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Optimization of high pressure machine decocting process for Dachengqi Tang using HPLC fingerprints combined with the Box–Behnken experimental design

机译:HPLC指纹图谱与Box–Behnken实验设计相结合优化大成气汤高压机煎制工艺

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摘要

Using Dachengqi Tang (DCQT) as a model, high performance liquid chromatography (HPLC) fingerprints were applied to optimize machine extracting process with the Box–Behnken experimental design. HPLC fingerprints were carried out to investigate the chemical ingredients of DCQT; synthetic weighing method based on analytic hierarchy process (AHP) and criteria importance through intercriteria correlation (CRITIC) was performed to calculate synthetic scores of fingerprints; using the mark ingredients contents and synthetic scores as indicators, the Box–Behnken design was carried out to optimize the process parameters of machine decocting process under high pressure for DCQT. Results of optimal process showed that the herb materials were soaked for 45 min and extracted with 9 folds volume of water in the decocting machine under the temperature of 140 °C till the pressure arrived at 0.25 MPa; then hot decoction was excreted to soak Dahuang and Mangxiao for 5 min. Finally, obtained solutions were mixed, filtrated and packed. It concluded that HPLC fingerprints combined with the Box–Behnken experimental design could be used to optimize extracting process of traditional Chinese medicine (TCM).
机译:以大成奇汤(DCQT)为模型,采用Box–Behnken实验设计,采用高效液相色谱(HPLC)指纹图谱来优化机器提取工艺。用HPLC指纹图谱研究DCQT的化学成分。基于层次分析法(AHP)和标准间重要性相关度(CRITIC),进行了标准加权,计算出指纹的综合评分。以标记成分含量和综合评分为指标,进行了Box–Behnken设计,以优化DCQT在高压下的机器煎煮过程的工艺参数。最佳工艺结果表明,将药材浸泡45分钟,在煎锅中以140℃的温度用9倍体积的水提取至压力达到0.25 MPa;然后将热汤排泄,将大黄和芒霄浸泡5分钟。最后,将获得的溶液混合,过滤并包装。结论是,HPLC指纹图谱与Box-Behnken实验设计相结合可用于优化中药(TCM)的提取工艺。

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