Gu Hua, Liu Weijian, Sun Wen, Du Jianjun, Fan Jiangli, Peng Xiaojun
State Key Laboratory of Fine Chemicals, Frontiers Science Center for Smart Materials Oriented Chemical Engineering, Dalian University of Technology Dalian 116024 China.
Ningbo Institute of Dalian University of Technology Ningbo 315016 China
Chem Sci. 2022 Jul 18;13(33):9719-9726. doi: 10.1039/d2sc02879d. eCollection 2022 Aug 24.
It is ideal yet challenging to achieve precise tumor targeting and high-quality imaging guided combined photodynamic and photothermal therapy (PDT and PTT). In this study, we synthesized a series of D-π-A-type single-molecule photosensitizers (CyE-TT, CyQN-TT, and CyQN-BTT) based on quaternized 1,1,2-trimethyl-1-benz[]indoles as acceptors by introducing π-bridges to elongate their emission wavelength and triphenylamine as a donor to construct a twisted molecular conformation. We found that the O generation ability and the photothermal conversion efficiency (PCE) are directly correlated with the π-bridge between donors and acceptors in these molecules. When a 2,1,3-benzothiadiazole group as a π-bridge was introduced into CyQN-BTT, the singlet oxygen yield enhanced to 27.1%, PCE to 37.8%, and the emission wavelength was red-shifted to near-infrared II (NIR-II). Importantly, double-cationic CyQN-BTT displays structure-inherent cancer cell targeting ability instead of targeting normal cells. Consequently, relying on NIR-II fluorescence imaging (NIR-II FLI) and photoacoustic imaging (PAI) guided PDT and PTT, CyQN-BTT can accurately locate solid tumors in mice and effectively eliminate them with good biocompatibility and biosafety to normal tissues. This study provides insights into the design and development of a tumor-specific targeting multifunctional photosensitizer for precise cancer phototherapy.
实现精确的肿瘤靶向和高质量成像引导的联合光动力和光热疗法(PDT和PTT)是理想的,但具有挑战性。在本研究中,我们基于季铵化的1,1,2-三甲基-1-苯并[]吲哚作为受体,通过引入π桥来延长其发射波长,并以三苯胺作为供体来构建扭曲的分子构象,合成了一系列D-π-A型单分子光敏剂(CyE-TT、CyQN-TT和CyQN-BTT)。我们发现,这些分子中的单线态氧生成能力和光热转换效率(PCE)与供体和受体之间的π桥直接相关。当将2,1,3-苯并噻二唑基团作为π桥引入CyQN-BTT时,单线态氧产率提高到27.1%,PCE提高到37.8%,并且发射波长红移至近红外II(NIR-II)。重要的是,双阳离子CyQN-BTT显示出结构固有的癌细胞靶向能力,而不是靶向正常细胞。因此,依靠近红外II荧光成像(NIR-II FLI)和光声成像(PAI)引导的PDT和PTT,CyQN-BTT可以在小鼠体内准确定位实体瘤,并以对正常组织良好的生物相容性和生物安全性有效消除它们。本研究为设计和开发用于精确癌症光疗的肿瘤特异性靶向多功能光敏剂提供了见解。