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Oxidation of Polysaccharides by Galactose Oxidase

机译:半乳糖氧化酶氧化多糖

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Galactose oxidase was used as a catalyst to oxidize selectively the C-6 hydroxyls of terminal galactose to carbonyl groups. The polysaccharides studied included spruce galactoglucomannan, guar galactomannan, larch arabinogalactan, corn fiber arabinoxylan, and tamarind seed xyloglucan, with terminal galactose contents varying from 6% to 40%. A multienzyme system was used, with catalase and horseradish peroxidase to enhance the action of galactose oxidase. An analysis technique was developed for the quantification of the reactive aldehydes with GC-MS, utilizing NaBD4 reduction and acidic methanolysis. The best oxidation degrees of terminal galactosyls were obtained with xyloglucan (85% of galactose) and spruce galactoglucomannan (65% of galactose). The highest oxidation degree based on total carbohydrates was achieved with guar gum (28%), which had the highest galactose content. The oxidation resulted in changes in the physicochemical properties of the polysaccharide solutions, and the changes observed varied between the polysaccharides. The clearest change was in tamarind xyloglucan, which formed a gel after the oxidation. After the oxidation, larger particles were present in the solution of spruce galactoglucomannan, but changes in its rheological properties were not observed.
机译:半乳糖氧化酶被用作催化剂以选择性地将末端半乳糖的C-6羟基氧化为羰基。研究的多糖包括云杉半乳葡甘露聚糖,瓜尔豆半乳甘露聚糖,落叶松阿拉伯半乳聚糖,玉米纤维阿拉伯木聚糖和罗望子种子木葡聚糖,其末端半乳糖含量为6%至40%。使用了一种具有过氧化氢酶和辣根过氧化物酶的多酶系统,以增强半乳糖氧化酶的作用。开发了一种分析技术,用于利用NaBD4还原和酸性甲醇分解通过GC-MS定量分析反应性醛。用木葡聚糖(半乳糖的85%)和云杉半乳葡甘露聚糖(半乳糖的65%)获得末端半乳糖基的最佳氧化度。以半乳糖含量最高的瓜尔豆胶(28%)达到了基于总碳水化合物的最高氧化度。氧化导致多糖溶液的理化性质变化,并且观察到的变化在多糖之间变化。最明显的变化是罗望子木葡聚糖,其在氧化后形成凝胶。氧化后,云杉半乳葡甘露聚糖溶液中存在较大的颗粒,但未观察到其流变性的变化。

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