光热治疗
光动力疗法
光敏剂
活性氧
线粒体
聚乙二醇化
化学
荧光寿命成像显微镜
癌症研究
分子成像
生物物理学
纳米技术
材料科学
医学
荧光
生物
生物化学
光化学
体内
有机化学
生物技术
物理
聚乙二醇
量子力学
作者
Sha Yang,Gui‐long Wu,Na Li,Minghui Wang,Peixian Wu,Yuxuan He,Wei Zhou,H. Xiao,Xiaofeng Tan,Li Tang,Qinglai Yang
标识
DOI:10.1186/s12951-022-01679-0
摘要
Phototherapy is a conducive and non-invasive strategy for cancer therapy under light irradiation. Inspiringly, fluorescence imaging in the second near-infrared window (NIR-II, 1000-1700 nm) holds a great promise for imaging-guided phototherapy with deep penetration and high spatiotemporal resolution. However, most phototherapeutics still face great challenges, including complicated synthesis of agents, potential biotoxicity and unsatisfied therapeutic outcomes. Herein, a near-infrared laser triggered molecular photosensitizer FEPT, modified with triphenylphosphine PEGylation (PEG2000-TPP), is developed for NIR-II imaging-guided mitochondria-targeting synergistic photothermal therapy (PTT)/photodynamic therapy (PDT)/immune therapy (IMT). The mitochondria-targeting photosensitizer FEPT can produce reactive oxygen species (ROS) and hyperpyrexia upon 808 nm laser irradiation, resulting in mitochondrial dysfunction and photo-induced apoptosis via caspase-3 pathway. Phototherapy-induced hyperthermia or ROS triggers the release of immunogenic intracellular substrates from dying tumor cells, thereby promoting the activation of antitumor immunity. Herein, this work provides a practicable strategy to develop a molecular phototheranostic platform for imaging-guided cancer therapy via mitochondria-targeting.
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