光热治疗
菁
纳米技术
癌症治疗
光动力疗法
材料科学
荧光寿命成像显微镜
聚集诱导发射
荧光
癌症治疗
体内
癌细胞
医学影像学
光学成像
临床前影像学
化学
分子成像
癌症研究
计算机科学
作者
Nana Su,Yi Lin,Bingling Zhang,Yuxiao Kang,Yuhang Li,Chang Lu,Xiaole Zhou,Qingqing Huang,Leyu Wang
标识
DOI:10.1002/adhm.202505434
摘要
Activable theranostic probes offer significant potential for the precise diagnosis and therapy in cancer treatment. The core challenge in realizing this target is how to manipulate therapeutic and imaging activities by a simple yet efficient method. To address this, an exceptional "charge regulation" strategy to furnish an activable theranostic probe, GSH-Cy5 is employed. The probe undergoes tumor-specific activation via glutathione (GSH)-triggered decationization, concurrently enhancing its anti-cancer activity and tumor-imaging contrast. Beyond this theranostic activity, GSH-Cy5 also exhibits synergistic photothermal (PTT) and photodynamic (PDT) effects, which further amplify its therapeutic efficacy by inducing cell death through mitochondria-mediated pathways. In vivo experiments demonstrated the effectiveness of GSH-Cy5, as it successfully enabled tumor visualization and selective therapy in tumor-bearing mouse models. This work establishes GSH-Cy5 as a transformative theranostic platform, while the "charge regulation" strategy opens new avenues for designing activable cyanine probes in precise tumor treatment.
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