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Rare-Earth Metal Complexes of the Antibacterial Drug Oxolinic Acid: Synthesis Characterization DNA/Protein Binding and Cytotoxicity Studies

机译:抗菌药物的稀土金属络合物草洛碱:合成表征DNA /蛋白结合和细胞毒性研究

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摘要

“Drug repositioning” is a current trend which proved useful in the search for new applications for existing, failed, no longer in use or abandoned drugs, particularly when addressing issues such as bacterial or cancer cells resistance to current therapeutic approaches. In this context, six new complexes of the first-generation quinolone oxolinic acid with rare-earth metal cations (Y3+, La3+, Sm3+, Eu3+, Gd3+, Tb3+) have been synthesized and characterized. The experimental data suggest that the quinolone acts as a bidentate ligand, binding to the metal ion via the keto and carboxylate oxygen atoms; these findings are supported by DFT (density functional theory) calculations for the Sm3+ complex. The cytotoxic activity of the complexes, as well as the ligand, has been studied on MDA-MB 231 (human breast adenocarcinoma), LoVo (human colon adenocarcinoma) and HUVEC (normal human umbilical vein endothelial cells) cell lines. UV-Vis spectroscopy and competitive binding studies show that the complexes display binding affinities (Kb) towards double stranded DNA in the range of 9.33 × 104 − 10.72 × 105. Major and minor groove-binding most likely play a significant role in the interactions of the complexes with DNA. Moreover, the complexes bind human serum albumin more avidly than apo-transferrin.
机译:“药物重新定位”是一种目前趋势,证明在寻找现有,失败,不再使用或废弃药物的新应用,特别是在解决细菌或癌细胞对当前治疗方法的抵抗力时。在本文中,已经合成并表征了具有稀土金属阳离子(Y3 +,La3 +,Sm 3 +,Eu3 +,Gd3 +,Tb3 +的六种新的喹啉草胆酸的六种新络合物。实验数据表明,喹诺酮作为二齿配体,通过酮和羧酸氧原子与金属离子结合;这些发现由SM3 +复合物的DFT(密度函数理论)计算支持。已经研究了在MDA-MB 231(人乳腺腺癌),LOVO(人结肠腺癌)和HUVEC(正常人脐静脉内皮细胞)细胞系上进行了络合物和配体的细胞毒性活性。 UV-Vis光谱和竞争性结合研究表明,复合物在9.33×104-10-72×105的范围内显示朝向双链DNA的结合亲和力(KB)。主要和较小的沟槽结合最有可能在相互作用中发挥重要作用与DNA的复合物。此外,该配合物比apo-Transferrin更常见地结合人血清白蛋白。

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