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通过高效阴离子交换色谱-脉冲安培检测和尺寸排阻色谱-多角度光散射-折射率检测对糊精进行表征。

Dextrin characterization by high-performance anion-exchange chromatography--pulsed amperometric detection and size-exclusion chromatography--multi-angle light scattering--refractive index detection.

作者信息

White D Richard, Hudson Patricia, Adamson Julie T

机构信息

Procter and Gamble Company, Snacks and Beverage Analytical and Microbiology Department, Winton Hill Technical Center, 6210 Center Hill Avenue, Cincinnati, OH 45224, USA.

出版信息

J Chromatogr A. 2003 May 16;997(1-2):79-85. doi: 10.1016/s0021-9673(03)00626-5.

Abstract

Starch hydrolysis products, or dextrins, are widely used throughout the food industry for their functional properties. Dextrins are saccharide polymers linked primarily by alpha-(1 --> 4) D-glucose units and are prepared by partial hydrolysis of starch. Hydrolysis can be accomplished by the use of acid, enzymes, or by a combination of both. The hydrolysis products are typically characterized by the "dextrose equivalent" (DE), which refers to the total reducing power of all sugars present relative to glucose. While the DE gives the supplier and buyer a rough guide to the bulk properties of the material, the physiochemical properties of dextrins are dependent on the overall oligosaccharide profile. High-performance anion-exchange chromatography (HPAEC) with pulsed amperometric detection and size-exclusion chromatography (SEC) with multi-angle light-scattering and refractive index detection were used to characterize dextrins from commercial sources. HPAEC was used to acquire the oligosaccharide profile, and SEC to obtain an overall molar mass distribution. These methods in combination extended our understanding of the relationship between oligosaccharide profile, DE, and the hydrolysis process. Data from the two techniques enabled a method for estimating the DE that gave results in reasonable agreement with the accepted titration method.

摘要

淀粉水解产物,即糊精,因其功能特性而在整个食品工业中广泛使用。糊精是主要由α-(1→4) D-葡萄糖单元连接的糖类聚合物,通过淀粉的部分水解制备。水解可以通过使用酸、酶或两者结合来完成。水解产物通常用“葡萄糖当量”(DE)来表征,它指的是所有存在的糖相对于葡萄糖的总还原能力。虽然DE为供应商和买家提供了该材料整体性质的大致指导,但糊精的物理化学性质取决于整体寡糖谱。采用带脉冲安培检测的高效阴离子交换色谱(HPAEC)和带多角度光散射及折射率检测的尺寸排阻色谱(SEC)来表征来自商业来源的糊精。HPAEC用于获取寡糖谱,SEC用于获得整体摩尔质量分布。这两种方法结合起来扩展了我们对寡糖谱、DE和水解过程之间关系的理解。来自这两种技术的数据实现了一种估算DE的方法,其结果与公认的滴定法相当一致。

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