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Synthesis Structure Electrochemistry and Spectral Characterization of Bis-Isatin Thiocarbohydrazone Metal Complexes and Their Antitumor Activity Against Ehrlich Ascites Carcinoma in Swiss Albino Mice

机译:Bis-Isatin硫代碳hydr金属配合物的合成结构电化学和光谱表征及其对瑞士白化病小鼠的腹水性腹水癌的抗肿瘤活性

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摘要

The synthesis, structure, electrochemistry, and biological studies of Co(II), Ni(II), Cu(II), and Zn(II) complexes of thiocarbohydrazone ligand are described. The ligand is synthesized starting from thiocarbohydrazide and isatin. It is evident from the IR data that in all the complexes, only one part of the ligand is coordinated to the metal ion resulting mononuclear complexes. The ligand coordinates essentially through the carbonyl oxygen of the isatin fragment, the nitrogen atom of the azomethine group, and sulfur atom after deprotonation to give five membered rings. H1 NMR spectrum of the ligand shows only one set of signals for the aromatic protons, while the NH of isatin and NH of hydrazone give rise to two different singlets in the 11–14 ppm range. The formulations, [Cu(L)Cl] · 2H2O, [Cu(L)(CH3COO)] · 2H2O, [Ni(L)Cl], [Ni(L)(CH3COO)], [Co(L2)], and [Zn(L2)] · 2H2O are in accordance with elemental analyses, physical, and spectroscopic measurements. The complexes are soluble in organic solvents. Molar conductance values in DMF indicate the nonelectrolytic nature of the complexes. Copper complex displays quasireversible cyclic voltametric responses with Ep near −0.659 v and 0.504 v Vs Ag/AgCl at the scan rate of 0.1 V/s. Copper(II) complexes show a single line EPR signals. For the observed magnetic moment and electronic spectral data possible explanation has been discussed. From all the available data, the probable structures for the complexes have been proposed. The compounds synthesized in present study have shown promising cytotoxic activity when screened using the in vitro method and at the same time were shown to have good activity when tested using the Ehrlich ascites carcinoma (EAC) model. The antimicrobial screening showed that the cobalt complex possesses enhanced antimicrobial activity towards fungi.
机译:描述了硫代碳zone配体的Co(II),Ni(II),Cu(II)和Zn(II)配合物的合成,结构,电化学和生物学研究。该配体是从硫代碳酰肼和靛红开始合成的。从IR数据可以看出,在所有配合物中,只有一部分配体与金属离子配位形成单核配合物。脱质子化后,配体基本上通过Isatin片段的羰基氧,偶氮甲碱基团的氮原子和硫原子配位,得到5元环。 H 1 配体的NMR谱图仅显示了一组芳香族质子信号,而靛红的NH和的NH在11-14 ppm范围内产生两个不同的单峰。 [Cu(L)Cl]·2H2O,[Cu(L)(CH3COO)]·2H2O,[Ni(L)Cl],[Ni(L)(CH3COO)],[Co(L2)], [Zn(L2)]·2H2O符合元素分析,物理和光谱测量。该配合物可溶于有机溶剂。 DMF中的摩尔电导率值表示配合物的非电解性质。铜络合物显示准可逆的循环伏安响应,在0.1 V / s的扫描速率下,Ep接近-0.659 v和0.504 v Vs Ag / AgCl。铜(II)配合物显示单线EPR信号。对于观察到的磁矩和电子光谱数据,已经讨论了可能的解释。从所有可用数据中,已经提出了复合物的可能结构。当使用体外方法筛选时,本研究中合成的化合物已显示出令人鼓舞的细胞毒性活性,同时使用艾氏腹水癌(EAC)模型进行测试时,它们也显示出良好的活性。抗菌筛选表明钴复合物对真菌具有增强的抗菌活性。

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