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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Mitochondria-targeting indolizino[3,2-c]quinolines as novel class of photosensitizers for photodynamic anticancer activity
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Mitochondria-targeting indolizino[3,2-c]quinolines as novel class of photosensitizers for photodynamic anticancer activity

机译:线粒体 - 靶向Indolizino [3,2-C]喹啉作为光动力学抗癌活动的新型光敏剂

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To achieve efficient photodynamic activity, substantial effort has been dedicated to precise control of the intracellular localization of current photosensitizers (PSs). Given the extremely small radius of action of singlet oxygen, the direct targeting of PSs to the mitochondria is expected to greatly enhance the photodynamic therapy (PDT) activity. Here, we report mitochondria-targeting 6-(furan-2-y1)- and 6-(thiophen-2-yl) indolizino[3,2-c]quinolines (IQs) as novel PSs. IQ derivatives containing 5-membered heterocyclic aromatic rings were synthesized, and their photophysical properties as PSs were characterized. The anticancer potentials of 2a-2f were investigated using various cancer cell lines, and they exhibited dose-dependent and light exposure time-dependent cytotoxicity. Among the synthesized compounds, 2b, which contains a furan ring, showed dual functions as an imaging probe as well as a PS. Real-time confocal fluorescence images revealed the mitochondrial localization of 2b as a primary site of photodamage in live cells. Targeted reactive oxygen species (ROS)-generation capabilities and the photoinduced DNA cleavage of IQs led to mitochondrial dysfunction and photoinduced apoptosis via the intrinsic pathway. 3D RI tomograms of individual live HeLa cells treated with 2b showed that the progress of photoinduced apoptosis was affected by the PS concentration and light irradiation time. The studied IQs (2b, 2d, and 2e) are expected to serve as a new class of heavy-atom-free PSs with low molecular weights less than 350. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:为了实现高效的光动力活动,致力于精确控制当前光敏剂(PSS)的细胞内定位。鉴于单线氧的极小作用半径,预计PSS对线粒体的直接靶向将大大提高光动力治疗(PDT)活性。在这里,我们向靶向线粒体靶向6-(呋喃-2-Y1) - 和6-(噻吩-2-基)Indolizino [3,2-C]喹啉(IQS)作为新型PSS。合成了含有5-元杂环芳环的IQ衍生物,其表征作为PSS的光药性。使用各种癌细胞系研究了2A-2F的抗癌电位,它们表现出剂量依赖性和曝光时间依赖性细胞毒性。在含有呋喃环的合成化合物中,2b显示作为成像探针以及PS的双函数。实时共聚焦荧光图像显示出2B的线粒体定位,作为活细胞中光电模的主要部位。靶向反应性氧(ROS) - 生成能力和IQS的光诱导的DNA裂解导致通过本征途径的线粒体功能障碍和光突出细胞凋亡。 3D用2B处理的个体活HeLa细胞的3D RI断层图像显示,光诱导的细胞凋亡的进展受到PS浓度和光照射时间的影响。预计研究的IQS(2B,2D和2E)将作为新一类重型的无原子PSS,低分子量小于350.(c)2018年Elsevier Masson SAS。版权所有。

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