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菊粉的机械化学解聚

Mechanochemical depolymerization of inulin.

作者信息

Xing Haoran, Yaylayan Varoujan A

机构信息

Department of Food Science and Agricultural Chemistry, Macdonald Campus, McGill University, Montreal, Canada.

Department of Food Science and Agricultural Chemistry, Macdonald Campus, McGill University, Montreal, Canada.

出版信息

Carbohydr Res. 2018 May 2;460:14-18. doi: 10.1016/j.carres.2018.02.009. Epub 2018 Feb 19.

Abstract

Although chemical reactions driven by mechanical force is emerging as a promising tool in the field of physical sciences, its applications in the area of food sciences are not reported. In this paper, we propose ball milling as an efficient tool for the controlled generation of fructooligosaccharide (FOS) mixtures from inulin with a degree of polymerization (dp) ranging between 4 and 7. The addition of catalytic amounts of AlCl together with ball milling (30 min, at 30 Hz) generated mixtures rich in dehydrated disaccharides such as di-D-fructose dianhydrides. Based on anion exchange chromatography in conjunction with ESI/qTOF/MS/MS analysis, catalysis increased the overall content of mono-, di-, and tri-saccharides by around 30 fold compared to un-catalyzed milling. In addition, dialysis results of the untreated and treated samples have indicated that under catalysis the percent of depolymerization (dp < 12) reached 73.4% from the starting value of 27.6% in the untreated sample. Both processes resulted in mixtures of prebiotic value. The use of mechanical energy may be suitable for a fast, cost-efficient and green conversion of inulin to value-added food ingredients.

摘要

尽管由机械力驱动的化学反应正在成为物理科学领域一种很有前景的工具,但其在食品科学领域的应用尚未见报道。在本文中,我们提出球磨法是一种从菊粉可控生成聚合度(dp)在4至7之间的低聚果糖(FOS)混合物的有效方法。添加催化量的AlCl并结合球磨(30分钟,30赫兹)可生成富含脱水二糖(如二 - D - 果糖二酐)的混合物。基于阴离子交换色谱结合ESI/qTOF/MS/MS分析,与未催化研磨相比,催化作用使单糖、二糖和三糖的总含量提高了约30倍。此外,未处理和处理后样品的透析结果表明,在催化作用下,解聚百分比(dp < 12)从未处理样品的27.6%达到了73.4%。这两个过程都产生了具有益生元价值的混合物。机械能的利用可能适用于将菊粉快速、经济高效且绿色地转化为增值食品成分。

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