Departamento de Quimica, Faculdade de Ciências e Tecnologia, Universidade de Coimbra, Portugal.
Bioelectrochemistry. 2010 Jun;78(2):97-105. doi: 10.1016/j.bioelechem.2009.08.003. Epub 2009 Aug 18.
Polynuclear Pd(II) complexes with biogenic polyamines present great potential clinical importance, due to their antiproliferative and cytotoxic activity coupled to less severe side-effects. The adsorption process and the redox behaviour of two polynuclear palladium chelates with spermine (Spm) and spermidine (Spd), Pd(II)-Spm and Pd(II)-Spd, as well as of their ligands Spm and Spd, were studied using atomic force microscopy (AFM) and voltammetry at highly oriented pyrolytic graphite and glassy carbon electrodes. AFM revealed different adsorption patterns and degree of surface coverage, correlated with the chelate structure, concentration of the solution, applied potential and voltammetric behaviour of the Spm, Spd, Pd(II)-Spm and Pd(II)-Spd systems. The voltammetric study of Spm and Spd showed that these biogenic polyamines undergo an irreversible and pH-dependent oxidation. In acid medium the polyamines are fully protonated, rendering their oxidation more difficult. With increasing pH the oxidation potential for both Spm and Spd is shifted to less positive values, indicating a greater ease of oxidation in alkaline medium. The Pd(II)-Spm and Pd(II)-Spd complexes dissociate at high negative or high positive potentials. The application of a positive potential induced the oxidation of these Pd complexes and the formation of mixed layers of palladium oxides, Spm/Spd and Pd(II)-Spm/Pd(II)-Spd.
具有生物源多胺的多核 Pd(II) 配合物由于其具有抗增殖和细胞毒性活性,同时副作用较小,因此具有重要的临床应用潜力。本文采用原子力显微镜(AFM)和在高定向热解石墨和玻璃碳电极上的伏安法研究了两种具有 spermine(Spm)和 spermidine(Spd)的多核钯配合物 Pd(II)-Spm 和 Pd(II)-Spd 及其配体 Spm 和 Spd 的吸附过程和氧化还原行为。AFM 揭示了不同的吸附模式和表面覆盖率,与配合物结构、溶液浓度、施加的电势以及 Spm、Spd、Pd(II)-Spm 和 Pd(II)-Spd 体系的伏安行为有关。Spm 和 Spd 的伏安研究表明,这些生物源多胺发生不可逆且依赖 pH 的氧化。在酸性介质中,多胺完全质子化,使其氧化变得更加困难。随着 pH 的增加,Spm 和 Spd 的氧化电位向更负的数值移动,表明在碱性介质中氧化更容易。Pd(II)-Spm 和 Pd(II)-Spd 配合物在高负或高正电势下解离。施加正电势会诱导这些 Pd 配合物的氧化以及钯氧化物、Spm/Spd 和 Pd(II)-Spm/Pd(II)-Spd 的混合层的形成。