Key Laboratory of Photochemical Biomaterials and Energy Storage Materials and College of Chemistry and Chemical Engineering, Harbin Normal University, Harbin 150025, China.
Biomater Sci. 2021 Jun 15;9(12):4473-4483. doi: 10.1039/d1bm00378j.
Photodynamic therapy (PDT) can be defined as a kind of intracellular photocatalysis. Inspired by the design of photocatalysts, the construction of the heterojunction also is expected to improve the production of reactive oxygen species (ROS) for PDT. Herein, the Cu2-xSe/Bi2Se3@PEG (CB3@PEG) nano-heterostructure has been prepared by a cation-exchange process, where the interaction between the host and exchange agent is vital. CB3@PEG exhibits the near-infrared (NIR)-triggered hydroxyl radical and singlet oxygen (˙OH and 1O2) generation, which is more than 6 times in contrast with that of pure Cu2-xSe@PEG, attributed to the Z-scheme charge transfer mechanism with the high redox ability and great charge separation. Moreover, with the narrower band gap of Bi2Se3, CB3@PEG exhibits enhanced NIR harvest as well as high photothermal conversion efficiency (60.4%). Due to the Fenton reaction caused by the Cu ion, CB3@PEG is endowed with the chemodynamic therapy (CDT) and signal-enhanced T1-weight magnetic resonance imaging (MRI) capacity. In addition, the great photothermal ability and X-ray absorption coefficient provide outstanding contrast in photothermal imaging (PTI) and computerized tomography (CT) imaging. Finally, the multi-imaging combined with the synergistic treatment (PTT/CDT/PDT) makes CB3@PEG achieve enhanced efficiency in anticancer therapy.
光动力疗法(PDT)可以定义为一种细胞内光催化作用。受光催化剂设计的启发,构建异质结也有望提高 PDT 中活性氧(ROS)的产生。在此,通过阳离子交换过程制备了 Cu2-xSe/Bi2Se3@PEG(CB3@PEG)纳米异质结构,其中主体和交换剂之间的相互作用至关重要。CB3@PEG 表现出近红外(NIR)触发的羟基自由基和单线态氧(˙OH 和 1O2)生成,与纯 Cu2-xSe@PEG 相比,其生成效率提高了 6 倍以上,这归因于具有高氧化还原能力和良好电荷分离的 Z 型电荷转移机制。此外,由于 Bi2Se3 的带隙更窄,CB3@PEG 表现出增强的近红外吸收以及高光热转换效率(60.4%)。由于 Cu 离子引发的芬顿反应,CB3@PEG 具有化学动力学治疗(CDT)和信号增强 T1 加权磁共振成像(MRI)能力。此外,优异的光热能力和 X 射线吸收系数在光热成像(PTI)和计算机断层扫描(CT)成像中提供了出色的对比。最后,多成像结合协同治疗(PTT/CDT/PDT)使 CB3@PEG 在癌症治疗中实现了增效作用。