Section of Inorganic and Analytical Chemistry, Department of Chemistry, University of Ioannina, 45110 Ioannina, Greece.
Inorg Chem. 2010 Jan 18;49(2):488-501. doi: 10.1021/ic901442e.
Eight new antimony(III) iodide complexes of the heterocyclic thioamides, 2-mercapto-1-methylimidazole (MMI), 2-mercaptobenzimidazole (MBZIM), 5-ethoxy-2-mercaptobenzimidazole (EtMBZIM), 2-mercaptothiazolidine (MTZD), 3-methyl-2-mercaptobenzothiazole (NMeMBZT), 2-mercapto-3,4,5,6-tetrahydropyrimidine (tHPMT), 2-mercaptopyridine (PYT), and 2-mercaptopyrimidine (PMT) of formulas {[SbI(3)(MMI)(2)].MeOH} (1), [SbI(3)(MBZIM)(2)] (2), {SbI(2)(mu(2)-I)(EtMBZIM)(2).H(2)O} (3), [SbI(3)(MTZD)] (4), [(NMeMBZT)SbI(2)(mu(2)-I)(2)(mu(2)-S-NMeMBZT)SbI(2) (NMeMBZT)] (5), {[SbI(3)(tHPMT)(3)].MeOH} (6), [SbI(3)(PYT)] (7), and [SbI(3)(PMT)(2)] (8), have been synthesized and characterized by elemental analysis, FT-IR spectroscopy, FT-Raman spectroscopy, and TG-DTA analysis. The crystal structures of 3, 4, 5, 6, and 7 were also determined by X-ray diffraction. The complexes show interesting structural motifs. Complex 6 is a monomer, with octahedral (Oh) geometry around the metal ion formed by three sulfur and three iodide atoms. Complexes 3 and 5 are dimers, with a square pyramidal (SP) geometry in each monomeric unit, while complexes 4 and 7 are polymers with pseudotrigonal bipyramidal (psi-TBP). Two or three sulfur atoms from thioamide ligands and three iodide atoms are bound to Sb atoms forming building blocks for the dimers and polymers. Strong intramolecular interactions between mu(2)-I and/or mu(2)-S and Sb atoms stabilize both structures. In dimer complex 5, two terminal iodide and one terminal sulfur atom are bonded to the Sb ion, while two mu(2)-I and one mu(2)-S bridging atoms bridge the metal ions forming psi-Oh geometry. Computational studies using multivariant linear regression (MLR) and artificial neural networks (ANN) and considering biological results (50% inhibitory concentration, IC(50)) as dependent variables derived a theoretical equation for IC(50) values of the complexes studied. The calculated IC(50) values are compared satisfactorily with the experimental inhibitory activity of the complexes measured. Complexes 3-7 were used to study their influence upon the catalytic peroxidation of linoleic acid by the enzyme Lipoxygenase (LOX). Compounds 1-8 were also tested for in vitro cytotoxicity, and they showed mostly a moderate cytostatic activity against a variety of tumor cell lines but comparable with those found for the antimony(III) chloride and bromide complexes, reported earlier [Ozturk et al. Inorg. Chem. 2007, 46, 2861-2866; Ozturk et al. Inorg. Chem. 2009, 48, 2233-2245].
八种新的杂环硫代酰胺,2-巯基-1-甲基咪唑(MMI),2-巯基苯并咪唑(MBZIM),5-乙氧基-2-巯基苯并咪唑(EtMBZIM),2-巯基噻唑啉(MTZD),3-甲基-2-巯基苯并噻唑(NMeMBZT),2-巯基吡啶(PYT)和2-巯基嘧啶(PMT)的三碘化合锑(III)配合物,化学式为{[SbI(3)(MMI)(2)].MeOH}(1),[SbI(3)(MBZIM)(2)](2),{[SbI(2)(μ2-I)(EtMBZIM)(2)](2).H(2)O}(3),[SbI(3)(MTZD)](4),[(NMeMBZT)SbI(2)(μ2-I)(2)(μ2-S-NMeMBZT)SbI(2)(NMeMBZT)](5),{[SbI(3)(tHPMT)(3)].MeOH}(6),[SbI(3)(PYT)](7)和[SbI(3)(PMT)(2)](8),已经通过元素分析,FT-IR 光谱,FT-Raman 光谱和 TG-DTA 分析进行了合成和表征。还通过 X 射线衍射确定了 3、4、5、6 和 7 的晶体结构。这些配合物表现出有趣的结构特征。配合物 6 是一个单体,其金属离子周围的八面体(Oh)几何形状由三个硫原子和三个碘原子形成。配合物 3 和 5 是二聚体,每个单体单元具有四方锥(SP)几何形状,而配合物 4 和 7 是聚合物,具有拟三角双锥(psi-TBP)。来自硫代酰胺配体的两个或三个硫原子和三个碘原子与 Sb 原子结合,形成二聚体和聚合物的结构单元。mu(2)-I 和/或 mu(2)-S 和 Sb 原子之间的强分子内相互作用稳定了两种结构。在二聚体配合物 5 中,两个末端碘原子和一个末端硫原子与 Sb 离子键合,而两个 mu(2)-I 和一个 mu(2)-S 桥原子桥接金属离子,形成 psi-Oh 几何形状。使用多变量线性回归(MLR)和人工神经网络(ANN)进行计算研究,并将生物结果(50%抑制浓度,IC(50))作为依赖变量,得出了所研究配合物的 IC(50)值的理论方程。计算的 IC(50)值与通过 Lipoxygenase(LOX)酶测定的配合物的抑制活性令人满意地进行了比较。化合物 1-8 也进行了体外细胞毒性测试,它们对多种肿瘤细胞系表现出中等的细胞生长抑制活性,但与早先报道的三氯化锑和三溴化锑配合物(Ozturk 等人,Inorg.Chem.2007,46,2861-2866;Ozturk 等人,Inorg.Chem.2009,48,2233-2245)相当。