Pan Lin, Wang Cunfang, Yan Kai, Zhao Kedong, Sheng Guihua, Zhu Hailiang, Zhao Xinlu, Qu Dan, Niu Fang, You Zhonglu
Department of Chemistry and Chemical Engineering, Liaoning Normal University, Dalian 116029, PR China.
School of Life Sciences, Shandong University of Technology, Zibo 255049, PR China.
J Inorg Biochem. 2016 Jun;159:22-8. doi: 10.1016/j.jinorgbio.2016.02.017. Epub 2016 Feb 12.
A series of new copper(II) complexes were prepared. They are [CuL(1)(NCS)] (1), [CuClL(1)]·CH3OH (2), [CuClL(2)]·CH3OH (3), [CuL(3)(NCS)]·CH3OH (4), [CuL(4)(NCS)]·0.4H2O (5), and [CuL(5)(bipy)] (6), where L(1), L(2), L(3) and L(4) are the deprotonated form of N'-(2-hydroxybenzylidene)-3-methylbenzohydrazide, 4-bromo-N'-(2-hydroxy-5-methoxybenzylidene)benzohydrazide, N'-(2-hydroxy-5-methoxybenzylidene)-3-methylbenzohydrazide and 2-chloro-N'-(2-hydroxy-5-methoxybenzylidene)benzohydrazide, respectively, L(5) is the dianionic form of N'-(2-hydroxybenzylidene)-3-methylbenzohydrazide, and bipy is 2,2'-bipyridine. The complexes were characterized by infrared and UV-Vis spectra and single crystal X-ray diffraction. The Cu atoms in complexes 1, 2, 3, 4 and 5 are coordinated by the NOO donor set of the aroylhydrazone ligands, and one Cl or thiocyanate N atom, forming square planar coordination. The Cu atom in complex 6 is in a square pyramidal coordination, with the NOO donor set of L(1), and one N atom of bipy defining the basal plane, and with the other N atom of bipy occupying the apical position. Complexes 1, 2, 3, 4 and 5 show effective urease inhibitory activities, with IC50 values of 5.14, 0.20, 4.06, 5.52 and 0.26μM, respectively. Complex 6 has very weak activity against urease, with IC50 value over 100μM. Molecular docking study of the complexes with the Helicobacter pylori urease was performed. The relationship between structures and urease inhibitory activities indicated that copper complexes with square planar coordination are better models for urease inhibition.
制备了一系列新型铜(II)配合物。它们分别是[CuL(1)(NCS)](1)、[CuClL(1)]·CH3OH(2)、[CuClL(2)]·CH3OH(3)、[CuL(3)(NCS)]·CH3OH(4)、[CuL(4)(NCS)]·0.4H2O(5)和[CuL(5)(bipy)](6),其中L(1)、L(2)、L(3)和L(4)分别是N'-(2-羟基苄叉基)-3-甲基苯甲酰肼、4-溴-N'-(2-羟基-5-甲氧基苄叉基)苯甲酰肼、N'-(2-羟基-5-甲氧基苄叉基)-3-甲基苯甲酰肼和2-氯-N'-(2-羟基-5-甲氧基苄叉基)苯甲酰肼的去质子化形式,L(5)是N'-(2-羟基苄叉基)-3-甲基苯甲酰肼的二价阴离子形式,bipy是2,2'-联吡啶。通过红外光谱、紫外可见光谱和单晶X射线衍射对这些配合物进行了表征。配合物1、2、3、4和5中的铜原子由芳酰腙配体的NOO供体基团以及一个氯或硫氰酸根氮原子配位,形成平面正方形配位。配合物6中的铜原子处于四方锥配位,L(1)的NOO供体基团和联吡啶的一个氮原子定义了基面,联吡啶的另一个氮原子占据顶点位置。配合物1、2、3、4和5表现出有效的脲酶抑制活性,IC50值分别为5.14、0.20、4.06、5.52和0.26μM。配合物6对脲酶的活性非常弱,IC50值超过100μM。对这些配合物与幽门螺杆菌脲酶进行了分子对接研究。结构与脲酶抑制活性之间的关系表明,具有平面正方形配位的铜配合物是更好的脲酶抑制模型。