光热治疗
纳米尺度
纳米技术
提拉帕扎明
生物相容性材料
光动力疗法
共价键
纳米颗粒
材料科学
化学
共价有机骨架
制作
癌症治疗
光热效应
表面改性
光敏剂
合理设计
肿瘤缺氧
纳米结构
纳米医学
药物输送
癌症治疗
溶剂
组合化学
化学改性
作者
Xiaohua Zheng,Min Chen,Xinran Wang,Junjie Wu,Xiaohui Wang,Jiayi Chen,Shanmei Wang,Mengjiao Zhou,Weiqi Wang,Rui Xia
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2025-12-12
卷期号:27 (1): 580-595
标识
DOI:10.1021/acs.biomac.5c01831
摘要
Covalent organic frameworks (COFs) offer structural tunability and intrinsic porosity, yet precise nanoscale fabrication of COF-based photosensitizers remains challenging. In this study, we report a mixed-solvent-mediated one-pot strategy to synthesize chlorin (TPC)-incorporated COF nanoparticles with tunable size by adjusting solvent composition and TPC feed ratio. Azo-based ligands confer hypoxia sensitivity to the framework. The optimized TPCCOF morphology was used to load tirapazamine (TPZ), forming the biocompatible TPCCOF@TPZ nanoplatform. Upon light irradiation, TPCCOF@TPZ enables concurrent photodynamic (PDT) and photothermal therapy (PTT). PDT exacerbates tumor hypoxia, triggering TPZ release and hypoxia-activated chemotherapy. This synergistic PDT/PTT/chemotherapy combination effectively suppresses 4T1 tumor cell proliferation under both normoxic and hypoxic conditions. Our work advances nanoscale COF design for multimodal cancer therapy and supports preclinical development of porphyrin-based photosensitizers.
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