光动力疗法
光敏剂
缺氧(环境)
单线态氧
活性氧
体内
提拉帕扎明
化学
癌症研究
细胞凋亡
药品
氮芥
肿瘤微环境
肿瘤缺氧
药理学
细胞毒性
体外
氧气
化疗
医学
生物化学
肿瘤细胞
生物
光化学
内科学
放射治疗
生物技术
环磷酰胺
有机化学
作者
Ran Wang,Maomao He,Zongwei Zhang,Tian Qiu,Yue Xi,Xiaolong Zeng,Jiangli Fan,Wen Sun,Xiaojun Peng
摘要
Abstract Photodynamic therapy (PDT) has become a promising method for tumor treatment due to its non‐invasive and high spatiotemporal selectivity. However, PDT is still hindered by reactive oxygen species deficiency, because solid tumors feature a hypoxic microenvironment. PDT combined with hypoxia‐activated chemotherapy drugs can effectively induce tumor death, overcoming the limitations of the sole PDT for the fight against hypoxia. Herein, we designed a nanosystem (PCe6AZOM) that enhances the release of hypoxia‐activated drugs (AZOM) by PDT. Under hypoxic conditions, the azo bond of AZOM is cleaved by azo reductase, releasing highly cytotoxic AZOM and resulting in a significant increase in intratumor drug concentration. Meanwhile, the commercial photosensitizer Ce6 can aggravate the oxygen‐poor state during the PDT process and further cause more AZOM release. Moreover, the cascade reactions in the nanosystem could activate singlet oxygen and enhance drug release through 660 nm light laser irradiation, contributing to more effective induction of tumor apoptosis and tumor growth retardation in vitro and in vivo.
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