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Synthesis, characterization and electrochemistry studies of iron(III) complex with curcumin ligand

机译:铁(III)络合物与姜黄素配体的合成,表征和电化学研究

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Summary Iron overload is a serious clinical condition for humans and is a key target in drug development. The aim of this study was to investigate the coordination of iron(III) ions with curcumin ligand that may be used in the treatment of iron overload. Iron(III) complex of curcumin was synthesized and structurally characterized in its solid and solution state by FT‐IR, UV‐Vis, elemental analysis, and magnetic susceptibility. Electrochemical behaviour of the ligand and the complexes were examined using cyclic voltammetry. The cytotoxic activities of the ligand and the iron(III) complex were evaluated by the MTT assay. Curcumin reacted with iron in high concentrations at physiological pH at room temperature. Subsequently, a brown‐red complex was formed. Data regarding magnetic susceptibility showed that the complexes with a 1:2 (metal/ligand) mole ratio had octahedral geometry. The complex showed higher anti‐oxidant effect towards the cell line ECV304 at IC 50 values of 4.83 compared to curcumin. The complex exhibited very high cytotoxic activity and showed a cytotoxic effect that was much better than that of the ligand. The potentials for redox were calculated as 0.180?V and 0.350?V, respectively. The electrochemistry studies showed that Fe 3+ /Fe 2+ couple redox process occurred at low potentials. This value was within the range of compounds that are expected to show superoxide dismutase activity. This finding indicates that the iron complex is capable of removing free radicals. The observed cytotoxicity could be pursued to obtain a potential drug. Further studies investigating the use of curcumin for this purpose are needed.
机译:总结铁过载是人类的严重临床条件,是药物开发的关键目标。本研究的目的是研究铁(III)离子与姜黄素配体的配位,该姜黄素配体可用于铁过载的处理。通过FT-IR,UV-Vis,元素分析和磁化率合成和在其固体和溶液状态下合成姜黄素的铁(III)复合物。使用循环伏安法检测配体和配合物的电化学行为。通过MTT测定评估配体和铁(III)复合物的细胞毒性活性。姜黄素在室温下以生理pH的高浓度与铁反应。随后,形成棕红色复合物。关于磁化率的数据表明,具有1:2(金属/配体)摩尔比的复合物具有八面体几何形状。与姜黄素相比,该综合体向IC 50值朝向细胞系ECV304的抗氧化效果较高。该综合体表现出非常高的细胞毒性活性,并且显示出细胞毒性效果,其比配体好得多。氧化还原的电位分别计算为0.180?V和0.350?v。电化学研究表明,在低电位下发生Fe 3+ / Fe 2+耦合氧化还原过程。该值在预期显示超氧化物歧化酶活性的化合物范围内。该发现表明铁络合物能够去除自由基。可以追求观察到的细胞毒性以获得潜在的药物。需要进一步研究来为此目的使用姜黄素。

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