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浙麦冬须根多糖超声循环提取工艺优化及体外抗氧化活性研究

Optimization of Extraction Process and In Vitro Antioxidant Activity of Polysaccharides from Fibrous Roots of Ophiopogon japonicus

  • 摘要:
    目的 优化浙麦冬(Ophiopogon japonicus)须根多糖的超声循环提取工艺,评价其体外抗氧化活性,为浙麦冬须根多糖的高效提取及后续开发利用提供试验依据。
    方法 首先采用Plackett-Burman试验设计筛选影响浙麦冬须根多糖提取率的显著因素;然后通过响应面设计进一步优化显著因素,确定最佳提取工艺参数并验证;最后采用DPPH自由基和超氧阴离子清除试验,评价所得浙麦冬须根多糖体外抗氧化活性。
    结果 筛选出提取时间、液料比、提取次数为影响多糖得率最显著的3个因素;响应面优化确定最佳提取工艺为提取次数2次、提取时间39 min、料液比87 g·mL−1,此时多糖提取率为(39.89±0.23)%,与模型预测值无显著差异;浙麦冬须根多糖具有较好的DPPH自由基、超氧阴离子清除活性。
    结论 本实验优化得到浙麦冬须根多糖超声循环提取工艺,工艺稳定、提取率理想;所得浙麦冬须根多糖具有一定体外抗氧化活性,具备进一步开发潜力。

     

    Abstract:
    Objective This study aims to optimize the ultrasonic circulation extraction process of polysaccharides from the fibrous roots of Ophiopogon japonicus (Zhejiang origin) and evaluate their in vitro antioxidant activity, so as to provide an experimental basis for the efficient extraction and subsequent development and utilization of these polysaccharides.
    Method Plackett-Burman experimental design was adopted to screen factors affecting the extraction yield of polysaccharides from the fibrous roots of O. japonicus. Subsequently, response surface methodology was used to optimize the significant factors and determine the optimal extraction parameters and validate them; Finally, the in vitro antioxidant activity of the polysaccharides was evaluated using DPPH radical and superoxide anion scavenging assays.
    Result Three core significant factors were screened out: extraction time, liquid-solid mass ratio and extraction times. The optimal extraction process was as follows: extraction frequency of 2 times, extraction time of 39 min, and material-liquid ratio of 87 g·ML-1. Under these conditions, the extraction rate of polysaccharides was(39.89±0.23)%, which had no significant difference from the model predictions. At the concentration of 1 000 μg·mL-1, O. japonicus polysaccharides showed higher scavenging rates for DPPH free radicals and superoxide anions.
    Conclusion  Plackett-Burman experimental design combined with response surface methodology can effectively optimize the ultrasonic circulation extraction process of O. japonicus polysaccharides, with stable process and ideal extraction rate. The O. japonicus polysaccharides obtained have certain in vitro antioxidant activity and great potential for further development.

     

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