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Continuous extraction optimization, molecular structures and antioxidant activities of polysaccharide from Gracilariopsis lemaneiformis using liquid-phase pulsed discharge

机译:采用液相脉冲放电从Gracilariopsis lemaneiformis的连续提取优化,分子结构和多糖的抗氧化活性

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The optimization of continuous extraction, molecular structures and antioxidant activities of polysaccharide from Gracilariopsis lemaneiformis using liquid-phase pulsed discharge (LPD) were investigated and compared with maceration extraction (ME). The maximum polysaccharide yield of LPD (147.94 +/- 2.95 mg/g) was obtained with 79 min using the single-factor experiments under the optimum conditions: Electric-field strength of 80 kV/cm, ratio of water to solid of 40 mL/g and flow velocity of 14 mL/min, which was more than that of ME (140.19 +/- 1.23 mg/g) with 300 min. The structural characteristics of GLP(LPD) and GLP(ME) such as the carbohydrate, protein and sulfuric radical contents, monosaccharide composition, molecular weight, FT-IR spectra, NMR spectra were determined, and their antioxidant activities were also studied by the assay of scavenging ability of hydroxyl radical and DPPH radical. The results indicated that the structural characteristics of GLP were not affected by LPD and GLP(LPD) had the better antioxidant activities than GLP(ME). This study showed that LPD could be considered an alternative way to improve the yields of active ingredients and antioxidant activities of extracts.
机译:研究了使用液相脉冲放电(LPD)从Gracilariopsis Lemaneificis的连续提取,分子结构和抗氧化剂活性的优化,并与浸渍萃取(ME)进行比较。使用单因素实验在最佳条件下使用单因素实验(147.94 +/- 2.95mg / g)获得LPD的最大多糖产率:电场强度为80kV / cm,水与40ml的含量为固体/ g和14ml / min的流速,比我(140.19 +/- 1.23 mg / g)的300分钟。确定GLP(LPD)和GLP(ME)的结构特征,例如碳水化合物,蛋白质和硫酸含量,单糖组合物,分子量,FT-IR光谱,NMR光谱,并通过测定研究其抗氧化活性羟基自由基和DPPH激进的清除能力。结果表明,GLP的结构特征不受LPD和GLP(LPD)的影响,具有比GLP(ME)更好的抗氧化活性。该研究表明,LPD可以被认为是提高萃取症的活性成分和抗氧化活性的替代方法。

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