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Development and evaluation of methods for starch dissolution using asymmetrical flow field-flow fractionation. Part I: Dissolution of amylopectin

机译:使用非对称流场-流分馏法溶解淀粉的方法的开发和评估。第一部分:支链淀粉的溶解

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We have investigated methods of starch dissolution with the aim of finding an optimum method to completely dissolve starch granules to form a molecularly dissolved starch solution without degradation of the polymers. Glycogen was used as a model molecule for amylopectin, to identify the dissolution conditions under which the degradation of the polymers was limited or not present. Dissolution was performed in water with temperatures up to 200 A degrees C, facilitated by the use of heating in an autoclave or a microwave oven, or in dimethyl sulfoxide (DMSO) at 100 A degrees C. Waxy maize starch was chosen due to its high content of amylopectin and very low content of amylose. The degree of starch dissolution under different conditions was determined enzymatically. The effect of different dissolution conditions on the molar mass and root-mean-square radius of the polymers was determined with asymmetrical flow field-flow fractionation coupled to multi-angle light scattering and differential refractive index (AF4-MALS-dRI) detectors under aqueous conditions. The results suggest that reliable and accurate size separation and characterization of amylopectin can be obtained by dissolution of starch granules in an aqueous environment at 140 A degrees C by autoclaving or in DMSO at 100 A degrees C. The results also clearly show an upper limit for heat treatment of starch, above which degradation cannot be avoided.
机译:我们已经研究了淀粉溶解的方法,目的是找到一种完全溶解淀粉颗粒以形成分子溶解的淀粉溶液而不会使聚合物降解的最佳方法。糖原被用作支链淀粉的模型分子,以鉴定限制或不存在聚合物降解的溶解条件。溶解在温度高达200 A的水中进行,可通过在高压釜或微波炉中加热或在100 A的二甲基亚砜(DMSO)中加热来实现。支链淀粉的含量和直链淀粉的含量非常低。酶测定淀粉在不同条件下的溶解度。通过不对称流场-流分离与多角度光散射和微分折射率(AF4-MALS-dRI)检测器耦合,确定了不同溶解条件对聚合物的摩尔质量和均方根半径的影响条件。结果表明,通过将淀粉颗粒在140 A摄氏度的水性环境中通过高压灭菌或在DMSO中在100 A摄氏度的条件下溶解,可以可靠而准确地分离和表征支链淀粉的大小。结果也清楚地表明了其上限淀粉的热处理,在此之上无法避免降解。

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