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分析型和制备型超临界流体色谱支持的药物降解产物的纯化。

Purification of drug degradation products supported by analytical and preparative supercritical fluid chromatography.

机构信息

Université d'Orléans, ICOA, UMR CNRS 7311, rue de Chartres, BP 6759, 45067, Orléans cedex 2, France.

Institut de Recherche Servier, 11 rue des Moulineaux, 92150, Suresnes, France.

出版信息

J Pharm Biomed Anal. 2019 Jun 5;170:40-47. doi: 10.1016/j.jpba.2019.03.033. Epub 2019 Mar 16.

Abstract

A stressed degradation (oxidation) was employed to produce metabolites from an active pharmaceutical ingredient (API) with large molecular weight (about 900 g/mol). An analytical chromatographic method was desired to compare the products generated by different degradation methods while a multi-gram-scale preparative chromatographic method was necessary to purify the produced metabolites. Supercritical fluid chromatography (SFC) was selected for both tasks as no other chromatographic method had achieved the resolution of the API and metabolites (two isomeric mono-oxide species and one di-oxide). First, an analytical-scale method was developed with ultra-high performance supercritical fluid chromatography (UHPSFC). Achiral stationary phases containing sub-2 μm fully porous particles or sub-3 μm superficially porous particles, and chiral phases containing 3 and 5 μm fully porous particles were selected for a first screening with gradient elution (carbon dioxide - methanol containing additives). The stationary phase providing the most promising results was ACQUITY Torus 2-PIC (100 x 3 mm, 1.7 μm, Waters). A central composite design (CCD) was conducted to optimize the gradient program and oven temperature. Final gradient conditions were as follows: 50-70% methanol in 3.8 min with oven temperature set at 36 °C, back-pressure set at 11 MPa and flow-rate at 0.8 mL/min. The optimized method was employed to analyze samples obtained with different degradation conditions. Then the method was adapted and transferred to preparative-scale SFC on a 5 μm-particles Torus 2-PIC stationary phase (150 x 30 mm). The method was modified to comprise an isocratic step followed by a gradient, favoring peak shape of the last eluting compound and minimal volume of collected fractions. Batch injections in gradient mode were carried out to purify six grams of crude product.

摘要

采用胁迫降解(氧化)方法,对大分子量(约 900g/mol)的原料药(API)进行代谢物生产。需要开发一种分析色谱方法,以比较不同降解方法产生的产物;同时需要多克规模的制备色谱方法,以纯化生成的代谢物。由于没有其他色谱方法能够实现 API 和代谢物(两种异构单氧化物和一种二氧化物)的分离,因此选择超临界流体色谱(SFC)用于这两个任务。首先,采用超高效超临界流体色谱(UHPSFC)开发了分析规模的方法。选择包含亚 2μm 全多孔颗粒或亚 3μm 表面多孔颗粒的手性固定相和包含 3μm 和 5μm 全多孔颗粒的手性固定相,进行梯度洗脱(含添加剂的二氧化碳-甲醇)的初步筛选。提供最有希望结果的固定相是 ACQUITY Torus 2-PIC(100x3mm,1.7μm,Waters)。采用中心复合设计(CCD)优化梯度程序和柱温。最终梯度条件如下:3.8min 内从 50-70%甲醇,柱温设定为 36°C,背压设定为 11MPa,流速设定为 0.8mL/min。优化方法用于分析不同降解条件下获得的样品。然后将方法进行了调整和转化,应用于 5μm 颗粒 Torus 2-PIC 固定相(150x30mm)的制备规模 SFC。方法进行了修改,包含等度步骤和梯度步骤,有利于最后洗脱化合物的峰形和收集的馏分的最小体积。采用梯度模式进行批进样,以纯化六克粗产物。

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