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Electrochemical determination of an antitumour platinum(IV) complex: trans-[PtCl2(OH)2(dimethylamine)(isopro­pylamine)]. Application to biological samples

机译:电化学测定抗肿瘤铂(IV)配合物:反式[PtCl2(OH)2(二甲胺)(异丙基胺)]。应用于生物样品

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摘要

A differential pulse voltammetry (DPV) method has been applied for the first time for determination of trans-Pt[Cl2(OH)2(dimethylamine)(isopropylamine)]. To this end, all chemical and instrumental variables affecting the determination of trans-Pt[Cl2(OH)2(dimethylamine)(isopropylamine)] were optimized. From studies of the mechanisms governing the electrochemical response of trans-Pt[Cl2(OH)2(dimethylamine)(isopropylamine)], it was concluded that it is an electrochemically irreversible system with a reduc­tion under diffusion control, with a reduction potential of -425 mV. Under optimal conditions, the variation in the analytical signal (Ip) with trans-Pt[Cl2(OH)2(dimethylamine)(isopropylamine)] concentration is linear in the 0.8 µg mL-1 to 20 µg mL-1 range, with an LOD of 97 ng mL-1 and a LOQ of 323 ng mL-1, RSD = 1.58 % and Er = 0.83 %. The optimized method was applied to the determination of trans-Pt[Cl2(OH)2(di-methylamine)(isopropylamine)] in biological fluids, human urine and synthetic urine
机译:差分脉冲伏安法(DPV)首次用于测定反式Pt [Cl2(OH)2(二甲胺)(异丙胺)]。为此,对影响反式Pt [Cl2(OH)2(二甲胺)(异丙胺)]测定的所有化学和仪器变量进行了优化。从控制反式Pt [Cl2(OH)2(二甲胺)(异丙胺)]的电化学响应的机理的研究得出的结论是,它是一种电化学不可逆的体系,在扩散控制下具有还原作用,还原电位为- 425毫伏。在最佳条件下,分析信号(Ip)随反式Pt [Cl2(OH)2(二甲胺)(异丙胺)]浓度的变化在0.8 µg mL-1至20 µg mL-1范围内呈线性,且LOD为97 ng mL-1,LOQ为323 ng mL-1,RSD = 1.58%,Er = 0.83%。优化后的方法用于生物液体,人尿和合成尿中反式Pt [Cl2(OH)2(二甲胺)(异丙胺)]的测定

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