首页> 外文期刊>Biochemical Pharmacology >Synthesis and biological activities of bisnaphthalimido polyamines derivatives: cytotoxicity, DNA binding, DNA damage and drug localization in breast cancer MCF 7 cells.
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Synthesis and biological activities of bisnaphthalimido polyamines derivatives: cytotoxicity, DNA binding, DNA damage and drug localization in breast cancer MCF 7 cells.

机译:双萘二甲酰亚胺亚胺多胺衍生物的合成和生物学活性:乳腺癌MCF 7细胞的细胞毒性,DNA结合,DNA损伤和药物定位。

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摘要

New bisoxynaphthalimidopolyamines (BNIPOPut, BNIPOSpd and BNIPOSpm) were synthesized. Their cytotoxic properties were evaluated against breast cancer MCF 7 cells and compared with bisnaphthalimidopolyamines BNIPSpd and BNIPSpm. Among the bisoxynaphthalimido polyamines, BNIPOSpm and BNIPOSpd exhibited cytotoxic activity with an IC(50) of 29.55 and 27.22muM, respectively, while BNIPOPut failed to exert significant cytotoxicity after 48-h drug exposure. DNA binding was determined by midpoint of thermal denaturation (T(m)) measurement, ethidium bromide displacement and DNA gel mobility. Both BNIPOSpm and BNIPOSpd exhibited strong binding affinities with DNA. BNIPOPut had the least effect. The results were compared with other cytotoxic bisnaphthalimido compounds (BNIPSpm and BNIPSpd) previously reported by us. Using the single cell gel electrophoresis assay, it was found that BNIPSpm and BNIPSpd caused substantial DNA damage to MCF 7 treated cells while BNIPOSpm showed no significant effect over a range of drug concentrations after 4-h drug exposure. However, after 12-h drug exposure, BNIPOSpm had induced significant DNA damage similar to that of BNIPSpm (after 4-h drug exposure). Fluorescence microscopic analysis revealed that at 1muM drug concentration and after 6-h drug exposure, both BNIPSpm and BNIPSpd were located within the cell while the presence of BNIPOSpm, was not observed. Therefore, we conclude that BNIPSpd, BNIPSpm and BNIPOSpm induce DNA damage consistent with their rate of uptake into the cells.
机译:合成了新的双氧萘二甲亚胺多胺(BNIPOPut,BNIPOSpd和BNIPOSpm)。评估了它们对乳腺癌MCF 7细胞的细胞毒性,并将其与双萘二甲酰亚胺多胺BNIPSpd和BNIPSpm进行了比较。在双氧萘二甲酰亚胺多胺中,BNIPOSpm和BNIPOSpd表现出细胞毒活性,IC(50)分别为29.55和27.22μM,而BNIPOPut在暴露48小时后未能发挥明显的细胞毒性作用。通过热变性(T(m))测量,溴化乙锭置换和DNA凝胶迁移率的中点确定DNA结合。 BNIPOSpm和BNIPOSpd都显示出与DNA的强结合亲和力。 BNIPOPut影响最小。将结果与我们先前报道的其他细胞毒性双萘二甲酰亚胺化合物(BNIPSpm和BNIPSpd)进行了比较。使用单细胞凝胶电泳分析法,发现BNIPSpm和BNIPSpd会对经MCF 7处理的细胞造成实质性的DNA损伤,而BNIPOSpm在暴露4小时后在一系列药物浓度下均未表现出明显的作用。但是,在暴露12小时后,BNIPOSpm诱导了与BNIPSpm相似的显着DNA损伤(暴露4小时后)。荧光显微镜分析显示,在1μM的药物浓度和6h的药物暴露后,BNIPSpm和BNIPSpd均位于细胞内,而未观察到BNIPOSpm的存在。因此,我们得出的结论是,BNIPSpd,BNIPSpm和BNIPOSpm诱导的DNA损伤与其摄取进入细胞的速率一致。

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