化学
光热治疗
光动力疗法
系统间交叉
光敏剂
生物相容性
荧光
聚集诱导发射
分子内力
纳米技术
合理设计
纳米颗粒
生物物理学
光化学
立体化学
激发态
有机化学
物理
核物理学
生物
材料科学
量子力学
单重态
作者
Peihong Xiao,Wei Xie,Jianyu Zhang,Qian Wu,Zipeng Shen,Chenqi Guo,Yi Wu,Fubing Wang,Ben Zhong Tang,Dong Wang
摘要
Phototheranostics has received sustained attention due to its great potential in revolutionizing conventional strategies of cancer treatment. However, trapped by the complexity, poor reproducibility, insufficient phototheranostic outputs, and inevitable damage to normal tissue of most multicomponent phototheranostic systems, its clinical translation has been severely hindered. Therefore, the exploration of "one for all" smart phototheranostic agents with versatile functionalities remains an appealing yet enormously challenging task. Herein, a reversibly pH-switchable and near-infrared second photosensitizer featuring aggregation-induced emission was tactfully designed by molecular engineering for precise tumor-targeting fluorescence imaging-guided phototherapy. Thanks to the strong intramolecular charge transfer, enhanced highly efficient intersystem crossing, and sufficient intramolecular motion, the developed agent DTTVBI was endowed with boosted type-I superoxide anion radical generation and excellent photothermal performance under 808 nm laser irradiation. More importantly, DTTVBI nanoparticles with high biocompatibility exhibit remarkably enhanced type-I photodynamic/photothermal therapy in the tumor region, thus offering significant antitumor effects both in vitro and in the patient-derived tumor xenograft model of colon cancer. This work sheds new light on the development of superior versatile phototheranostics for cancer therapy.
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