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首页> 外文期刊>Journal of sulfur chemistry >Multinuclear magnetic resonance study of equilibria between aluminum(III) and sulfur-containing amino acids in aqueous solutions
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Multinuclear magnetic resonance study of equilibria between aluminum(III) and sulfur-containing amino acids in aqueous solutions

机译:水溶液中铝(III)与含硫氨基酸之间平衡的多核磁共振研究

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摘要

Aluminum(III) is generally found in small amounts in living organisms where it interacts with several biomolecules. Low mass biomolecules can form complexes associated with absorption and distribution processes of this toxic ion. However, investigating aluminum(III) complexes in solution poses singular difficulties, because it is highly hydrolyzable. Amino acids constitute possible ligands for aluminum(III). Methionine, cysteine and homocysteine are found in healthy human body. Penicillamine is a drug used in several circumstances, such as in treating metal poisoning. These four biomolecules share similar donor atoms involved in complexation reactions: a carboxylate oxygen, an amine nitrogen and sulfur. In this study, four binary complexes formed by aluminum(III) and amino acids in solution at a metal-to-ligand ratio of 1:1 were analyzed through potentiometry and multinuclear magnetic resonance (C-13 and Al-27). Potentiometry data consistently demonstrated complexion formation. Distributions of species revealed the coexistence of several species in ample pH ranges and pointed out the preferable value to perform the NMR analyses. C-13 NMR data were used to confirm complexion formation, while Al-27 NMR data indicated the geometric arrangement adopted by the complexes. Structures were proposed for each complex.
机译:铝(III)通常在与几种生物分子相互作用的活生物体中少量发现。低质量的生物分子可以形成与该有毒离子的吸收和分布过程相关的复合物。但是,研究溶液中的铝(III)络合物存在很大的困难,因为它具有很高的水解性。氨基酸构成铝(III)的可能配体。在健康的人体中发现蛋氨酸,半胱氨酸和高半胱氨酸。青霉素是一种在多种情况下使用的药物,例如用于治疗金属中毒的药物。这四个生物分子共享参与络合反应的相似供体原子:羧酸氧,胺氮和硫。在这项研究中,通过电位计和多核磁共振(C-13和Al-27)分析了铝(III)和氨基酸以1:1的金属配体比在溶液中形成的四种二元配合物。电位计数据始终显示出肤色的形成。物种分布揭示了在充足的pH范围内几种物种共存,并指出了进行NMR分析的优选值。 C-13 NMR数据用于确认络合物的形成,而Al-27 NMR数据表明络合物采用的几何排列。提出了针对每种复合物的结构。

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