光动力疗法
谷胱甘肽
光敏剂
生物相容性
荧光
癌症研究
活性氧
抗氧化剂
内生
材料科学
生物物理学
化学
纳米复合材料
细胞凋亡
基底细胞
细胞
肿瘤缺氧
纳米技术
荧光寿命成像显微镜
共轭体系
细胞培养
纳米医学
作者
Lidong Wang,Yongyan Sun,Yuting Sun,Changbin Zhang,Guixi Wang,Junnan He,Yan Zhao,Ming Li
标识
DOI:10.1021/acsami.6c00090
摘要
Photodynamic therapy (PDT) holds promise for oral squamous cell carcinoma (OSCC) but is limited by the tumor microenvironment─specifically hypoxia, elevated glutathione (GSH), and the lack of tumor-selective photosensitizer activation. To overcome these barriers, we developed a GSH-activated nanoplatform Cu-TCPP(Zn)/Ti 3 C 2 T x for fluorescence imaging-guided synergistic photodynamic/chemodynamic therapy (PDT/CDT). The system is constructed from two-dimensional Cu-TCPP(Zn) MOF nanosheets, where Cu 2+ and Zn 2+ completely quench the fluorescence and PDT activity of TCPP and surface-anchored Ti 3 C 2 T x MXene. In the TME, overexpressed GSH reduces Cu 2+ to Cu + and abstracts Zn from the Zn–N 4 complex, triggering nanocomposite disintegration to restore fluorescence, activate PDT, and simultaneously deplete GSH to reduce antioxidant defense. The resulting Cu + catalyzes a Fenton-like reaction with endogenous H 2 O 2 to generate •OH for CDT, while Ti 3 C 2 T x acts as a catalase-like nanozyme, decomposing H 2 O 2 into O 2 to alleviate hypoxia, promote charge transfer, improve the utilization efficiency of photogenerated electrons, and enhance PDT efficacy. In vitro, the platform showed excellent biocompatibility and GSH-responsive activation, inducing 41.21% apoptosis in CAL-27 cells under 660 nm laser irradiation, significantly outperforming controls. In vivo, the nanocomposite accumulated efficiently in tumors via the EPR effect, suppressed tumor growth, and exhibited no observable systemic toxicity. This work provides a TME-responsive theranostic platform that integrates tumor-specific activation, GSH depletion, hypoxia alleviation, and enhanced ROS generation for precise and effective OSCC treatment.
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