碳点-铜纳米组装体的肿瘤微环境刺激响应荧光成像及协同癌症治疗
Tumor Microenvironment Stimuli-Responsive Fluorescence Imaging and Synergistic Cancer Therapy by Carbon-Dot-Cu Nanoassemblies.
机构信息
Cixi Institute of Biomedical Engineering, Chinese Academy of Science (CAS) Key Laboratory of Magnetic Materials and Devices & Zhejiang Engineering Research Center for Biomedical Materials, Ningbo Institute of Materials Technology and Engineering, CAS, 1219 ZhongGuan West Road, Ningbo, 315201, China.
College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou, 450001, China.
出版信息
Angew Chem Int Ed Engl. 2020 Nov 16;59(47):21041-21048. doi: 10.1002/anie.202007786. Epub 2020 Sep 11.
A method is developed to fabricate tumor microenvironment (TME) stimuli-responsive nanoplatform for fluorescence (FL) imaging and synergistic cancer therapy via assembling photosensitizer (chlorine e6, Ce6) modified carbon dots (CDs-Ce6) and Cu . The as-obtained nanoassemblies (named Cu/CC nanoparticles, NPs) exhibit quenched FL and photosensitization due to the aggregation of CDs-Ce6. Their FL imaging and photodynamic therapy (PDT) functions are recovered efficiently once they entering tumor sites by the stimulation of TME. Introducing of Cu not only provides extra chemodynamic therapy (CDT) function through reaction with hydrogen peroxide (H O ), but also depletes GSH in tumors by a redox reaction, thus amplifying the intracellular oxidative stress and enhancing the efficacy of reactive oxygen species (ROS) based therapy. Cu/CC NPs can act as a FL imaging guided trimodal synergistic cancer treatment agent by photothermal therapy (PTT), PDT, and thermally amplified CDT.
一种通过组装光敏剂(氯 e6,Ce6)修饰的碳点(CDs-Ce6)和 Cu 来制备用于荧光(FL)成像和协同癌症治疗的肿瘤微环境(TME)刺激响应性纳米平台的方法。所得到的纳米组装体(命名为 Cu/CC 纳米颗粒,NPs)由于 CDs-Ce6 的聚集而表现出淬灭的 FL 和光动力治疗(PDT)功能。一旦它们通过 TME 的刺激进入肿瘤部位,它们的 FL 成像和 PDT 功能就可以有效地恢复。引入 Cu 不仅通过与过氧化氢(H2O2)的反应提供额外的化学动力学治疗(CDT)功能,而且通过氧化还原反应使肿瘤中的 GSH 耗竭,从而放大细胞内氧化应激并增强基于活性氧(ROS)的治疗的疗效。Cu/CC NPs 可以通过光热治疗(PTT)、PDT 和热增强 CDT 作为 FL 成像引导的三模态协同癌症治疗剂。