首页> 外文期刊>Journal of Analytical & Bioanalytical Techniques >Utility of Ion-Pair and Charge Transfer Complexation for Spectrophotometric Determination of Domperidone and Doxycycline in Bulk and Pharmaceutical Formulations
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Utility of Ion-Pair and Charge Transfer Complexation for Spectrophotometric Determination of Domperidone and Doxycycline in Bulk and Pharmaceutical Formulations

机译:离子对和电荷转移络合物用于分装光度法测定多潘立酮和强力霉素的药物和药物制剂

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Four simple, sensitive, and accurate spectrophotometric methods (A-D) have been developed for the determination of domperidone (I) and doxycycline (II) in bulk and in pharmaceutical formulations. The first two methods (A and B) are based on the formation of yellow ion-pair complexes between the examined drugs with bromocresol green (BCG) and methyl orange (MO) as chromophoric reagents in Britton-Robinson (B-R) universal buffer of pH 3.0 and 2.2, respectively. The formed complexes were extracted with chloroform and measured at 420 nm and 424 nm for I and II using BCG, respectively and 480 nm for the studied drugs using MO. The last two methods (C and D) are based on charge transfer complex formation between the studied drugs and tetracyanoethylene (TCNE); and 7,7,8,8-tetracyanoquinodimethane (TCNQ). Different variables affecting the reactions were studied and optimized. Under the optimum reaction conditions, linear relationships with good correlation coefficients (0.9992 - 0.9998) were found between the absorbance and the concentration of I in the range of 1.4-22.4μg mL ?1 , whereas that for II in the range 1.4-25.5μg mL ?1 . For more accurate analysis, Ringbom optimum concentration range was found to be between 3.0-21.5 and 3.0-23.5μg mL ?1 , for I, and II, respectively. Sandell’s sensitivity, correlation coefficient, and limits of detection and quantification were calculated for each method. A Job’s plot of the absorbance versus the molar ratio of drug to each of formed complex under consideration indicated (1:1) ratio. No interference was observed from common pharmaceutical excipients and additives. Statistical comparison of the results with those obtained by the official method shows excellent agreement and indicates no significant difference in accuracy and precision.
机译:已经开发了四种简单,灵敏和准确的分光光度法(A-D),用于测定散装制剂和药物制剂中的多潘立酮(I)和强力霉素(II)。前两种方法(A和B)是基于在Britton-Robinson(BR)通用pH缓冲液中以溴甲酚绿(BCG)和甲基橙(MO)作为发色剂的被检药物之间形成黄色离子对络合物的方法分别为3.0和2.2。形成的复合物用氯仿萃取,分别使用BCG在420 nm和424 nm处使用BCG进行测量,对于研究药物使用MO在480 nm处进行测量。最后两种方法(C和D)基于所研究药物与四氰基乙烯(TCNE)之间形成电荷转移复合物的方法。和7,7,8,8-四氰基喹二甲烷(TCNQ)。研究和优化了影响反应的不同变量。在最佳反应条件下,I与吸光度之间的线性关系具有良好的相关系数(0.9992-0.9998),I在1.4-22.4μgmL?1范围内,而II在1.4-25.5μg范围内。毫升?1。为了进行更准确的分析,对于I和II,Ringbom的最佳浓度范围分别在3.0-21.5和3.0-23.5μgmL?1之间。每种方法都计算了Sandell的灵敏度,相关系数以及检出限和定量限。乔布的吸光度与药物与所考虑的每种形成的复合物的摩尔比(1:1)之比的关系图。没有观察到普通药物赋形剂和添加剂的干扰。结果与通过官方方法获得的结果之间的统计比较显示出极好的一致性,并且在准确性和精确度上没有显着差异。

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