Different multi-scale structural features of oat resistant starch prepared by ultrasound combined enzymatic hydrolysis affect its digestive properties
Jian‐Chuan Xia, Yu Zhang, Kai Huang, Hongwei Cao, Qiqi Sun, Man Wang +3 more
Ultrasonics Sonochemistry
Abstract
In this research, oat resistant starch (ORS) was prepared by autoclaving-retrogradation cycle (ORS-A), enzymatic hydrolysis (ORS-B), and ultrasound combined enzymatic hydrolysis (ORS-C). Differences in their structural features, physicochemical properties and digestive properties were studied. Results of particle size distribution, XRD, DSC, FTIR, SEM and in vitro digestion showed that ORS-C was a B + C-crystal, and ORS-C had a larger particle size, the smallest span value, the highest relative crystallinity, the most ordered and stable double helix structure, the roughest surface shape and strongest digestion resistance compared to ORS-A and ORS-B. Correlation analysis revealed that the digestion resistance of ORS-C was strongly positively correlated with RS content, amylose content, relative crystallinity and absorption peak intensity ratio of 1047/1022 cm<sup>-1</sup> (R<sub>1047/1022</sub>), and weakly positively correlated with average particle size. These results provided theoretical support for the application of ORS-C with strong digestion resistance prepared by ultrasound combined enzymatic hydrolysis in the low GI food application.
Extracted Claims
9 claims extracted from this paper into the knowledge graph
oat resistant starch (ORS-C) has strongest digestion resistance
“ORS-C had the strongest digestion resistance”
oat resistant starch (ORS-C) has larger particle size
“ORS-C had a larger particle size”
oat resistant starch (ORS-C) has most ordered and stable double helix structure
“ORS-C had the most ordered and stable double helix structure”