首页> 外文期刊>iranian journal of basic medical sciences >Elucidation of the interaction of apocarotenoids with calf thymus DNA by biophysical techniques and in vitro study in MCF-7 cells to explore their potential in cancer therapy
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Elucidation of the interaction of apocarotenoids with calf thymus DNA by biophysical techniques and in vitro study in MCF-7 cells to explore their potential in cancer therapy

机译:通过生物物理技术和 MCF-7 细胞中的体外研究阐明阿泊胡萝卜素与小牛胸腺 DNA 的相互作用,以探索其在癌症治疗中的潜力

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Objective(s): DNA is one of the targets of cancer-therapeutic small molecules. Cisplatin, a DNA intercalator, is one of the first-line drugs in the cancer chemo regimen which comes with health -compromising side effects during chemotherapy. The synergistic effect of natural molecules with cisplatin can help to potentiate its anti-cancer efficacy and decrease its negative effect on health. Here, we report the interaction of cisplatin with calf thymus-DNA (ct-DNA) in combination with natural molecules like apocarotenoids which are reported for their therapeutic properties. Materials and Methods: The combinatorial effect of apocarotenoids on ct-DNA was explored through various biophysical techniques such as UV-Visible spectroscopy, circular dichroism studies, DNA melt curve analysis, viscosity measurements, and an in vitro study in MCF-7 cells by cell cycle analysis.Results: UV-Visible spectroscopy studies suggest apocarotenoids and their combination shows a non-intercalative mode of binding. Circular dichroism analysis showed no major changes in DNA form during the interaction of DNA with apocarotenoids and their respective combinations with cisplatin, which is suggestive of the groove-binding mode of apocarotenoids. DNA melt curve analysis showed a decrease in the intensity of the fluorescence for apocarotenoids with cisplatin which indicates the possibility of DNA interaction through groove binding. Viscosity studies suggested a groove binding mode of interaction of ct-DNA with apocarotenoids and their combination as there was minimal change in the viscosity measurements. The in vitro analysis exhibits that the apocarotenoids and their combination have a considerable effect on DNA synthesis.Conclusion: This study provides a better perspective on the possible mode of interaction between ct-DNA and natural molecules along with cisplatin.
机译:目的:DNA是癌症治疗小分子的靶标之一。顺铂是一种 DNA 插层剂,是癌症化疗方案中的一线药物之一,在化疗期间会产生损害健康的副作用。天然分子与顺铂的协同作用有助于增强其抗癌功效并减少其对健康的负面影响。在这里,我们报告了顺铂与小牛胸腺DNA(ct-DNA)与天然分子(如脱胡萝卜素)的相互作用,这些分子因其治疗特性而被报道。材料与方法:通过紫外-可见光谱、圆二色性研究、DNA熔融曲线分析、粘度测量等多种生物物理技术,探索了类胡萝卜素对ct-DNA的组合效应,并通过细胞周期分析对MCF-7细胞进行体外研究。结果:紫外-可见光谱研究表明,阿泊胡萝卜素及其组合显示出非插层结合模式。圆二色性分析显示,在DNA与阿茉类胡萝卜素的相互作用及其与顺铂的结合过程中,DNA形态没有发生重大变化,这表明阿茉类胡萝卜素的沟槽结合模式。DNA熔融曲线分析显示,脱节胡萝卜素与顺铂的荧光强度降低,这表明DNA可能通过沟槽结合相互作用。粘度研究表明,由于粘度测量的变化很小,ct-DNA与阿泊胡萝卜素及其组合的相互作用存在凹槽结合模式。体外分析表明,类胡萝卜素及其组合对DNA合成有相当大的影响。结论:本研究为ct-DNA与天然分子与顺铂的可能相互作用模式提供了更好的视角。

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