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Performance of Granular Starch with Controlled Pore Size during Hydrolysis with Digestive Enzymes

机译:用消化酶水解过程中粒状淀粉的性能

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摘要

Studies on porous starch have been directed to explore different industrial applications as bio-adsorbents of a variety of compounds. However, the analysis of starch digestibility is essential for food application. The objective of this study was to determine the impact of porous structure on in vitro starch digestibility. Porous starches were obtained using a range of concentrations of amyloglucosidase (AMG), alpha-amylase (AM), cyclodextrin-glycosyltransferase (CGTase) or branching enzyme (BE). Porous starches exhibited major content of digestible starch (DS) that increased with the intensity of the enzymatic treatment, and very low amount of resistant starch (RS). Porous starches behaved differently during in vitro hydrolysis depending on their enzymatic treatment. AMG was the unique treatment that increased the digestive amylolysis and estimated glycemic index, whereas AM, CGTase and BE reduced them. A significant relationship was found between the pore size and the severity of the amylolysis, suggesting that a specific pore size is required for the accessibility of the digestive amylase. Therefore, pore size in the starch surface was a limiting factor for digestion of starch granules.
机译:多孔淀粉的研究旨在探索其作为多种化合物的生物吸附剂的不同工业应用。然而,淀粉消化率的分析对于食品应用至关重要。本研究的目的是确定多孔结构对淀粉体外消化率的影响。多孔淀粉是通过一定浓度的淀粉糖苷酶(AMG)、α-淀粉酶(AM)、环糊精糖基转移酶(CGTase)或分支酶(BE)获得的。多孔淀粉的主要可消化淀粉(DS)含量随着酶处理强度的增加而增加,而抗性淀粉(RS)含量非常低。多孔淀粉在体外水解过程中表现不同,这取决于它们的酶处理。AMG是增加消化淀粉分解和估计血糖指数的独特治疗方法,而AM、CGTase和BE可以降低它们。在孔径和淀粉分解的严重程度之间发现了显著的关系,这表明消化淀粉酶的可及性需要特定的孔径。因此,淀粉表面的孔径是淀粉颗粒消化的限制因素。

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