硝基还原酶
化学
体内
体外
紧身衣
流式细胞术
缺氧(环境)
癌细胞
肿瘤缺氧
荧光
生物物理学
共焦
癌症研究
生物化学
癌症
分子生物学
酶
医学
氧气
生物
生物技术
物理
遗传学
几何学
有机化学
数学
量子力学
内科学
放射治疗
作者
Sanu Karan,Mi Young Cho,Hyun-Seung Lee,Hwunjae Lee,Hye Sun Park,Mahesh Sundararajan,Jonathan L. Sessler,Kwan Soo Hong
标识
DOI:10.1021/acs.jmedchem.0c02162
摘要
Tumor hypoxia is correlated with increased resistance to chemotherapy and poor overall prognoses across a number of cancer types. We present here a cancer cell-selective and hypoxia-responsive probe (fol-BODIPY) designed on the basis of density functional theory (DFT)-optimized quantum chemical calculations. The fol-BODIPY probe was found to provide a rapid fluorescence "off–on" response to hypoxia relative to controls, which lack the folate or nitro-benzyl moieties. In vitro confocal microscopy and flow cytometry analyses, as well as in vivo near-infrared optical imaging of CT26 solid tumor-bearing mice, provided support for the contention that fol-BODIPY is more readily accepted by folate receptor-positive CT26 cancer cells and provides a superior fluorescence "off–on" signal under hypoxic conditions than the controls. Based on the findings of this study, we propose that fol-BODIPY may serve as a tumor-targeting, hypoxia-activatable probe that allows for direct cancer monitoring both in vitro and in vivo.
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