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Optimization of ultrasonic circulating extraction of polysaccharides from Asparagus officinalis using response surface methodology

机译:响应面法优化超声波法提取芦笋多糖的工艺

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摘要

Polysaccharides were extracted from Asparagus officinalis. A novel ultrasonic circulating extraction (UCE) technology was applied for the polysaccharide extraction. Three-factor-three-level Box-Behnken design was employed to optimize ultrasonic power, extraction time and the liquid-solid ratio to obtain a high polysaccharide yield. The optimal extraction conditions were as follows: ultrasonic power was 600W, extraction time was 46min, the liquid-solid ratio was 35mL/g. Under these conditions, the experimental yield of polysaccharides was 3.134%, which was agreed closely to the predicted value. The average molecular weight of A. officinalis polysaccharide was about 6.18×10~4Da. The polysaccharides were composed of glucose, fucose, arabinose, galactose and rhamnose in a ratio of 2.18:1.86:1.50:0.98:1.53. Compared with hot water extraction (HWE), UCE showed time-saving, higher yield and no influence on the structure of asparagus polysaccharides. The results indicated that ultrasonic circulating extraction technology could be an effective and advisable technique for the large scale production of plant polysaccharides.
机译:从芦笋中提取多糖。一种新型的超声循环萃取(UCE)技术被应用于多糖的提取。采用三因素三级Box-Behnken设计来优化超声功率,提取时间和液固比以获得高多糖收率。最佳提取条件为:超声功率为600W,提取时间为46min,液固比为35mL / g。在这些条件下,多糖的实验产率为3.134%,与预测值非常接近。山茱A多糖的平均分子量约为6.18×10〜4Da。多糖由葡萄糖,岩藻糖,阿拉伯糖,半乳糖和鼠李糖以2.18:1.86:1.50:0.98:1.53的比例组成。与热水提取(HWE)相比,UCE节省时间,产量更高,并且对芦笋多糖的结构没有影响。结果表明,超声循环萃取技术对于大规模生产植物多糖可能是一种有效而可取的技术。

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