支链淀粉
直链淀粉
淀粉
结晶度
化学
玉米淀粉
水解
食品科学
酶水解
消化(炼金术)
微晶
酶
生物化学
抗性淀粉
色谱法
结晶学
作者
Anju Teng,Torsten Witt,Kai Wang,Ming Li,Jovin Hasjim
标识
DOI:10.1016/j.carbpol.2015.11.062
摘要
The objective of the present study is to understand the changes in starch structures during digestion and the structures contributing to slow digestion properties. The molecular, crystalline, and granular structures of native waxy maize, normal maize, high-amylose maize, and normal potato starch granules were monitored using SEC, XRD, DSC, and SEM. The amylose and amylopectin molecules of all four starches were hydrolyzed to smaller dextrins, with some having linear molecular structure. Neither the A- nor B-type crystallinity was resistant to enzyme hydrolysis. Starch crystallites with melting temperature above 120°C appeared in waxy and normal maize starches after digestion, suggesting that the linear dextrins retrograded into thermally stable crystalline structure. These crystallites were also observed for high-amylose maize starch before and after digestion, contributing to its low enzyme digestibility. On the contrary, the enzyme-resistant granular structure of native normal potato starch was responsible for its low susceptibility to enzyme hydrolysis.
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