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Optimization of Arabinoxylan Isolation from Rye Bran by Adapting Extraction Solvent and Use of Enzymes

机译:适应提取溶剂和酶的使用优化从黑麦麸中提取阿拉伯木聚糖

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摘要

Physicochemical and functional properties of arabinoxylans (AXs) can be significantly influenced by their isolation method. Finding balanced process conditions that allow optimal extraction yields while preserving AXs functionality is a challenge. The aim of this study was to determine the effect of different chemical solvents with neutral and alkaline pH on the intrinsic properties and extraction yield of AXs isolated from rye bran. Additionally, the application of xylanases and other cell wall degrading enzymes (Pentopan Mono BG, Deltazym XL‐VR, Viscoflow BG) to solubilize bound AXs was investigated. Results show that the use of Ca(OH)2 for isolation was superior to water and Na2CO3, as it selectively solubilized AXs and delivered isolates with a purity of up to 43.92% AX and a moderate ferulic acid (FA) content (209.35 ± 16.79 mg FA/100 g AX). Application of xylanases was further able to duplicate these achieved AX yields (7.50 to 9.85g AX/100 g bran). Additionally, isolates displayed highest ferulic acid contents (445.18 to 616.71 mg FA/100 g AX) and lowest impurities in comparison to chemical extracted AXs. Rheological characterization of the isolates showed a pronounced shear thinning behavior which fitted well to the power‐law model (R 2 > 0.989). Differences in pseudoplasticity of the isolates suggested that structural and chemical properties might have been responsible for this behavior.
机译:阿拉伯木聚糖(AXs)的理化和功能特性会受到其分离方法的显着影响。寻找平衡的工艺条件以实现最佳的萃取产量,同时保留AXs功能是一个挑战。这项研究的目的是确定具有中性和碱性pH值的不同化学溶剂对从黑麦麸中分离的AXs的固有特性和提取产率的影响。此外,还研究了木聚糖酶和其他细胞壁降解酶(Pentopan Mono BG,Deltazym XL-VR,Viscoflow BG)在溶解结合的AXs中的应用。结果表明,使用Ca(OH)2进行分离要优于水和Na2CO3,因为它可以选择性地溶解AXs,并提供纯度最高为43.92%AX和中等阿魏酸(FA)含量(209.35±16.79)的分离物。毫克FA / 100克AX)。木聚糖酶的应用还能够复制这些获得的AX产量(7.50至9.85g AX / 100g麸皮)。此外,与化学提取的AXs相比,分离物显示出最高的阿魏酸含量(445.18至616.71 mg FA / 100 g AX)和最低的杂质。分离物的流变学特性显示出明显的剪切稀化行为,非常适合幂律模型(R 2

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