首页> 外文期刊>The Journal of automatic chemistry >Selective Consecutive Determination of Desloratadine and Montelukast Sodium in Their Pure and Binary Dosage Form Based on Pencil Graphite Electrochemical Sensors
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Selective Consecutive Determination of Desloratadine and Montelukast Sodium in Their Pure and Binary Dosage Form Based on Pencil Graphite Electrochemical Sensors

机译:基于铅笔石墨电化学传感器,选择性连续测定其纯和二元剂型中的氯嘌呤和孟鲁司司钠

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In this study, we present a new, green electrochemical method for potentiometric estimation of desloratadine and montelukast sodium in their pure and binary dosage form. For that, three pencil graphite sensors were fabricated; the first one was prepared to analyse desloratadine drug (DES) by coating the graphite bar with the coating membrane, which comprises the ion pair of desloratadine and ammonium reineckate reagent (RNK), the polymer poly vinyl chloride (PVC), and the plasticizers dibutyl phthalate (DBP). The second one, which was used to analyse montelukast (MON), was constructed by using the ion pair of cadmium chloride reagent (Cd.) with montelukast and the same earlier named polymer and plasticizer. As a trial to analyse both of the drugs by the same sensor consecutively, we have constructed a combined pencil graphite electrode, which contains the two earlier suggested ion pairs, that is, we can use this electrode to selectively analyse for each drug. The proposed electrodes were effectively used for analysis of DES and MON as a single dosage form and as combined pharmaceutical preparation, without any need for prior separation that was performed depending on the difference in the efficient pH range for each sensor. The proposed sensors exhibited a Nernstian equation slopes of ?30.11, 27.70, (?29.16, 29.79)?mv. decade~(?1) in the linearity range 5.00?×?10~(?5)?1.00?×?10~(?2) and 1.00?×?10~(?5)???1.00?×?10~(?2)?M, respectively. The sensors exhibit high sensitivity according to LOD values ((0.036–0.018)???(0.025-0.026)? μ M), respectively, and important selectivity toward the studied drugs in presence of interfering ions and excipients. The optimum circumstances were studied, and the method was validated by application of ICH rules. Finally, the method was compared with a documented method, and the required statistical values were calculated.
机译:在这项研究中,我们呈现了一种新的绿色电化学方法,用于以纯和二元剂型的滴二氯葡萄球菌和蒙特洛斯钠钠的电位估计。为此,制造了三支铅笔石墨传感器;通过将石墨棒用涂膜涂覆涂覆膜,制备第一个分析二氯氨酸药物(DES),所述涂膜包括离子对氯丙氨酸和铵重糖醛试剂(RNK),聚合物聚氯乙烯(PVC)和增塑剂二丁基邻苯二甲酸酯(DBP)。用于分析Montelukast(Mon)的第二种,通过使用离子对氯化镉试剂(Cd.)与蒙特洛斯特和同一种先前的名为聚合物和增塑剂构成。作为通过连续通过相同传感器分析两种药物的试验,我们构建了一个组合的铅笔石墨电极,其包含两个前面的建议的离子对,即,我们可以使用该电极选择性地分析每种药物。所提出的电极被有效地用于分析DES和MON作为单一剂型,并且作为组合的药物制剂,而无需根据每个传感器的有效pH范围的差异进行的先前分离。所提出的传感器表现出何处的NERNSTIAN等式斜率?30.11,27.70,(?29.16,29.79)?MV。十年〜(?1)在线性范围5.00?×10〜(?5)?1.00?×10〜(?2)和1.00?×10〜(?5)??? 1.00?×10分别〜(?2)?m。根据LOD值(0.025-0.026)(0.025-0.026)??μm),传感器分别表现出高灵敏度,并在干扰离子和赋形剂存在下对所研究的药物的重要选择性。研究了最佳情况,通过申请ICH规则验证该方法。最后,将该方法与记录方法进行比较,并计算所需的统计值。

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