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布帕喹酮作为新型强效抗疟药的过渡金属配合物。1. 合成、X射线晶体结构、电化学及对恶性疟原虫的抗疟活性

Transition metal complexes of buparvaquone as potent new antimalarial agents. 1. Synthesis, X-ray crystal-structures, electrochemistry and antimalarial activity against Plasmodium falciparum.

作者信息

Gokhale Nikhil H, Padhye Subhash B, Croft Simon L, Kendrick Howard D, Davies Wendy, Anson Christopher E, Powell Annie K

机构信息

Department of Chemistry, University of Pune, Ganeshkind Road, Pune 411007, India.

出版信息

J Inorg Biochem. 2003 Jul 1;95(4):249-58. doi: 10.1016/s0162-0134(03)00134-x.

Abstract

New Cu(II), Ni(II), Co(II), Fe(II), and Mn(II) metal complexes of buparvaquone [3-trans(4-tert.-butylcyclohexyl)methyl-2-hydroxy-1,4-naphthoquione] (L1H) have been synthesized and characterized using IR, electron paramagnetic resonance (EPR) spectroscopy, microanalytical methods and single crystal X-ray diffraction methods. The single crystal structures were determined for ligand L1H [space group P-1 with a=6.2072(14) A, b=10.379 (2) A, c=13.840 (3) A, V=878.7(3) A(3), Z=2, D(calcd.)=1.234 mg/m(3)] and copper complex [Cu(L1)(2)(C(2)H(5)OH)(2)] C1 [space group I2/a with a=17.149(14) A, b=9.4492(8) A, c=26.946(3) A, V=4335.3(7)A(3), Z=4, D(calcd.)=1.233 mg/m(3)]. All the metal complexes along with the parent ligand have been studied for their electrochemical properties using cyclic voltammetric techniques. The compounds were tested for their in vitro antimalarial activity against Plasmodium falciparum strains. A correlation between the antimalarial activity and the redox property of these complexes is presented. The copper complex C1 exhibits significantly higher growth inhibitory activity both in vitro and in vivo than the parent ligand.

摘要

已合成了丁萘醌3 - 反式(4 - 叔丁基环己基)甲基 - 2 - 羟基 - 1,4 - 萘醌的新型铜(II)、镍(II)、钴(II)、铁(II)和锰(II)金属配合物,并通过红外光谱、电子顺磁共振(EPR)光谱、微量分析方法和单晶X射线衍射方法对其进行了表征。测定了配体L1H[空间群P - 1,a = 6.2072(14) Å,b = 10.379(2) Å,c = 13.840(3) Å,V = 878.7(3) ų,Z = 2,D(计算值)= 1.234 mg/m³]和铜配合物[Cu(L1)₂(C₂H₅OH)₂] C1[空间群I2/a,a = 17.149(14) Å,b = 9.4492(8) Å,c = 26.946(3) Å,V = 4335.3(7) ų,Z = 4,D(计算值)= 1.233 mg/m³]的单晶结构。使用循环伏安技术研究了所有金属配合物及其母体配体的电化学性质。测试了这些化合物对恶性疟原虫菌株的体外抗疟活性。给出了这些配合物的抗疟活性与氧化还原性质之间的相关性。铜配合物C1在体外和体内均表现出比母体配体显著更高的生长抑制活性。

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