Deraeve Céline, Boldron Christophe, Maraval Alexandrine, Mazarguil Honoré, Gornitzka Heinz, Vendier Laure, Pitié Marguerite, Meunier Bernard
Laboratoire de Chimie de Coordination du CNRS, 205 route de Narbonne, 31077 Toulouse cedex 4, France.
Chemistry. 2008;14(2):682-96. doi: 10.1002/chem.200701024.
Fourteen different ligands have been synthesized with two covalently linked 8-hydroxyquinoline motifs that favor metal complexation. These bis-chelators include different bridges at the C2 positions and different substituents to modulate their physicochemical properties. They can form metal complexes in a ratio of one ligand per metal ion with Cu II and Zn II, two metal ions involved in the formation of amyloid aggregates of the toxic Abeta-peptides in the Alzheimer disease. The apparent affinity of all bis-8-hydroxyquinoline ligands for Cu II and Zn II are similar with logK Cu II approximately 16 and logK Zn II approximately 13 and are 10,000 times more efficient than for the corresponding 8-hydroxyquinoline monomers. Their strong chelating capacities allow them to inhibit more efficiently than the corresponding monomers the precipitation of Abeta-peptides induced by Cu II and Zn II and also to inhibit the toxic formation of H2O2 due to copper complexes of Abeta. The best results were obtained with a one-atom linker between the two quinoline units. X-ray analyses of single-crystals of Cu II, Zn II or Ni II complexes of 2,2'-(2,2-propanediyl)-bis(8-hydroxyquinoline), including a one-atom linker, showed that all heteroatoms of the bis-8-hydroxyquinoline ligand chelate the same metal ion in a distorted square-planar geometry. The Cu II and Zn II complexes include a fifth axial ligand and are pentacoordinated.
已经合成了十四种不同的配体,它们具有两个共价连接的有利于金属络合的8-羟基喹啉基序。这些双螯合剂在C2位置包括不同的桥连基团和不同的取代基,以调节它们的物理化学性质。它们可以与铜离子(Cu II)和锌离子(Zn II)以每个金属离子一个配体的比例形成金属络合物,这两种金属离子参与了阿尔茨海默病中有毒β-淀粉样肽淀粉样聚集体的形成。所有双8-羟基喹啉配体对Cu II和Zn II的表观亲和力相似,logK Cu II约为16,logK Zn II约为13,并且比相应的8-羟基喹啉单体效率高10,000倍。它们强大的螯合能力使它们比相应的单体更有效地抑制由Cu II和Zn II诱导的β-淀粉样肽沉淀,并且还抑制由于β-淀粉样肽的铜络合物导致的H2O2的毒性形成。在两个喹啉单元之间使用单原子连接基时获得了最佳结果。对2,2'-(2,2-丙二基)-双(8-羟基喹啉)的Cu II、Zn II或Ni II络合物的单晶进行X射线分析,包括一个单原子连接基,结果表明双8-羟基喹啉配体的所有杂原子以扭曲的平面正方形几何结构螯合同一个金属离子。Cu II和Zn II络合物包括一个第五轴向配体并且是五配位的。