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首页> 外文期刊>Journal of Molecular Structure >Curcumin derived Schiff base ligand and their transition metal complexes: Synthesis, spectral characterization, catalytic potential and biological activity
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Curcumin derived Schiff base ligand and their transition metal complexes: Synthesis, spectral characterization, catalytic potential and biological activity

机译:姜黄素衍生的Schiff碱配体及其过渡金属配合物:合成,光谱表征,催化潜力和生物活性

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摘要

Curcumin derived Schiff base ligand, (CL), was prepared by condensation of 1,7-bis-(4-hydroxy-3-methoxyphenyl)-1,6-heptadiene-3,5-dione (curcumin) with amino ethylene piperazine (AEP). The transition metal complexes of CL were also successfully synthesized and characterized by various spectroscopic techniques. Non-electrolytic nature of complexes was ascertained by molar conductance values. Thermogravimetric analysis confirms that all the metal complexes are stable up to 600?°C. The metal to ligand stoichiometry of synthesized metal complexes was confirmed by micro analytical data as 1:1 (metal: ligand). Co(II), Ni(II) and Zn(II) ion forms the complexes with an octahedral geometry while the geometry of Cu(II) complex can ascribed as square planar by UV–vis and EPR spectroscopic studies. Catalytic power and antioxidant activity of these complexes have been evaluated and results shows that Co(II) complex is catalytically more active while the Cu(II) and Zn(II) complex were found with more potent antioxidant activity, comparatively. The synthesized compounds have also been tested for theirin-vitrocytotoxic potential, the obtained results shows moderate to good cytotoxicity on tested human cancer cell lines. The most effective compounds on cell lines MDA-MB-231 and KCL22 was [(CL)Cu] while on HeLa cell line the [(CL)Zn(H2O)2] was found with prominent cytotoxicity. Anthelmintic activities of these compounds have been performed usingPheretima posthuma.The recorded order of anthelmintic activity of ligand (CL) and their metal complexes was found to have the trend as: [(CL)Cu]>[(CL)Zn(H2O)2]>[(CL)Co(H2O)2]>[(CL)Ni(H2O)2]>CL.
机译:通过用氨基乙烯哌嗪(4-二羟基-3-甲氧基苯基)-1,6-庚二烯-3,5-二酮(姜黄素)缩合来制备姜黄素衍生的席夫碱配体(CL)。 AEP)。 CL的过渡金属配合物也通过各种光谱技术成功地合成并表征。通过摩尔电导值确定复合物的非电解性质。热重分析证实,所有金属配合物均稳定高达600Ω°C。通过微分析数据证实了合成的金属配合物的金属与合成金属配合物的化学计量为1:1(金属:配体)。 CO(II),Ni(II)和Zn(II)离子与八面体几何形状形成复合物,而Cu(II)复合物的几何形状可以通过UV-Vis和EPR光谱研究作为方形平面赋予。已经评估了这些配合物的催化力和抗氧化剂活性,结果表明CO(II)复合物在催化更活跃,同时发现Cu(II)和Zn(II)复合物,相对较高的抗氧化活性。还已经测试了合成的化合物的素 - 挥菌菌毒性潜力,所得结果表明在测试的人类癌细胞系上适度至良好的细胞毒性。细胞系MDA-MB-231和KCl 2 2上的最有效化合物是[(Cl)Cu],而在Hela细胞系上,以突出的细胞毒性发现[(Cl)Zn(H2O)2]。已经使用pheretima posthuma进行了这些化合物的植物的活性。发现配体(Cl)和金属配合物的令人记录的顺序活性的顺序具有:[(Cl)Cu]> [(Cl)Zn(H2O)2 ]> [(Cl)CO(H2O)2]> [(CL)Ni(H 2 O)2]> CL。

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