前药
光敏剂
化学
光动力疗法
部分
体内
细胞内
体外
激进的
癌症研究
细胞毒性T细胞
生物物理学
细胞毒性
癌细胞
组合化学
胞浆
立体化学
吲哚试验
光化学
转染
电子受体
生物化学
电子供体
细胞凋亡
作者
Yingyong Ni,Ting Wang,Xuan Zhao,Xinjie Xu,Jianhua Yu,Zhou Lu,Xiaojiao Zhu,Hongping Zhou
出处
期刊:Small
[Wiley]
日期:2025-11-28
卷期号:22 (5): e04604-e04604
被引量:1
标识
DOI:10.1002/smll.202504604
摘要
Abstract The design of NIR‐I activated oxygen‐independent photosensitizers with optimal delivery efficiency holds great promise in efficient photodynamic therapy of deep‐seated hypoxic tumors. Herein, by fabricating intratumoral synthetic therapeutic system, the silenced prodrug AICST are selectively and spontaneously transformed into AICST‐SO 3 with NIR‐I absorption, which underwent oxygen‐free photo‐redox cycle for hypoxic tumor phototherapy. The prodrug AICST based on D‐π‐A structure with a two‐photon moiety coumarin as donor (D), C═C bond as π bridge, and indole derivative as electron acceptor (A) responded to the intracellular overexpressed SO 3 2− to yield photosensitizer AICST‐SO 3 . The photo‐excited AICST‐SO 3 generated charge separation species, wherein the strong oxidized moiety would capture electron from water to generate cytotoxic hydroxyl radical (OH•), and the anionic radicals transferred electrons to pyruvic acid to accomplish the photo‐redox cycle. In vitro cellular experiments confirmed the intracellular synthesis of AICST‐SO 3 and the efficient cancer cells killing capability. In vivo mouse model experiments revealed that, under the 800 nm irradiation, the tumor can almost be completely ablated by the prodrug AICST , further confirming the great advance of the intratumoral synthetic therapeutic system activated by NIR‐I light for hypoxic tumor therapy. This work offers new pathway for developing a potent phototherapy model.
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