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Biological effect and molecular docking of anticancer palladium and platinum complexes with morpholine dithiocarbamate on human serum albumin as a blood carrier protein

机译:抗癌钯和铂复合物与血清白蛋白的抗癌钯和铂络合物作为血液载体蛋白的生物学效应及分子对接

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The aim of this study was to examine the interaction of [Pd(2,2=-bipyridine) (morpholinedithiocarbamate)] NO3 and [Pt (2,2=-bipyridine)(morpholinedithiocarbamate)] NO3 with human serum albumin under physiological conditions by using fluorescence, absorption, and circular dichroism spectroscopic techniques. Spectroscopic analysis of the emission quenching at different temperatures demonstrated that the quenching mechanism was static quenching. From the circular dichroism results, thermal stability study, it was found that the interaction of the complexes with human serum albumin caused a conformational change of the protein reversibly. These 2 anticancer Pd and Pt complexes were activated against chronic myelogenous leukemia cell line K562, so that 50% cytotoxic concentration values of 16 and 26 mu M for Pd and Pt complexes, respectively, were observed, which were much lower than that of cisplatin (154 mu M). Biological activities of both Pd and Pt complexes were also assayed against selective microorganisms by the disc diffusion method. These results showed that the Pd(II) complex is antifungal agent but Pt(II) complex has antibacterial activity. Also, the interaction of both metal derivative complexes was studied by molecular docking. Complementary molecular docking results may be useful to determine the binding mechanism of human serum albumin in pharmaceutical and biophysical studies providing new insight in the novel pharmacology.
机译:本研究的目的是检查[Pd(2,2 = -biphyridine)(吗啉丙氨酸)] NO3和[Pt(2,2 = -Biphyidine)] NO3和[Pt(2,2 = -Biphyridine)] NO3在生理条件下用人血清白蛋白进行使用荧光,吸收和圆形二色性光谱技术。在不同温度下发射猝灭的光谱分析表明淬火机制是静态淬火。从圆形二色性结果,热稳定性研究,发现复合物与人血清白蛋白的相互作用导致蛋白质可逆地变化。对慢性髓性白血病细胞系K562激活这2个抗癌Pd和Pt络合物,使得Pd和Pt络合物的50%细胞毒性浓度值分别被观察到,Pd和Pt络合物,远低于顺铂( 154亩)。通过盘扩散法测定Pd和Pt复合物的生物活性,对选择性微生物进行测定。这些结果表明,Pd(ii)复合物是抗真菌剂,但Pt(ii)复合物具有抗菌活性。而且,通过分子对接研究了金属衍生物复合物的相互作用。互补分子对接结果可用于确定人血清白蛋白在药物和生物物理研究中的结合机制,为新的药理学提供新的洞察力。

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