Laboratory of Inorganic Chemistry, Department of General and Inorganic Chemistry, Faculty of Chemistry, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece.
J Inorg Biochem. 2013 Nov;128:85-96. doi: 10.1016/j.jinorgbio.2013.07.013. Epub 2013 Jul 15.
Zinc(II) complexes of a non-steroidal anti-inflammatory drug, mefenamic acid(=Hmef) in the absence or presence of the nitrogen donor heterocyclic ligands 2,2'-bipyridine(=bipy), 2,2'-bipyridylamine(=bipyam), 2,2'-dipyridylketone oxime(=Hpko) or 1,10-phenanthroline(=phen) have been synthesized and characterized. The crystal structures of [Zn(mef-O,O')2(bipy)], 2, [Zn(mef-O)2(Hpko-N,N')2]·EtOH, 4 and [Zn(mef-O)(mef-O,O')(phen)(H2O)], 5, have been determined by X-ray crystallography showing distinct binding modes of mefenamato carboxylato group, bidentate in 2, monodentate in 4 or both in 5. Interaction studies of the complexes with calf-thymus DNA (CT DNA) have shown that complexes can bind to CT DNA with [Zn(mef-O)2(Hpko)2] exhibiting the highest binding constant to CT DNA (Kb = 1.93(±0.04) × 10(7) M(-1)). The complexes can bind to CT DNA via intercalation as concluded by DNA solution viscosity measurements. Competitive studies with ethidium bromide (EB) have shown that the complexes can displace the DNA-bound EB. The complexes exhibit good binding affinity to serum albumin proteins with [Zn(mef-O)2(H2O)4], 1 exhibiting the highest quenching ability (kq = 1.46 × 10(15) M(-1) s(-1) for human and 5.55 × 10(15) M(-1) s(-1) for bovine serum albumin). All compounds have been tested for their antioxidant and free radical scavenging activity as well as for their in vitro inhibitory activity against soybean lipoxygenase. The scavenging activity is low to moderate against 1,1-diphenyl-picrylhydrazyl (DPPH) radicals and high against hydroxyl and 2,2'-azinobis-(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS(+·)) radicals, with [Zn(mef-O)2(H2O)4], 1 (ABTS%, 0.1 mM: 94.75(±1.06)%; (·)OH%, 0.1mM: 96.69(±0.27)%; LOX: IC50 = 27.34(±0.90) μM) exhibiting the highest scavenging activity of the ABTS radical cation among the complexes. Additionally, the complexes exhibit higher scavenging and LOX inhibitory activity than free mefenamic acid (ABTS%, 0.1 mM: 66.32(±0.38)%; (·)OH%, 0.1 mM: 92.51(±0.44)%; LOX: IC50 = 48.52(±0.88) μM).
非甾体抗炎药甲芬那酸(=Hmef)与氮供杂环配体 2,2'-联吡啶(=bipy)、2,2'-联吡啶胺(=bipyam)、2,2'-二吡啶酮肟(=Hpko)或 1,10-菲咯啉(=phen)的锌(II)配合物已被合成和表征。[Zn(mef-O,O')2(bipy)]、2、[Zn(mef-O)2(Hpko-N,N')2]·EtOH、4 和 [Zn(mef-O)(mef-O,O')(phen)(H2O)]、5 的晶体结构通过 X 射线晶体学确定,显示出甲芬那酸羧基的不同结合模式,在 2 中为双齿配位,在 4 中为单齿配位或在 5 中为两者配位。配合物与小牛胸腺 DNA(CT DNA)的相互作用研究表明,配合物可以与 CT DNA 结合,[Zn(mef-O)2(Hpko)2]对 CT DNA 的结合常数最高(Kb = 1.93(±0.04) × 10(7) M(-1))。通过 DNA 溶液粘度测量得出,配合物可以通过嵌入与 CT DNA 结合。与溴化乙锭(EB)的竞争研究表明,配合物可以置换 DNA 结合的 EB。配合物与血清白蛋白蛋白具有良好的结合亲和力,[Zn(mef-O)2(H2O)4]、1 表现出最高的猝灭能力(kq = 1.46 × 10(15) M(-1) s(-1)用于人血清白蛋白和 5.55 × 10(15) M(-1) s(-1)用于牛血清白蛋白)。所有化合物均已测试其抗氧化和自由基清除活性以及对大豆脂氧合酶的体外抑制活性。对 1,1-二苯基-2-苦基肼基(DPPH)自由基的清除活性为低至中等,对羟基和 2,2'-偶氮双(3-乙基苯并噻唑啉-6-磺酸)(ABTS(+·))自由基的清除活性较高,其中 [Zn(mef-O)2(H2O)4]、1(ABTS%,0.1 mM:94.75(±1.06)%;(·)OH%,0.1 mM:96.69(±0.27)%;LOX:IC50 = 27.34(±0.90) μM)在配合物中对 ABTS 自由基阳离子的清除活性最高。此外,与游离甲芬那酸相比,配合物具有更高的清除和 LOX 抑制活性(ABTS%,0.1 mM:66.32(±0.38)%;(·)OH%,0.1 mM:92.51(±0.44)%;LOX:IC50 = 48.52(±0.88) μM)。