化学
光动力疗法
光敏剂
光子上转换
药物输送
纳米技术
显像剂
姜黄素
分子成像
聚集诱导发射
药品
组合化学
双光子激发显微术
生物成像
镧系元素
金属有机骨架
荧光
荧光寿命成像显微镜
靶向给药
激进的
肿瘤微环境
癌症研究
药物发现
输送系统
纳米载体
水溶液中的金属离子
毒品携带者
作者
Jiarui Du,Tao Jia,Dan Li,Hans Ågren,Liangcan He,Chen Guanying
摘要
Smart tumor-responsive theranostic agents are crucial for advancing precision medicine by enabling targeted drug delivery with minimal off-target effects and allowing real-time monitoring of therapeutic outcomes. Although metal–organic frameworks (MOFs) hold promises as nanocarriers, they often lack integrated, stimuli-responsive imaging and therapeutic capabilities. Here, we present a multifunctional MOF-lanthanide theranostic agent featuring bidirectional near-infrared (NIR) photon conversion for image-guided, tumor-specific therapy. The MOF carrier MIL-53(Fe) encapsulates curcumin, a natural photosensitizer and chemotherapeutic agent, which is selectively released in the acidic tumor microenvironment via pH-triggered framework degradation. This degradation also releases Fe 3+ ions, initiating Fenton reactions to produce hydroxyl radicals for chemodynamic therapy (CDT). Lanthanide nanoparticles, satellited on the MOF, enable NIR-to-visible/ultraviolet upconversion to activate curcumin for photodynamic therapy (PDT), as well as NIR-to-NIR II (∼1530 nm) downshifting emission for deep-tissue imaging in vivo . Notably, the NIR II luminescence, initially quenched by metallic node ions (Fe 3+ ) in MOF, is restored during MOF degradation, allowing semi-quantitative visualization of drug release. In vivo NIR-II imaging demonstrates peak tumor accumulation of the agent at 24 h postinjection and near-complete systemic clearance by day 14. This platform achieves a synergistic chemotherapy/CDT/PDT effect, with about 80% cell-killing efficiency and a 15-fold tumor inhibition compared to controls, highlighting its potential as an efficient theragnostic agent for precision oncology.
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