| Literature DB >> 33336561 |
Hongzhi Cao1,2, Bin Fang2,3, Jiejie Liu2, Yu Shen2, Jie Shen2, Pan Xiang1,2, Qin Zhou4, Senio Campos De Souza5, Dandan Li2,4, Yupeng Tian2, Lei Luo6, Zhongping Zhang4,7, Xiaohe Tian1,2,5.
Abstract
Multi-photon photosensitizers (PSs) could significantly improve the efficacy of photodynamic therapy due to the long-wavelength favorability for deeper tissue penetration and lower biological damage. However, most studies are limited to single-photon or two-photon PSs at a relatively short-wave excitation window. To overcome this barrier, we rationally design a series of rigid plane compounds with efficient reactive oxygen species (ROS) production in vitro under laser irradiation. Furthermore, the studies show that one of the compounds (U-TsO) could induce rapid multi-types of cell death under three-photon exposure, suggesting a promising clinical outcome in ex vivo 3D multicellular tumor spheroid. This work offers a novel strategy to construct functional materials with competitive multi-photon photodynamic therapy (PDT) outcome.Entities:
Keywords: photodynamic therapy; reactive oxygen species; rigid planar photosensitizers; three-photon absorption
Year: 2020 PMID: 33336561 DOI: 10.1002/adhm.202001489
Source DB: PubMed Journal: Adv Healthc Mater ISSN: 2192-2640 Impact factor: 9.933