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Chromatographic Separation of Isomaltooligosaccharides on Ion-Exchange Resins: Effect of the Cationic Form

机译:异麦芽低聚糖在离子交换树脂上的色谱分离:阳离子形式的影响

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摘要

Prebiotic isomaltooligosaccharides (IMOs) are composed of α-D-glucose units linked by glucosidic α (1?6) bonds and they remain intact until reaching the large bowels, where they are metabolized by bifidobacteria and lactobacillus. These saccharides can also be synthesized enzymatically, wherein the reaction media is composed of monosaccharides (glucose and fructose), disaccharides (sucrose and maltose), IMOs (the product of interest) and dextrans. Dextrans are readily separated by solvent precipitation; however, continuous chromatographic separation (simulated moving bed or SMB) should be an interesting option for the enrichment and purification of IMOs from mono-and disaccharides. The objective of the present work was to measure fundamental adsorption data of IMOs, mono-and disaccharides in preparative columns packed with ion-exchange resin of different cationic forms (K~+, Ca~+, H~+ and Na~+), so as to verify the influence of the cation on the selectivity and capacity. Ion exchange in H~+ form showed the best performance in terms of selectivity between maltose and maltotriose, but the resin in the K~+ form had superior adsorption capacities. Additionally, on the basis of equilibrium theory, optimal SMB operating conditions for resin H~+ will yield the highest productivity as compared with the other cationic forms.
机译:益生元异麦芽低聚糖(IMOs)由通过糖苷α(1?6)键连接的α-D-葡萄糖单元组成,它们保持完整直至到达大肠,在那里它们被双歧杆菌和乳酸菌代谢。这些糖也可以通过酶合成,其中反应介质由单糖(葡萄糖和果糖),二糖(蔗糖和麦芽糖),IMO(目标产物)和右旋糖酐组成。葡聚糖很容易通过溶剂沉淀分离。但是,连续色谱分离(模拟移动床或SMB)应该是从单糖和双糖中富集和纯化IMO的有趣选择。本工作的目的是测量填充有不同阳离子形式(K〜+,Ca〜+,H〜+和Na〜+)的离子交换树脂的制备柱中IMO,单糖和二糖的基本吸附数据,从而验证阳离子对选择性和容量的影响。就麦芽糖和麦芽三糖之间的选择性而言,H〜+形式的离子交换表现出最好的性能,但K〜+形式的树脂具有优异的吸附能力。另外,基于平衡理论,与其他阳离子形式相比,树脂H〜+的最佳SMB操作条件将产生最高的生产率。

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