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Updated: Oct 5, 2026

Rapid High Throughput Amylose Determination in Freeze Dried Potato Tuber Samples
Published on: October 14, 2013
Lipid-mediated formation of amylose-lipid complexes in cold-stored mashed potatoes: Structural evidence and in vitro
Yiming Wang1, Yuwei Li1, Mengwei Yuan2
1Beijing Key Laboratory of Functional Food from Plant Resources, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China.
Abstract:
After gelatinization, amylose chains in starchy foods face two competing ordering pathways during cold storage: retrogradation-driven reassociation (RS3-type) and lipid-mediated inclusion complexation (RS5-type). This study examined whether mayonnaise-derived lipids modulate starch reassembly in mashed potatoes during storage. Mashed potatoes with or without mayonnaise (105 g potato: 24 g mayonnaise) were stored at 0 °C and 10 °C for up to 72 h. Starch structural evolution was characterized by X-ray diffraction, Fourier-transform infrared spectroscopy, and differential scanning calorimetry, while digestion behavior was evaluated using the INFOGEST 2.0 in vitro model. Storage alone promoted retrogradation-associated ordering in the control samples, particularly at 0 °C. Mayonnaise incorporation promoted the formation of B + V-type crystalline structures and thermally stable amylose-lipid complexes, indicating that lipid-mediated complexation supplemented the dominant retrogradation process with an additional RS5-type ordering pathway. Consistently, mayonnaise-containing samples exhibited lower rapidly digestible starch and higher resistant starch after storage, with the strongest effect observed in LCCT-M (over 59% RS). Overall, mayonnaise acted as a food-grade emulsion that diverted part of starch reorganization during cold storage from the dominant RS3-type retrogradation route toward RS5-type amylose-lipid complexation, offering a simple, mechanism-based strategy for designing slow-digesting starchy foods under cold-chain conditions.
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