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首页> 外文期刊>Dyes and Pigments >Bichromophoric anticancer drug: Targeting lysosome with rhodamine modified cyclometalated Iridium(III) complexes
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Bichromophoric anticancer drug: Targeting lysosome with rhodamine modified cyclometalated Iridium(III) complexes

机译:BichroRomophoric抗癌药物:用罗丹明改性的环荷丙酮化铱(III)配合物靶向溶酶体

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Four bichromophoric cyclometalated iridium complexes were synthesized and fully characterized. Their anti proliferative capacity against A549, HepG2 cells and HeLa cells as well as two human normal cells was studied by MTT assay. Rhodamine B modified complexes 2 and 4 were not cytotoxic to A549 cells while both rhodamine 6 g modified complexes 1 and 3 showed greater cytotoxicity than cisplatin. In particular, the antiproliferative activity of complex 3 was about 4.6 times than that of cisplatin. Thus, complex 3 was used for stability and pH sensitivity studies. The results indicated that the complex not only had rich fluorescence properties under acidic conditions, but also showed good stability. Further, interaction of complex with bovine serum albumin (BSA) has been investigated by UV-vis, fluorescence, synchronous fluorescence spectroscopy. The complexes have a certain ability to bind the BSA. Interestingly, these complexes can catalyze the reaction of the coenzyme NADH to NAD(+), which is consistent with the apparent growth of ROS in cells. In addition, complex 3 can cause S phase arrest in the cell cycle, induce apoptosis, and affect mitochondria] membrane potential changes. Localization experiments of intracellular complexes by confocal microscopy suggested that these complexes enter cancer cells through energy dependence and specifically target the lysosomes, thus resulting in the damage of lysosomes.
机译:合成四种BichroRomophoric环状铱配合物并完全表征。通过MTT测定研究了对A549,HepG2细胞和HeLa细胞的抗增殖能力以及两个人正常细胞。 Rhodamine B改性复合物2和4不是细胞毒性至A549细胞,而罗丹明6g改性复合物1和3显示出比顺铂更大的细胞毒性。特别地,复合物3的抗增殖活性比顺铂的抗增殖活性约为4.6倍。因此,复合物3用于稳定性和pH敏感性研究。结果表明,该复合体不仅在酸性条件下具有丰富的荧光性能,而且表现出良好的稳定性。此外,通过UV-VI,荧光,同步荧光光谱研究了复合物与牛血清白蛋白(BSA)的相互作用。复合物具有结合BSA的一定能力。有趣的是,这些配合物可以催化辅酶NADH至NAD(+)的反应,这与细胞中ROS的表观生长一致。此外,复合物3可以在细胞周期中引起S期阻滞,诱导细胞凋亡,影响线粒体膜电位变化。共聚焦显微镜的细胞内复合物的本地化实验表明这些复合物通过能量依赖性进入癌细胞,并且特异性靶向溶酶体,从而导致溶酶体的损伤。

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