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Optimization of the Water-Insoluble Procedures for USP General Chapter Residual Solvents 467

机译:USP通则残余溶剂467的水不溶性程序的优化

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摘要

The water-insoluble procedures in US Pharmacopeia (USP) General Chapter Residual Solvents <467>, which are based on European Pharmacopoeia procedures, were optimized and modified before their inclusion in the chapter to improve their scope, performance, and ruggedness. The optimized procedures use a static headspace introduction system with a gas chromatograph equipped with a flame ionization detector. This article describes some of the key changes made to the USP published procedures, including use of dimethyl sulfoxide (DMSO) or dimethylformamide (DMF) as the solvent, addition of 5 mL of water and 1 mL of sample (dissolved in DMSO or DMF) to the headspace vial, use of a 3:1 GC split ratio, and use of new matrix-matched system suitability solutions. These procedures were verified with two different active pharmaceutical ingredients—hydroxyzine pamoate and prednisone. In the investigation, the more polar material (hydroxyzine pamoate) showed greater recoveries for the optimized procedures when prepared in DMSO. The less polar material (prednisone) typically had greater recoveries in DMF for the optimized procedures. During experimentation, insights into sample preparation, additional types of headspace instrumentation, solvent purity, and other parameters were also gained.
机译:基于《欧洲药典》程序的《美国药典》(USP)通则《残留溶剂》 <467>中的水不溶性程序经过优化和修改,才能纳入本章,以改善其范围,性能和坚固性。优化的程序使用静态顶空引入系统,该系统具有配备了火焰离子化检测器的气相色谱仪。本文介绍了USP已发布程序的一些关键更改,包括使用二甲基亚砜(DMSO)或二甲基甲酰胺(DMF)作为溶剂,添加5 mL水和1 mL样品(溶于DMSO或DMF)到顶空样品瓶中,使用3:1的气相色谱分流比,并使用新的基质匹配系统适用性解决方案。这些程序已用两种不同的活性药物成分-羟嗪pamoate和泼尼松验证。在研究中,极性更大的物质(羟嗪pamoate)在DMSO中制备时,对于优化的程序显示出更高的回收率。对于优化的过程,极性较小的物质(泼尼松)通常在DMF中具有较高的回收率。在实验过程中,还获得了有关样品制备,顶空仪器的其他类型,溶剂纯度和其他参数的见解。

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