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Synthesis, photophysical properties and structures of organotin-Schiff bases utilizing aromatic amino acid from the chiral pool and evaluation of the biological perspective of a triphenyltin compound

机译:从手性库中利用芳香族氨基酸合成有机锡席夫碱,其光物理性质和结构以及对三苯基锡化合物的生物学评价

摘要

Five new organotin(IV) complexes of compositions [Me2SnL1] (1), [Me2SnL2]n (2), [Me2SnL3] (3), [Ph3SnL1H]n (4) and [Ph3SnL3H] (5) (where L1 = (2S)-2-((E)-((Z)-4-hydroxypent-3-en-2-ylidene)amino)-3-(1H-indol-3-yl)propanoate, L2 = (2S)-(E)-2-((2-hydroxybenzylidene)amino)-3-(1H-indol-3-yl)propanoate and L3 = (2S)-(E)-2-((1-(2-hydroxyphenyl)ethylidene)amino)-3-(1H-indol-3-yl)propanoate were synthesized and spectroscopically characterized. The crystal structures of 1–4 were determined. For the dimethyltin derivative 2, a polymeric chain structure was observed as a result of a long Sn∙∙∙O contact involving the exocyclic carbonyl oxygen-atom from the tridentate ligand of a neighboring Sn-complex unit. The tin atom in this complex has a distorted octahedral coordination geometry, in which the long Sn-O bond is almost trans to the tridentate ligand nitrogen-atom. In contrast, the dimethyltin(IV) complexes 1 and 3 displayed discrete monomeric structures where the tin atom has distorted trigonal-bipyramidal geometry with the two coordinating L oxygen atoms defining the axial positions. On the other hand, 4 is a chain polymer in the solid state. The ligand-bridged Sn atoms adopt a trans-Ph3SnO2 trigonal-bipyramidal configuration with equatorial phenyl groups. A carboxylato oxygen atom from one and the hydroxyl oxygen of the successive ligand in the chain occupy the axial positions. The solution structures were predicted by the use of 119Sn NMR chemical shifts. The photophysical properties of the complexes were investigated in the solid and in solution. The triphenyltin(IV) compound 4 was tested in detail ex vivo against A375 (human melanoma) cell line, exhibiting an IC50 value of 261 nM to induce cell death as assessed by the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay without significant alteration of cytolysis as determined by lactate dehydrogenase (LDH) assay. Compound 4-mediated potent cell death was also determined by Live and Dead assay and caspase-mediated cleavage of poly-ADP ribose polymerase (PARP). Potent cell death activity was not observed in primary cells, like blood-derived peripheral mononuclear cells (PBMC). Compound 4 inhibited the diphenyl hexatriene (DPH) binding to cells and decreased the micro viscosity in a dose-dependent manner. Additionally, the ability of 4 and cyclodextrin (CD) to interact was determined by molecular modelling.
机译:五个新的组成[Me2SnL1](1),[Me2SnL2] n(2),[Me2SnL3](3),[Ph3SnL1H] n(4)和[Ph3SnL3H](5)的有机锡(IV)络合物(其中L1 =( 2S)-2-(((E)-((Z)-4-羟基戊-3-烯-2-亚烷基)氨基)-3-(1H-吲哚-3-基)丙酸酯,L2 =(2S)-( E)-2-((2-羟基亚苄基)氨基)-3-(1H-吲哚-3-基)丙酸酯,L3 =(2S)-(E)-2-((1-(2-羟基苯基)亚乙基)合成了氨基)-3-(1H-吲哚-3-基)丙酸酯,并进行了光谱表征,确定了1-4的晶体结构;对于二甲基锡衍生物2,由于长Sn,观察到聚合物链结构∙∙∙O接触涉及相邻Sn-络合物单元的三齿配体中的环外羰基氧原子,该络合物中的锡原子具有扭曲的八面体配位几何结构,其中长的Sn-O键几乎可以转化为相比之下,二甲基锡(IV)配合物1和3显示出离散的单体结构,其中锡原子扭曲了双锥体的几何结构,其中两个配位的L氧原子定义了轴向位置。另一方面,4是固态的链状聚合物。配体桥连的Sn原子采用具有赤道苯基的反式Ph3SnO2三角双锥体构型。来自一个的羧基氧原子和链中连续配体的羟基氧占据轴向位置。通过使用119Sn NMR化学位移预测溶液的结构。在固体和溶液中研究了配合物的光物理性质。三苯基锡(IV)化合物4在体外针对A375(人类黑色素瘤)细胞系进行了详细测试,通过3-(4,5-二甲基噻唑-2-基)评估,IC50值为261 nM,可诱导细胞死亡。 -2,5-二苯基四氮唑溴化物(MTT)测定没有明显的细胞溶解改变,如乳酸脱氢酶(LDH)测定所确定。化合物4介导的有效细胞死亡也通过活和死测定以及胱天蛋白酶介导的聚-ADP核糖聚合酶(PARP)的裂解来确定。在原代细胞(如血液来源的外周单核细胞(PBMC))中未观察到有效的细胞死亡活性。化合物4以剂量依赖性方式抑制二苯基己三烯(DPH)与细胞的结合并降低微粘度。此外,4和环糊精(CD)相互作用的能力是通过分子建模确定的。

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