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Competitive binding of cadmium by plant thiols: an electrochemical study assisted by multivariate curve resolution

机译:镉与植物硫醇的竞争性结合:多变量曲线解析辅助的电化学研究

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Multivariate curve resolution with alternating least squares (MCR-ALS) has been applied to voltammetric data obtained from analysis of the competitive binding of cysteine (Cys) and cysteine–glycine (Cys-Gly) by Cd(II) as a first approach towards mixtures of phytochelatins and related compounds in natural media. From different starting points, the possibilities of formation of mixed complexes and/or displacements between ligands are investigated. Analysis of the resulting unitary voltammograms and concentration profiles of the resolved components by MCR-ALS suggests that the strongest ligand (Cys-Gly) is able to displace the weakest (Cys) from its metal complexes, whereas this does not happen in the opposite direction. On the other hand, no evidence of Cd mixed-ligand complexes was found.
机译:交替最小二乘的多变量曲线分辨率(MCR-ALS)已应用于通过Cd(II)分析半胱氨酸(Cys)和半胱氨酸-甘氨酸(Cys-Gly)的竞争结合而获得的伏安数据,这是第一种混合方法自然介质中植物螯合素及相关化合物的含量从不同的出发点,研究了形成混合配合物和/或配体之间置换的可能性。通过MCR-ALS分析所得的单位伏安图和分离的组分的浓度曲线表明,最强的配体(Cys-Gly)能够取代其金属络合物中的最弱的(Cys),而不会发生相反的变化。另一方面,未发现Cd混合配体络合物的证据。

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