Related Experiment Video
Updated: May 21, 2025

Rapid High Throughput Amylose Determination in Freeze Dried Potato Tuber Samples
Published on: October 14, 2013
Unveiling the multiscale structural dynamics and retrogradation behavior of potato starch via integrated enzymatic
Hongwei Cao1, Jing Tan2, Kai Huang1
1School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, PR China; National Grain Industry (Urban Grain and Oil Security) Technology Innovation Center, University of Shanghai for Science and Technology, Shanghai 200093, PR China.
Abstract:
This research investigated the physicochemical properties and retrogradation behaviors of mashed potato (MP) after treatment with microwave-assisted enzymatic hydrolysis (BHMW). The changes in starch's multi-scale structure and the underlying mechanisms were also elucidated. The introduction of microwave significantly enhanced the hydrolysis efficiency of potato starch and reduced amylose content, thereby decreasing both the storage modulus and loss modulus. Texture profile analysis indicated that the anti-retrogradation ability of MP improved by 5 % of BHMW, compared to the traditional water bath enzymatic hydrolysis (BHWB). During simulated reheating, Fourier-transform infrared spectroscopy, X-ray diffraction, particle size distribution analysis, and scanning electron microscopy revealed that the starch structure was more susceptible to disruption under microwave reheating conditions. Furthermore, enzymatic hydrolysis induced further degradation of starch's crystalline structure. In the retrogradation process, MP treated with BHWB exhibited a 2.17 % increase in crystallinity, a significant change corroborated by variations in retrogradation enthalpy measured via differential scanning calorimetry.

