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首页> 外文期刊>Analytical methods >Characterization of sample preparation of Prozac~R capsules using enhanced fluidity liquid extraction
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Characterization of sample preparation of Prozac~R capsules using enhanced fluidity liquid extraction

机译:使用增强流动性的液体萃取表征Prozac〜R胶囊的样品制备

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摘要

Enhanced Fluidity Liquid Extraction (EFLE) using carbon dioxide-methanol mixtures as the mobile phase is explored for its ability to extract Fluoxetine-Hydrochloride, the active pharmaceutical ingredient in Prozac~R capsules. Optimum conditions for extracting the pure compound were found using a 50% carbon dioxide-50% methanol mobile phase. Co-extraction and/or interference from common excipients such as starch, lactose, and micro-crystalline cellulose was not observed. However, mannitol excipient was found to significantly reduce the EFLE extraction efficiency of Fluoxetine-Hydrochloride. Employing an extraction temperature of 80 °C, a pressure of 375 atm, and a flow rate of 3.5 mL min~(-1), produced an extraction recovery of Fluoxetine-Hydrochloride from Prozac~R capsules of 99 ± 2% in just 3 minutes using only about 5 mL of total methanol. When a static modifier mode was employed under similar conditions, it was found that only 400 uL of methanol added to the vessel prior to extraction with pure carbon dioxide resulted in a Fluoxetine-Hydrochloride recovery of 98 ± 8% after only 5 minutes. In contrast to EFLE results, Fluoxetine-Hydrochloride extractions performed using pure room temperature methanol were 3 to 5 times longer and produced extracts that contained significant amounts of starch excipient that was also co-extracted from the Prozac~R capsules. These findings indicate that EFLE may be a useful alternative sample preparation method for Fluoxetine-Hydrochloride, and possibly other pharmaceuticals, that can greatly reduce time and solvent usage in the process.
机译:探索了使用二氧化碳-甲醇混合物作为流动相的增强流动性液体萃取(EFLE)的能力,因为它具有萃取Prozac〜R胶囊中的活性药物成分氟西汀-盐酸的能力。使用50%的二氧化碳-50%的甲醇流动相可以找到提取纯化合物的最佳条件。没有观察到与普通辅料如淀粉,乳糖和微晶纤维素的共提取和/或干扰。然而,发现甘露醇赋形剂显着降低了氟西汀-盐酸的EFLE提取效率。采用80°C的提取温度,375 atm的压力和3.5 mL min〜(-1)的流速,仅用3次即可从Prozac〜R胶囊中回收99±2%的氟西汀-盐酸分钟仅使用约5 mL的总甲醇。当在类似条件下采用静态改性剂模式时,发现在用纯二氧化碳萃取之前,仅向容器中添加了400 uL甲醇,仅在5分钟后,氟西汀盐酸盐的回收率为98±8%。与EFLE结果相反,使用纯室温甲醇进行的氟西汀盐酸盐萃取时间要长3至5倍,并且所产生的萃取物中含有大量淀粉辅料,这些辅料也从Prozac〜R胶囊中共提取。这些发现表明,EFLE可能是氟西汀-盐酸以及其他药物的有用的替代样品前处理方法,可以大大减少过程中的时间和溶剂用量。

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