| Literature DB >> 35445526 |
Mengliang Zhu1, Hang Zhang1, Guangliu Ran2, Yuhang Yao1, Zi-Shu Yang1, Yingying Ning1, Yi Yu1, Ruijing Zhang1, Xin-Xin Peng1, Jiahui Wu1, Zhifan Jiang1, Wenkai Zhang2, Bing-Wu Wang1,3, Song Gao1,3,4, Jun-Long Zhang1,3.
Abstract
Photodynamic therapy (PDT) is a non-invasive treatment modality against a range of cancers and nonmalignant diseases, however one must be aware of the risk of causing phototoxic reactions after treatment. We herein report a bioinspired design of next-generation photosensitizers (PSs) that not only effectively produce ROS but undergo fast metabolism after treatment to overcome undesirable side effects. We constructed a series of β-pyrrolic ring-opening seco-chlorins, termed beidaphyrin (BP), beidapholactone (BPL), and their zinc(II) derivatives (ZnBP and ZnBPL), featuring intense near-infrared absorption and effective O2 photosensitization. Irradiation of ZnBPL led to a non-cytotoxic, metabolizable beidaphodiacetamide (ZnBPD) via in situ generated O2 .- but not 1 O2 , as revealed by mechanistic studies including time-resolved absorption, kinetics, and isotope labeling. Furthermore, water-soluble ZnBPL showed an effective therapeutic outcome, fast metabolism, and negligible phototoxic reactions.Entities:
Keywords: Photodegradation; Photodynamic Therapy; Reactive Oxygen Species; Tetrapyrrole; seco-Chlorin
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Year: 2022 PMID: 35445526 DOI: 10.1002/anie.202204330
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 16.823