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Rapid preparation of functional polysaccharides from Pyropia yezoensis by microwave-assistant rapid enzyme digest system

机译:微波辅助快速酶解体系快速制备紫斑拟南芥功能性多糖

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摘要

This study describes a simple preparation of functional polysaccharides from Pyropia yezoensis using a microwave-assistant rapid enzyme digest system (MAREDS) with various carbohydrases, and evaluates their antioxidative effects. Polysaccharide hydrolysates were prepared using MAREDS under different hydrolytic conditions of the carbohydrases and microwave powers. Polysaccharides less than 10 kDa (Low molecular weight polysaccharides, LMWP, <= 10 kDa) were efficiently obtained using an ultrafiltration (molecular weight cut-off of 10 kDa). MAREDS increases AMG activation via an increased degree of hydrolysis; the best AMG hydrolysate was prepared using a 10:1 ratio of substrate to enzyme for 2 h in MAREDS with 400W. LMWP consisted of galactose (27.3%), glucose (64.5%), and mannose (8.3%) from the AMG hydrolysate had stronger antioxidant effects than the high molecular weight polysaccharides (>10 kDa). We rapidly prepared functional LMWPs by using MAREDS with carbohydrases, and suggest that LMWP might be potentially a valuable algal polysaccharide antioxidant. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究描述了使用具有多种糖酶的微波辅助快速酶消化系统(MAREDS),简单地从紫斑拟南芥中制备功能多糖的方法,并评估其抗氧化作用。使用MAREDS在糖水解酶和微波功率的不同水解条件下制备多糖水解物。使用超滤(截留分子量为10 kDa)可以有效地获得小于10 kDa的多糖(低分子量多糖,LMWP,<= 10 kDa)。 MAREDS通过提高水解度来提高AMG活化;最好的AMG​​水解产物是在400W的MAREDS中使用10:1的底物与酶的比例制备2小时。 LMWP由半乳糖(27.3%),葡萄糖(64.5%)和来自AMG水解产物的甘露糖(8.3%)组成,比高分子量多糖(> 10 kDa)具有更强的抗氧化作用。我们通过将MAREDS与糖酶一起使用快速制备了功能性LMWP,并建议LMWP可能是潜在的有价值的藻类多糖抗氧化剂。 (C)2016 Elsevier Ltd.保留所有权利。

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