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Development of a simultaneous extraction and acid hydrolysis process for recovery of paclitaxel from plant cell cultures

机译:同时提取和酸水解工艺从植物细胞培养物中回收紫杉醇的开发

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摘要

In this study, a microwave-assisted extraction (MAE)/acid hydrolysis simultaneous process was developed for recovering the anticancer agent paclitaxel from plant cell cultures of Taxus chinensis. The optimal pH of the extraction solution (90% aqueous methanol) for hydrolysis was 2.2 at fixed extraction time (6 min), ratio of extraction solution to biomass (1:1, v/w), and extraction temperature (40℃). In the MAE/acid hydrolysis simultaneous process, the paclitaxel recovery was 2.2-fold higher than in the existing extraction methods. Regarding changes in the content of glycoside (7-xylosyl paclitaxel as sugar-binding paclitaxel) and paclitaxel depending on the inclusion of acid hydrolysis in the MAE process, the content of 7-xylosyl paclitaxel decreased after acid hydrolysis whereas the content of paclitaxel increased. Based on this result, it was confirmed that acid hydrolysis breaks down a glycosidic bond of glvcoside (sugar-binding paclitaxel), and so the recovery of paclitaxel increases.
机译:在这项研究中,开发了一种微波辅助萃取/酸水解同时过程,用于从红豆杉植物细胞培养物中回收抗癌药紫杉醇。在固定的萃取时间(6分钟),萃取液与生物质的比例(1:1,v / w)和萃取温度(40℃)下,萃取液(90%甲醇水溶液)的最佳水解pH值为2.2。在MAE /酸水解同时过程中,紫杉醇的回收率比现有提取方法高2.2倍。关于MAE工艺中酸水解的包含,糖苷(7-二甲苯基紫杉醇为结合糖的紫杉醇)和紫杉醇的含量变化,酸水解后7-二甲苯基紫杉醇的含量降低,而紫杉醇的含量增加。根据该结果,确认了酸水解破坏了葡糖苷(糖结合的紫杉醇)的糖苷键,因此紫杉醇的回收率提高。

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