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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Electroanalytical characteristics of piribedil and its differential pulse and square wave voltammetric determination in pharmaceuticals and human serum.
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Electroanalytical characteristics of piribedil and its differential pulse and square wave voltammetric determination in pharmaceuticals and human serum.

机译:药物和人血清中匹立贝地的电分析特性及其微分脉冲和方波伏安法测定。

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摘要

The electrochemical oxidative behavior of piribedil (PR) was described. It was investigated by cyclic, linear sweep, differential pulse (DPV) and square wave (SWV) voltammetric techniques. The redox behavior of PR was found irreversible. Different parameters were tested to optimize the conditions for the determination of PR. The dependence of intensities of currents and potential on pH, concentration, scan rate, nature of the buffer was investigated. Two sensitive methods for the measurement of PR were described. For analytical purposes, a very well resolved diffusion controlled voltammetric peak was obtained in 0.1 M H(2)SO(4) and pH 5.7 acetate buffer. The determination peaks are obtained at 1.27 and 0.95 V for differential pulse and 1.29 and 0.97 V for SWV in 0.1 M H(2)SO(4) and pH 5.7 acetate buffer, respectively. The linear response was obtained in the ranges of 2x10(-6)-1x10(-3) M in 0.1 M H(2)SO(4) and 2x10(-6)-8x10(-4) M in pH 5.7 acetate buffer for both techniques. The proposed techniques weresuccessfully applied to the determination of PR in tablet dosage forms and human serum. Excipients did not interfere in the determination. The necessary statistical validation reveals that the proposed methods are free from significant systematic errors.
机译:描述了吡哌丁醇(PR)的电化学氧化行为。它通过循环,线性扫描,差分脉冲(DPV)和方波(SWV)伏安技术进行了研究。发现PR的氧化还原行为是不可逆的。测试了不同的参数以优化PR测定的条件。研究了电流强度和电位对pH,浓度,扫描速率,缓冲液性质的依赖性。描述了两种敏感的PR测量方法。出于分析目的,在0.1 M H(2)SO(4)和pH 5.7乙酸盐缓冲液中获得了很好分辨的扩散控制伏安峰。在0.1 M H(2)SO(4)和pH 5.7乙酸盐缓冲液中,分别在1.27和0.95 V的差分脉冲和SWV的1.29和0.97 V的条件下获得测定峰。在0.1 MH(2)SO(4)中2x10(-6)-1x10(-3)M和pH 5.7乙酸盐缓冲液中2x10(-6)-8x10(-4)M范围内获得线性响应两种技术。所提出的技术已成功应用于片剂剂型和人血清中PR的测定。辅料不影响测定。必要的统计验证表明,所提出的方法没有重大的系统错误。

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