光热治疗
紧身衣
体内
材料科学
光敏剂
生物相容性
纳米技术
超分子化学
光动力疗法
免疫疗法
荧光
癌症
化学
光化学
分子
有机化学
医学
物理
内科学
生物技术
冶金
生物
量子力学
作者
Hong‐Bo Cheng,Hao Dai,Xiaoqiong Tan,Hao Li,Huihui Liang,Chenyan Hu,Mingwei Huang,Jin Yong Lee,Jing Zhao,Liming Zhou,Yuguang Wang,Liqun Zhang,Juyoung Yoon
标识
DOI:10.1002/adma.202109111
摘要
Theranostic systems that permit both diagnosis and treatment in vivo are highly appealing means by which to meet the demands of precision medicine. However, most such systems remain subject to issues related to complex molecular design and synthesis, potential toxicity, and possible photoactivity changes. Herein, a novel supramolecular theranostic strategy involving biomarker protein activation (BPA) and a host-guest strategy is proposed. To exemplify BPA, a facile "one-for-all" nanotheranostic agent for both albumin detection and cancer treatment is demonstrated, which utilizes a nanoparticulate heavy-atom-free BODIPY dye derivative (B4 NPs). The fluorescence and photoactivity of BODIPY dyes are completely suppressed by aggregation-induced self-quenching in the nanoparticulate state. However, a Balb/c nude mouse model is used to confirm that following the disassembly of injected B4 NPs, BODIPY specifically binds albumin in vivo, accompanied by significantly enhanced biocompatibility and photothermal conversion efficiency. More importantly, this supramolecular host-guest BPA strategy enables the resultant nanoplatform to act as a facile and efficient strategy for photodynamic and photothermal immunotherapy.
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