Polysaccharides from Inonotus obliquus employing subcritical water extraction: Extraction optimization, physiochemical properties and bioactivities analysis

IF 5.6 1区 农林科学 Q1 AGRICULTURAL ENGINEERING
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Abstract

As one of the main components in Inonotus obliquus, polysaccharides was potentially to be developed for the special physiochemical properties and bioactivity. However, the low extraction efficiency of Inonotus obliquus polysaccharides (IOP) significantly hindered the in-depth research and development. To achieve a higher extraction yield of IOP, subcritical water was selected and optimized by Box-Behnken Design (BBD) with a more reasonable yield investigation method in the present study. In addition, for the comparative analysis, the physiochemical properties and bioactivity of the subcritical water extracted polysaccharides (IOP-S), purified polysaccharides (IOP-P) and hot water extracted polysaccharides (IOP-W) were all investigated and analyzed. The results showed that the optimal extraction conditions were 200°C, 13.24 min and 30:1 (mL/g), which corresponded to a polysaccharide yield of 14.14±0.17 %. With simple purified process, the IOP-P with high purity (total sugar content of 87.55 %) was suitable for the further study. Compared to IOP-W, a wider molecular weight range (3.4–98 kDa) of polysaccharide was found in IOP-S, as well as higher sugar and polyphenol content, which might be the main reason for the well antioxidant and digestion enzyme inhibition activity. There were also various differences in the monosaccharide composition, micro-morphology and other physiochemical properties, which all suggested that the subcritical water could efficiently extract a special IOP for the fourthly study and development. In summary, the present study proved that subcritical water extraction could significantly improve the extraction efficiency of IOP, and the basic information in physiochemical properties and bioactivities of IOP would promote the development of IOP in the future.

Abstract Image

采用亚临界水萃取技术从伊诺藻中提取多糖:萃取优化、理化性质和生物活性分析
多糖是伊诺藻的主要成分之一,具有特殊的理化性质和生物活性,具有开发的潜力。然而,伊诺藻多糖(IOP)的提取效率较低,极大地阻碍了其深入研究和开发。为了获得更高的 IOP 提取率,本研究选择了亚临界水,并通过盒-贝肯设计(BBD)进行了优化,采用了更合理的产率调查方法。此外,为了进行比较分析,还对亚临界水提取多糖(IOP-S)、纯化多糖(IOP-P)和热水提取多糖(IOP-W)的理化性质和生物活性进行了研究和分析。结果表明,最佳提取条件为 200°C、13.24 分钟、30:1 (mL/g),多糖得率为 14.14±0.17%。通过简单的纯化过程,纯度较高(总糖含量为 87.55 %)的 IOP-P 适合进一步研究。与 IOP-W 相比,IOP-S 的多糖分子量范围更广(3.4-98 kDa),糖和多酚含量也更高,这可能是其抗氧化和抑制消化酶活性较好的主要原因。此外,IOP-S 的单糖组成、微观形态和其他理化性质也存在多种差异,这些都表明亚临界水可以高效提取出特殊的 IOP,用于第四次研究和开发。综上所述,本研究证明亚临界水萃取可显著提高 IOP 的萃取效率,而 IOP 的理化性质和生物活性等基础信息将促进未来 IOP 的发展。
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来源期刊
Industrial Crops and Products
Industrial Crops and Products 农林科学-农业工程
CiteScore
9.50
自引率
8.50%
发文量
1518
审稿时长
43 days
期刊介绍: Industrial Crops and Products is an International Journal publishing academic and industrial research on industrial (defined as non-food/non-feed) crops and products. Papers concern both crop-oriented and bio-based materials from crops-oriented research, and should be of interest to an international audience, hypothesis driven, and where comparisons are made statistics performed.
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