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首页> 外文期刊>Dyes and Pigments >Anthracene-thymine luminophores: Synthesis, photophysical properties, and imaging in living HeLa cells
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Anthracene-thymine luminophores: Synthesis, photophysical properties, and imaging in living HeLa cells

机译:蒽 - 胸腺嘧啶发光小孔:活性HeLa细胞的合成,光药性和成像

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This paper presents a report of the synthesis and chemical transformations of anthracene-thymine and 4-thiothymine derivatives. In a reaction of 1-(anthracen-9-yl)-1-hydroxy-3-(N1-thyminyl)-propane with ethylene glycol either an elimination or substitution product is preferentially formed depending on reaction conditions. In the presence of Yb(OTf)(3), the elimination product was the major one; while in the absence of Yb(OTf)(3), the substitution reaction product prevailed. Thus, six fluorescent nucleic base derivatives were obtained. The three anthracene-thymine derivatives (2, 3, and 4) show strong fluorescence with emission quantum yields from 65% to about 100% in solution at ambient temperature. The emission of anthracene-thymine 1 and two anthracene-thiothymines is weaker due to the carbonyl substituents and the sulphur atom of thiothymine. Tests of antiproliferative activity on human cancer HeLa cells performed at 24 h and 5 h treatment times, respectively, revealed no detectable toxicity at the latter interval. Thus, confocal microscopy imaging studies were carried out on HeLa cells at 5 h incubation time. All six compounds under study were found in the interior of the cells, albeit the intensity of the compounds' luminescence stemming from the interiors was different. All compounds localised in the lipid membranes of cytoplasmic compartments in general follow the same staining pattern. In addition, compounds 3 and 6 were also detected in the nucleus. Notably, no signs of photocytotoxicity or photobleaching in the timespan of imaging studies were observed. The new fluorescent nucleic base derivatives represent attractive leading structures for the development of preferably more selective luminescent probes in the future.
机译:本文介绍了蒽酮和4分硫氨酸衍生物的合成和化学转化的报告。在1-(蒽-9-基)-1-羟基-3-(N1-胸腺基) - 用乙二醇的反应反应,优先根据反应条件形成消除或取代产物。在Yb(OTF)(3)的存在下,消除产品是主要的产品;在没有Yb(OTF)(3)的情况下,替代反应产物占上风。因此,获得了六种荧光核基础衍生物。三种蒽 - 胸腺嘧啶衍生物(2,3和4)显示出在环境温度下在溶液中的发射量子产生的强荧光,其溶液中的65%至约100%。由于羰基取代基和硫脲的硫原子,蒽 - 胸腺嘧啶1和两种蒽 - 术的发射是较弱的。分别在24小时和5h治疗时间进行的人癌Hela细胞上的抗增殖活性的试验,揭示了后一间隔的可检测毒性。因此,在5小时孵育时间,在HeLa细胞上进行共聚焦显微镜成像研究。所有六种研究的化合物都发现在细胞内部,尽管来自内部的化合物的发光的强度是不同的。一般遵循相同的染色图案,所有化合物局部在细胞质隔室的脂质膜中局部局部。此外,还在细胞核中检测到化合物3和6。值得注意的是,观察到成像研究中的时间截图的光菌毒性或光漂白的迹象。新的荧光核基础衍生物代表了未来优选更优选更具选择性发光探针的有吸引力的领先结构。

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