光动力疗法
光热治疗
紧身衣
单线态氧
活性氧
材料科学
光敏剂
胶束
远红色
光化学
荧光
生物物理学
化学
氧气
红灯
纳米技术
光学
有机化学
生物
生物化学
水溶液
物理
植物
作者
Bingqing Liu,Jian Jiao,Wan Xu,Mi-Ya Zhang,Peng Cui,Zhengqing Guo,Yibin Deng,Huabing Chen,Wenfang Sun
标识
DOI:10.1002/adma.202100795
摘要
Abstract A critical issue in photodynamic therapy (PDT) is inadequate reactive oxygen species (ROS) generation in tumors, causing inevitable survival of tumor cells that usually results in tumor recurrence and metastasis. Existing photosensitizers frequently suffer from relatively low light‐to‐ROS conversion efficiency with far‐red/near‐infrared (NIR) light excitation due to low‐lying excited states that lead to rapid non‐radiative decays. Here, a neutral Ir(III) complex bearing distyryl boron dipyrromethene (BODIPY‐Ir) is reported to efficiently produce both ROS and hyperthermia upon far‐red light activation for potentiating in vivo tumor suppression through micellization of BODIPY‐Ir to form “Micelle‐Ir”. BODIPY‐Ir absorbs strongly at 550–750 nm with a band maximum at 685 nm, and possesses a long‐lived triplet excited state with sufficient non‐radiative decays. Upon micellization, BODIPY‐Ir forms J ‐type aggregates within Micelle‐Ir, which boosts both singlet oxygen generation and the photothermal effect through the high molar extinction coefficient and amplification of light‐to‐ROS/heat conversion, causing severe cell apoptosis. Bifunctional Micelle‐Ir that accumulates in tumors completely destroys orthotopic 4T1 breast tumors via synergistic PDT/photothermal therapy (PTT) damage under light irradiation, and enables remarkable suppression of metastatic nodules in the lungs, together without significant dark cytotoxicity. The present study offers an emerging approach to develop far‐red/NIR photosensitizers toward potent cancer therapy.
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