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Localization and molecular interactions of mitoxantrone within living K562 cells as probed by confocal spectral imaging analysis.

机译:通过共聚焦光谱成像分析探明米托蒽醌在活K562细胞内的定位和分子相互作用。

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摘要

Studying mechanisms of drug antitumor action is complicated by the lack of noninvasive methods enabling direct monitoring of the state and interactions of the drugs within intact viable cells. Here we present a confocal spectral imaging (CSI) technique as a method of overcoming this problem. We applied this method to the examination of localization and interactions of mitoxantrone (1, 4-dihydroxy-5, 8-bis-[([2-(2-hydroxyethyl)-amino]ethyl)amino]-9,10-anthracenedione dihydrochloride), a potent antitumor drug, in living K562 cells. A two-dimensional set of fluorescence spectra of mitoxantrone (MITOX) recorded with micron resolution within a drug-treated cell was analyzed to reveal formation of drug-target complexes and to create the maps of their intracellular distribution. The analysis was based on detailed in vitro modeling of drug-target (DNA, RNA, DNA topoisomerase II) interactions and environmental effects affecting drug fluorescence. MITOX exposed to aqueous intracellular environment, MITOX bound to hydrophobic cellular structures, complexes of MITOX with nucleic acids, as well as the naphtoquinoxaline metabolite of MITOX were simultaneously detected and mapped in K562 cells. These states and complexes are known to be immediately related to the antitumor action of the drug. The results obtained present a basis for the subsequent quantitative analysis of concentration and time-dependent accumulation of free and bound MITOX within different compartments of living cancer cells.
机译:由于缺乏能够直接监测完整活细胞内药物状态和相互作用的非侵入性方法,药物抗肿瘤作用机制的研究变得复杂。在这里,我们提出共聚焦光谱成像(CSI)技术作为克服此问题的方法。我们将这种方法应用于米托蒽醌(1,4-dihydroxy-5,8-双-[([[2-(2-(羟乙基)-氨基]乙基]氨基] -9,10-蒽二酮二盐酸盐的定位和相互作用的研究),一种有效的抗肿瘤药物,存在于活K562细胞中。分析了在药物处理过的细胞内以微米分辨率记录的米托蒽醌(MITOX)的二维荧光光谱集,以揭示药物靶标复合物的形成并创建其细胞内分布图。该分析基于药物-靶标(DNA,RNA,DNA拓扑异构酶II)相互作用和影响药物荧光的环境影响的详细体外建模。 MITOX暴露于水性细胞内环境中,MITOX与疏水性细胞结构结合,MITOX与核酸的复合物,以及MITOX的萘喹喔啉代谢物被同时检测并定位在K562细胞中。已知这些状态和复合物与药物的抗肿瘤作用直接相关。获得的结果为随后定量分析活癌细胞不同区室中游离和结合的MITOX的浓度和时间依赖性积累提供了基础。

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