Mohamed G G, Khalil Shaban M, Zayed M A, El-Shall M Abd El-Hamid
Chemistry Department, Faculty of Science, Cairo University, Giza, Egypt.
J Pharm Biomed Anal. 2002 Jun 15;28(6):1127-33. doi: 10.1016/s0731-7085(01)00718-x.
A simple, rapid and sensitive spectrophotometric method for the determination of sulbutamol in pure form and in different pharmaceutical preparations has been developed. The charge transfer (CT) reaction between salbutamol as electron donor and 2,6-dichloroquinone chlorimide (DCQ) and 7,7,8,8-tetracyanoquinodimethane (TCNQ) as a pi-electron acceptor have been spectrophotometrically studied. The optimum experimental conditions for these CT reactions have been studied carefully. Beer's law is obeyed over the concentration range of 1.0-30.0 microg ml(-1) and 2.0-20.0 microg ml(-1) for salbutamol using DCQ and TCNQ, respectively. For more accurate results, Ringbom optimum concentration range is calculated and found to be 10.0 to 30.0 and 8.0 to 20 microg ml(-1) for salbutamol using DCQ and TCNQ, respectively. The Sandell sensitivity is found to be 0.011 and 0.010 g cm(-2) for salbutamol using DCQ and TCNQ, respectively, which indicate the high sensitivity of the proposed methods. Relative standard deviations (R.S.D.) of 0.27 to 0.68% and 0.20 to 1.40% (n=5) were obtained for five replicates of salbutamol using DCQ and TCNQ, respectively. The results obtained by the two reagents are comparable with those obtained by British pharmacopoeia assay for the determination of salbutamol in raw materials and in pharmaceutical preparations.
已开发出一种用于测定纯品沙丁胺醇及不同药物制剂中沙丁胺醇的简单、快速且灵敏的分光光度法。对作为电子供体的沙丁胺醇与作为π电子受体的2,6 - 二氯醌氯亚胺(DCQ)和7,7,8,8 - 四氰基对苯二醌二甲烷(TCNQ)之间的电荷转移(CT)反应进行了分光光度研究。仔细研究了这些CT反应的最佳实验条件。使用DCQ和TCNQ时,沙丁胺醇在1.0 - 30.0 μg ml⁻¹和2.0 - 20.0 μg ml⁻¹的浓度范围内分别遵循比尔定律。为获得更准确的结果,计算了林邦最佳浓度范围,发现使用DCQ和TCNQ时,沙丁胺醇的林邦最佳浓度范围分别为10.0至30.0 μg ml⁻¹和8.0至20 μg ml⁻¹。使用DCQ和TCNQ时,沙丁胺醇的桑德尔灵敏度分别为0.011和0.010 g cm⁻²,这表明所提出方法的高灵敏度。使用DCQ和TCNQ对沙丁胺醇进行五次重复测定时,相对标准偏差(R.S.D.)分别为0.27%至0.68%和0.20%至1.40%(n = 5)。两种试剂获得的结果与英国药典测定原料药和药物制剂中沙丁胺醇的方法所得结果相当。