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Optimization of subcritical water extraction of polysaccharides from Grifola frondosa using response surface methodology

机译:响应面法优化灰果多糖的亚临界水提取

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Background:This research is among the few that has been conducted on the feasibility of subcritical water extraction (SWE) as a rapid and efficient extraction tool for polysaccharides.Objective:The aim of the study was to extractand optimize the parameter conditions of SWE of polysaccharides from Grifola frondosa using response surface methodology.Materials and Methods:In the study, SWEwas applied to extractbioactive compounds from G. frondosa. A preliminary analysis was made on the physical properties and content determination of extracts using SWE and hot water extraction (HWE). Analysis of the sample residues and antioxidant activities of the polysaccharides extracted by SWE and HWE were then evaluated.Results:The optimal extraction conditions include: extraction temperature of 210°C, extraction time of 43.65 min and the ratio of water to raw material of 26.15:1. Under these optimal conditions, the experimental yield of the polysaccharides (25.1 ± 0.3%) corresponded with the mean value predicted by the model and two times more than the mean value obtained by the traditional HWE. The antioxidant activities of polysaccharides extracted by SWE were generally higher than those extracted by HWE. From the study, the SWE technology could be a time-saving, high yield, and bioactive technique for production of polysaccharides.
机译:背景:本研究是针对亚临界水提取(SWE)作为一种快速,高效的多糖提取工具的可行性进行的研究之一。目的:本研究的目的是提取和优化多糖SWE的参数条件材料和方法:在这项研究中,SWE被用于从格里弗氏菌中提取生物活性化合物。对使用SWE和热水提取(HWE)的提取物的物理性质和含量测定进行了初步分析。结果表明:最佳提取条件为:提取温度为210℃,提取时间为43.65 min,水/原料比为26.15,最佳提取条件为: :1。在这些最佳条件下,多糖的实验产率(25.1±0.3%)与模型预测的平均值相对应,是传统HWE获得的平均值的两倍以上。 SWE提取的多糖的抗氧化活性通常高于HWE提取的多糖。根据这项研究,SWE技术可能是一种省时,高产且具有生物活性的多糖生产技术。

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