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A Novel Derivatization Ultraviolet Spectrophotometric Method for the Determination of Dihydroartemisinin using p-Nitroaniline

机译:对硝基苯胺新方法衍生化紫外分光光度法测定双氢青蒿素

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Purpose: To develop a novel ultraviolet (UV)–spectrophotometric method for the determination of dihydroartemisinin (DHA) in tablets using p-nitroaniline (PNA) as a derivatizing agent. Methods: Derivatization was based on the reaction between methanol solutions of dihydroartemisinin (DHA) and p-nitroaniline (PNA) in acid medium (1M HCI) at elevated temperature and for a short reaction time. Optimal detector response was obtained within 15 min when the reaction was carried out at 90o C in a molar ratio of 2:1 (DHA:PNA). The method used for analysis was validated and a linear calibration curve constructed in the range of 30 – 100 μg/mL for the reaction mixture at an absorbance of 290 nm. Results: Separation of adduct from PNA was better achieved on reversed phase thin layer chromatography (TLC) using acetonitrile : water (60:50) or on high performance liquid chromatography (HPLC) with retention times of 2.8 min for PNA and 5.8 min for the adduct. The limit of detection was 6 μg/mL. The method was precise and accurate in the range 100.70 - 100.96 %, with intraday and interday precisions of less than 2 % at concentrations of 40 and 80 μg/mL, respectively. The new method was applied to the assay of two brands of dihydroartemisinin tablets with accuracy similar to that of the International Pharmacopoeia (IP) UV-spectrophotometric method (p > 0.05). Conclusion: The derivatization method is simple, direct, devoid of dilutions and inexpensive in terms of reagent requirements and analyte volume, and has a shorter reaction time, cpmpared with IP method. Based on the foregoing, the method can be adopted as an alternative to the official assay method for routine quality control of dihydroartemisinin tablets.
机译:目的:建立一种新型的紫外分光光度法,以对硝基苯胺(PNA)为衍生剂测定片剂中的双氢青蒿素(DHA)。方法:衍生化是基于二氢青蒿素(DHA)的甲醇溶液与对硝基苯胺(PNA)在酸性介质(1M HCl)中在高温下且反应时间短的反应。当反应在90°C下以2:1的摩尔比(DHA:PNA)进行时,在15分钟内可获得最佳的检测器响应。验证了用于分析的方法,并在290 nm的吸光度下对反应混合物建立了30 – 100μg/ mL范围内的线性校准曲线。结果:在使用乙腈:水(60:50)的反相薄层色谱(TLC)或高效液相色谱(HPLC)上,PNA的分离效果更好,PNA的保留时间为2.8分钟,而PNA的保留时间为5.8分钟。加合物。检测限为6μg/ mL。该方法精确度在100.70-100.96%范围内,当浓度分别为40和80μg/ mL时,日内和日间精度均小于2%。该新方法已用于测定两个品牌的双氢青蒿素片剂,其准确度与国际药典(IP)紫外分光光度法相似(p> 0.05)。结论:与IP方法相比,衍生化方法简单,直接,无需稀释且在试剂需求和分析物体积方面便宜,并且反应时间更短。基于上述内容,该方法可以替代二氢青蒿素片常规质量控制的官方检测方法。

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