2, time-dependent temperature changes during the laser irradiation, photographs of Cal27 tumor-bearing nude mice and complete blood count of health male balb/c mice analysis) is available in the online version of this article at 10.1007/s12274-022-4085-0. © Tsinghua University Press 2022.

Entities:  

Keywords:  aqueous solution stability; free oxygen-nanobubbles; indocyanine green; photodynamic therapy; singlet oxygen quantum yield

Year:  2022        PMID: 35126878      PMCID: PMC8800431          DOI: 10.1007/s12274-022-4085-0

Source DB:  PubMed          Journal:  Nano Res        ISSN: 1998-0000            Impact factor:   10.269


Indocyanine green assembled free oxygen-nanobubbles towards enhanced near-infrared induced photodynamic therapy
  34 in total

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