Kaya Yeliz, Erçağ Ayşe, Kaya Savaş, Berisha Avni, Akkaya Birnur, Zorlu Yunus
Faculty of Engineering, Department of Chemistry, Inorganic Chemistry Division, Istanbul University-Cerrahpaşa, 34320, Avcılar, Istanbul, Turkey.
Faculty of Science, Department of Chemistry, Sivas Cumhuriyet University, 58140, Sivas, Turkey.
Biometals. 2024 Dec;37(6):1657-1675. doi: 10.1007/s10534-024-00633-x. Epub 2024 Sep 6.
New solvated Mo(VI) complexes were isolated from the reaction of [MoO(acac)] with asymmetric isatin bisthiocarbohydrazone ligands. The ligands were obtained from the reaction of isatin monothiocarbohydrazone with 3,5-dibromo salicylaldehyde (L1), 3,5-dichloro salicylaldehyde (L2) and 3-chloro-5-bromo salicylaldehyde (L3), respectively. In the complexes, the ligands serve as ONS donors and coordinate to the [MoO] nucleus. The bonding sites are azomethine nitrogen atom, phenolic oxygen atom and thiol sulfur atom. The sixth coordination site is completed by an oxygen atom from an ethanol solvent. The ethanol-coordinated Mo(VI) complexes, C1-C3, [MoOL(EtOH)] (L: L1-L3), were characterized using elemental analysis, IR and H NMR spectroscopies, and conductivity measurements. By crystallizing ethanol-solvated solid complexes from an EtOH/DMSO mixture, DMSO-solvated complexes (C4-C6) suitable for X-ray crystallography were obtained. Crystal structure analysis supports the proposed complex structures and geometries, but the ethanol in the sixth coordination site has been replaced by DMSO. When the anticarcinogenic effects of the ligands and complexes (C1-C3) on the C6 cell line were examined, it was found that the complexes showed higher activity than the ligands. The C3 complex appears to have the best anti-cancer activity compared to doxorubicin. Additionally, all compounds were determined to have high total antioxidant capacity. Data obtained from theoretical studies (DFT and docking) support experimental studies.
从[MoO(acac)]与不对称异吲哚啉双硫代碳酰腙配体的反应中分离出了新的溶剂化钼(VI)配合物。这些配体分别由异吲哚啉单硫代碳酰腙与3,5 - 二溴水杨醛(L1)、3,5 - 二氯水杨醛(L2)和3 - 氯 - 5 - 溴水杨醛(L3)反应制得。在这些配合物中,配体作为ONS供体并与[MoO]核配位。键合位点为偶氮甲碱氮原子、酚氧原子和硫醇硫原子。第六个配位位点由乙醇溶剂中的一个氧原子完成。通过元素分析、红外光谱和氢核磁共振光谱以及电导率测量对乙醇配位的钼(VI)配合物C1 - C3,[MoOL(EtOH)](L:L1 - L3)进行了表征。通过从乙醇/二甲亚砜混合物中结晶出乙醇溶剂化的固体配合物,得到了适合X射线晶体学研究的二甲亚砜溶剂化配合物(C4 - C6)。晶体结构分析支持了所提出的配合物结构和几何形状,但第六个配位位点中的乙醇已被二甲亚砜取代。当研究配体和配合物(C1 - C3)对C6细胞系的抗癌作用时,发现配合物显示出比配体更高的活性。与阿霉素相比,C3配合物似乎具有最佳的抗癌活性。此外,所有化合物都被测定具有较高的总抗氧化能力。从理论研究(密度泛函理论和对接)获得的数据支持了实验研究。