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Cd(II) and Pb(II) complexes of the polyether ionophorous antibiotic salinomycin

机译:聚醚离子性抗生素沙利霉素的Cd(II)和Pb(II)配合物

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Background The natural polyether ionophorous antibiotics are used for the treatment of coccidiosis in poultry and ruminants. They are effective agents against infections caused by Gram-positive microorganisms. On the other hand, it was found that some of these compounds selectively bind lead(II) ions in in vivo experiments, despite so far no Pb(II)-containing compounds of defined composition have been isolated and characterized. To assess the potential of polyether ionophores as possible antidotes in the agriculture, a detailed study on their in vitro complexation with toxic metal ions is required. In the present paper we report for the first time the preparation and the structure elucidation of salinomycin complexes with ions of cadmium(II) and lead(II). Results New metal(II) complexes of the polyether ionophorous antibiotic salinomycin with Cd(II) and Pb(II) ions were prepared and structurally characterized by IR, FAB-MS and NMR techniques. The spectroscopic information and elemental analysis data reveal that sodium salinomycin (SalNa) undergoes a reaction with heavy metal(II) ions to form [Cd(Sal)2(H2O)2] (1) and [Pb(Sal)(NO3)] (2), respectively. Abstraction of sodium ions from the cavity of the antibiotic is occurring during the complexation reaction. Salinomycin coordinates with cadmium(II) ions as a bidentate monoanionic ligand through the deprotonated carboxylic moiety and one of the hydroxyl groups to yield 1. Two salinomycin anions occupy the equatorial plane of the Cd(II) center, while two water molecules take the axial positions of the inner coordination sphere of the metal(II) cation. Complex 2 consists of monoanionic salinomycin acting in polydentate coordination mode in a molar ratio of 1: 1 to the metal ion with one nitrate ion for charge compensation. Conclusion The formation of the salinomycin heavy metal(II) complexes indicates a possible antidote activity of the ligand in case of chronic/acute intoxications likely to occur in the stock farming.
机译:背景技术天然的聚醚离子载体抗生素用于治疗家禽和反刍动物的球虫病。它们是对抗革兰氏阳性微生物引起的感染的有效药物。另一方面,已经发现,尽管到目前为止还没有分离和鉴定出定义成分的含Pb(II)的化合物,但其中一些化合物在体内实验中选择性地结合了铅(II)离子。为了评估聚醚离子载体在农业中可能作为解毒剂的潜力,需要对其与有毒金属离子的体外络合进行详细研究。在本文中,我们首次报道了含镉(II)和铅(II)离子的盐霉素复合物的制备和结构解析。结果制备了新的聚醚离子载体抗生素沙利霉素与Cd(II)和Pb(II)离子的金属(II)配合物,并通过IR,FAB-MS和NMR技术对其结构进行了表征。光谱信息和元素分析数据表明,盐霉素钠(SalNa)与重金属(II)离子发生反应,形成[Cd(Sal)2(H2O)2](1)和[Pb(Sal)(NO3)] (2)分别。在络合反应期间,发生了从抗生素腔中提取钠离子的事件。盐霉素通过去质子化的羧基部分和一个羟基与镉离子作为二齿单阴离子配体配位,产生1。两个盐霉素阴离子占据Cd(II)中心的赤道面,而两个水分子占据轴向金属(II)阳离子内部配位球的位置。配合物2由单阴离子盐霉素以多齿配位模式作用,与金属离子的摩尔比为1:1,一个硝酸根离子用于电荷补偿。结论沙利霉素重金属(II)配合物的形成表明在畜牧业可能发生慢性/急性中毒的情况下配体可能具有解毒活性。

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