光敏剂
光动力疗法
发光
癌症研究
卟啉
余辉
持续发光
材料科学
纳米颗粒
生物物理学
光化学
化学
纳米技术
医学
光电子学
生物
有机化学
天文
物理
热释光
伽马射线暴
作者
Sarun Juengpanich,Shijie Li,Taorui Yang,Tian‐Ao Xie,Jiadong Chen,Yukai Shan,Jiyoung Lee,Ziyi Lu,Tianen Chen,Bin Zhang,Jiasheng Cao,Jiahao Hu,Jicheng Yu,Yanfang Wang,Win Topatana,Zhen Gu,Xiujun Cai,Mingyu Chen
标识
DOI:10.1038/s41467-023-41389-1
摘要
Phototherapy of deep tumors still suffers from many obstacles, such as limited near-infrared (NIR) tissue penetration depth and low accumulation efficiency within the target sites. Herein, stimuli-sensitive tumor-targeted photodynamic nanoparticles (STPNs) with persistent luminescence for the treatment of deep tumors are reported. Purpurin 18 (Pu18), a porphyrin derivative, is utilized as a photosensitizer to produce persistent luminescence in STPNs, while lanthanide-doped upconversion nanoparticles (UCNPs) exhibit bioimaging properties and possess high photostability that can enhance photosensitizer efficacy. STPNs are initially stimulated by NIR irradiation before intravenous administration and accumulate at the tumor site to enter the cells through the HER2 receptor. Due to Pu18 afterglow luminescence properties, STPNs can continuously generate ROS to inhibit NFκB nuclear translocation, leading to tumor cell apoptosis. Moreover, STPNs can be used for diagnostic purposes through MRI and intraoperative NIR navigation. STPNs exceptional antitumor properties combined the advantages of UCNPs and persistent luminescence, representing a promising phototherapeutic strategy for deep tumors.
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