Optimization of Polysaccharide Extraction from Polygonatum cyrtonema Hua by Freeze-Thaw Method Using Response Surface Methodology.

IF 4.2 2区 化学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecules Pub Date : 2024-10-14 DOI:10.3390/molecules29204879
Ziming Wang, Shushen Wu, Jiayi Wang, Ci Yang, Yang Wang, Zhan Hu, Wei Cai, Lianghong Liu
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Abstract

Polygonatum cyrtonema polysaccharides have a variety of pharmacological effects. The commonly used extraction methods include traditional hot water extraction, alkaline extraction, enzymatic hydrolysis method, ultrasonic-assisted extraction, etc., but there are problems such as low yield, high temperature, high cost, strict extraction conditions, and insufficient environmental protection. In this study, crude polysaccharide extraction from the Polygonatum cyrtonema Hua was performed using the freeze-thaw method. Response surface methodology (RSM), based on a three-level, three-variable Box-Behnken design (BBD), was employed to obtain the best possible combination of water-to-raw material ratio (A: 30-50), freezing time (B: 2-10 h), and thawing temperature (C: 40-60 °C) for maximum polysaccharide extraction. Using the multiple regression analysis and analysis of variance (ANOVA), the experimental data were fitted to a second-order polynomial equation and were used to generate the mathematical model of optimization experiments. The optimum extraction conditions were as follows: a water-to-raw material ratio of 36.95:1, a freezing time of 4.8 h, and a thawing temperature of 55.99 °C. Under the optimal extraction conditions, the extraction rate of Polygonatum cyrtonema Hua polysaccharide (PCP) was 65.76 ± 0.32%, which is well in close agreement with the value predicted by the model, 65.92%. In addition, PCP has significant antioxidant activity. This result shows that the freeze-thaw method can improve the extraction efficiency, maintain the structural integrity of polysaccharides, simplify the extraction process, promote the dispersion of polysaccharides, and is suitable for large-scale industrial production.

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响应面法优化冻融法提取何首乌多糖的过程
何首乌多糖具有多种药理作用。常用的提取方法有传统的热水提取法、碱提取法、酶水解法、超声波辅助提取法等,但存在产率低、温度高、成本高、提取条件严格、环保性不够等问题。本研究采用冻融法提取何首乌多糖。采用基于三水平三变量盒-贝肯设计(BBD)的响应面方法(RSM),以获得提取多糖的最佳水-原料比(A:30-50)、冷冻时间(B:2-10 h)和解冻温度(C:40-60 ℃)组合。利用多元回归分析和方差分析(ANOVA),将实验数据拟合成二阶多项式方程,并生成优化实验的数学模型。最佳提取条件如下:水与原料的比例为 36.95:1,冷冻时间为 4.8 小时,解冻温度为 55.99 ℃。在最佳提取条件下,何首乌花多糖(PCP)的提取率为 65.76 ± 0.32%,与模型预测值 65.92% 非常接近。此外,五氯苯酚还具有显著的抗氧化活性。这一结果表明,冻融法可以提高提取效率,保持多糖结构的完整性,简化提取工艺,促进多糖的分散,适合大规模工业化生产。
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来源期刊
Molecules
Molecules 化学-有机化学
CiteScore
7.40
自引率
8.70%
发文量
7524
审稿时长
1.4 months
期刊介绍: Molecules (ISSN 1420-3049, CODEN: MOLEFW) is an open access journal of synthetic organic chemistry and natural product chemistry. All articles are peer-reviewed and published continously upon acceptance. Molecules is published by MDPI, Basel, Switzerland. Our aim is to encourage chemists to publish as much as possible their experimental detail, particularly synthetic procedures and characterization information. There is no restriction on the length of the experimental section. In addition, availability of compound samples is published and considered as important information. Authors are encouraged to register or deposit their chemical samples through the non-profit international organization Molecular Diversity Preservation International (MDPI). Molecules has been launched in 1996 to preserve and exploit molecular diversity of both, chemical information and chemical substances.
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