化学
荧光团
肿瘤缺氧
癌细胞
结合
癌症研究
缺氧(环境)
放射治疗
癌症
荧光
氧气
医学
内科学
有机化学
数学分析
物理
量子力学
数学
作者
Sha Chen,Songtao Yu,Zaizhi Du,Xie Huang,Ming He,Shuang Long,Jing Liu,Yu Lan,Dong Yang,Hao Wang,Shuhui Li,An Chen,Yuhui Hao,Yongping Su,Changning Wang,Shenglin Luo
标识
DOI:10.1021/acs.jmedchem.0c02250
摘要
Nitroimidazoles are one of the most common radiosensitizers investigated to combat hypoxia-induced resistance to cancer radiotherapy. However, due to poor selectivity distinguishing cancer cells from normal cells, effective doses of radiosensitization are much closer to the doses of toxicity induced by nitroimidazoles, limiting their clinical application. In this work, a tumor-targeting near-infrared (NIR) cyanine dye (IR-808) was utilized as a targeting ligand and an NIR fluorophore tracer to chemically conjugate with different structures of hypoxia-affinic nitroimidazoles. One of the NIR fluorophore-conjugated nitroimidazoles (808-NM2) was identified to preferentially accumulate in hypoxic tumor cells, sensitively outline the tumor contour, and effectively inhibit tumor growth synergistically by chemotherapy and radiotherapy. More importantly, nitroimidazoles were successfully taken into cancer cell mitochondria via 808-NM2 conjugate to exert the synergistic effect of chemoradiotherapy. Regarding the important roles of mitochondria on cancer cell survival and metastasis under hypoxia, 808-NM2 may be hopeful to fight against hypoxic tumors.
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