首页> 美国卫生研究院文献>International Journal of Analytical Chemistry >Utilization of N-Bromosuccinimide as a Brominating Agent for the Determination of Sumatriptan Succinate in Bulk Drug and Tablets
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Utilization of N-Bromosuccinimide as a Brominating Agent for the Determination of Sumatriptan Succinate in Bulk Drug and Tablets

机译:N-溴代琥珀酰亚胺作为溴化剂用于测定大剂量药物和片剂中的舒马曲坦琥珀酸酯

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摘要

One titrimetric and two spectrophotometric methods which are simple, sensitive, and economic are described for the determination of sumatriptan succinate (STS) in bulk drug and in tablet dosage form using N-bromosuccinimide (NBS) as a brominating agent. In titrimetry, aqueous solution of STS is treated with a measured excess of NBS in acetic acid medium, and after the bromination of STS is judged to be complete, the unreacted NBS is determined iodometrically (method A). Spectrophotometric methods entail addition of a known excess of NBS in acid medium followed by the determination of residual NBS by its reaction with excess iodide, and the liberated iodine (I3 ) is either measured at 370 nm (method B) or liberated iodine is reacted with starch followed by the measurement of the blue colored starch-iodine complex at 570 nm (method C). Titrimetric method is applicable over range 1.0–10.0 mg STS (method A), and the reaction stoichiometry is found to be 1 : 3 (STS : NBS). The spectrophotometric methods obey Beer's law for concentration range 0.6–15.0 μg mL−1 (method B) and 0.2–4.0 μg mL−1 (method C). The calculated apparent molar absorptivity values were found to be 2.10 × 104 and 7.44 × 104 L mol−1 cm−1, for method B and method C, respectively.
机译:描述了一种简单,灵敏和经济的滴定法和两种分光光度法,用于测定散装药物和片剂剂型中的舒马曲坦琥珀酸酯(STS),使用N-溴代琥珀酰亚胺(NBS)作为溴化剂。在滴定法中,将STS水溶液用乙酸介质中测得的过量NBS处理,并判断STS溴化完成后,用碘量法测定未反应的NBS(方法A)。分光光度法需要在酸性介质中添加已知过量的NBS,然后通过与过量碘化物的反应确定残留的NBS,然后在370 nm(方法)处测量释放的碘(I3 -) B)或释放的碘与淀粉反应,然后在570 nm下测量蓝色的淀粉-碘复合物(方法C)。滴定法适用于1.0–10.0mg STS(方法A),反应化学计量比为1:3(STS:NBS)。分光光度法符合浓度定律0.6–15.0μg mL -1 (方法B)和0.2–4.0μggmL -1 (方法C)的比尔定律。计算得出的表观摩尔吸收率值为2.10×10 4 和7.44×10 4 L mol -1 cm -1 ,分别用于方法B和方法C。

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