响应面优化天山棱子芹活性成分提取工艺及其纯化工艺研究

Optimization of extraction process and purification process of active components from Pleurospermum lindleyanum by response surface methodology

  • 摘要:
    目的 优化天山棱子芹中活性成分的提取纯化工艺。
    方法 采用高效液相法测定天山棱子芹活性成分含量。通过静态和动态试验,考察树脂种类、上样浓度、上样流速、最大上样量、除杂水洗脱液体积、洗脱液浓度、洗脱液流速、洗脱液体积对天山棱子芹活性成分吸附和解吸性能的影响,确定最佳纯化工艺。
    结果 天山棱子芹活性成分最佳提取工艺为:乙醇浓度30%、料液比1∶8(g/mL)、提取时间2 h、提取次数2次,活性成分提取量达到58.60 mg/g。对比7种大孔吸附树脂发现,H103大孔吸附树脂纯化效果较好,最佳纯化条件为:以上样浓度2.5 mg/mL、流速1 BV/h、下上样6.35 BV、水洗除杂3.17 BV、80%乙醇、洗脱液流速3 BV/h、洗脱液体积2.54 BV。此条件下,天山棱子芹活性成分纯度达到40.03%,转移率为76.26%。
    结论 测定方法准确可靠,提取纯化工艺稳定合理,简便可行,能提高天山棱子芹活性成分的含量,可为提取纯化天山棱子芹活性成分奠定基础。

     

    Abstract:
    Objective To optimize the extraction and purification process of active components from in Pleurospermum lindleyanum.
    Methods HPLC method was used to determine the content of active ingredients in Pleurospermum lindleyanum. By conducting static and dynamic experiments, the effects of resin type, sample concentration, sample flow rate, maximum sample volume, elution water volume, eluent concentration, elution flow rate and elution volume were investigated to determine the optimal purification process.
    Results The results showed that the optimal extraction process for active ingredients of Pleurospermum lindleyanum was as follows: ethanol concentration of 30%, solid-liquid ratio of 1∶8 (g/mL), extraction time of 2 hours, and two extractions. The yield of active ingredients reached 58.60 mg/g. Among the 7 types of macroporous adsorption resins compared, H103 type showed better purification effect. The optimal purification conditions were as follows: sample concentration of 2.5 mg/mL, sample loading of 6.35 BV at a flow rate of 1 BV/h, washing with elution liquid volume of 3.17 BV, and eluting with elution liquid consisting of 80% ethanol at a flow rate of 3 BV/h for a volume of 2.54 BV. Under these conditions, the purity of active components in Pleurospermum lindleyanum reached 40.03%, with a transfer rate of 76.26%.
    Conclusion The measurement method is accurate and reliable. The study demonstrates that the extraction and purification process is stable, reasonable, and feasible in improving the content of active components in Pleurospermum lindleyanum, laying a foundation for further development and utilization.

     

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