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首页> 外文期刊>International Scholarly Research Notices >Use of Charge Transfer Complexation Reactions for the Spectrophotometric Determination of Sumatriptan in Pharmaceuticals
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Use of Charge Transfer Complexation Reactions for the Spectrophotometric Determination of Sumatriptan in Pharmaceuticals

机译:电荷转移络合反应用于分光光度法测定药物中的舒马普坦

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摘要

Studies were carried out to use the charge-transfer reactions of sumatriptan (SMT), extracted from neutralized sumatriptan succinate (STS), as n-electron donor with theπ-acceptor, 2,3-dichloro-5,6-dicyano-1,4-benzoquinone (DDQ) andσ-acceptor, and iodine (I2). The formation of the colored complexes was utilized for the development of simple, rapid, and accurate spectrophotometric methods for the determination of SMT in pure form as well as in its tablets. The quantification of colored products was made spectrophotometrically at 585 nm for the CT complex formed between SMT and DDQ (DDQ method) and at 375 nm for the CT complex formed between SMT and I2(I2method). Beer’s law is obeyed over the concentration ranges of 4.0–56.0 μg mL−1and 2.0–28.0 for DDQ and I2, respectively, with correlation coefficients (r) of 0.9997 and 0.9998. The analytical parameters such as apparent molar absorptivity, Sandell’s sensitivities, and limits of detection (LOD) and quantification (LOQ) are also reported for both methods. The described methods were successfully applied to the determination of SMT in tablets. No interference was observed from the common excipients present in tablets. The reaction stoichiometry in both methods was evaluated by Job’s method of continuous variations and was found to be 1 : 1 (donor : acceptor).
机译:进行了研究,使用从中和的琥珀酸舒马曲坦(STS)中提取的舒马曲坦(SMT)的电荷转移反应作为与π受体2,3-二氯-5,6-二氰基-1的n电子供体, 4-苯醌(DDQ)和σ受体,以及碘(I2)。有色配合物的形成被用于开发简单,快速和准确的分光光度法,以测定纯净形式及其片剂中的SMT。对于SMT和DDQ之间形成的CT络合物(DDQ方法),分光光度法在585 nm下进行定量分析;对于SMT和I2之间形成的CT络合物(I2方法),在375 nm处定量分析有色产物。 DDQ和I2的浓度范围分别为4.0-56.0μg/ mL-1和2.0-28.0,符合比尔定律,相关系数(r)为0.9997和0.9998。两种方法还报告了分析参数,例如表观摩尔吸收率,Sandell的灵敏度以及检测限(LOD)和定量(LOQ)。所描述的方法已成功应用于片剂中SMT的测定。片剂中常见的赋形剂未发现干扰。两种方法的反应化学计量均采用Job的连续变化法进行评估,结果为1:1(供体:受体)。

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