Rheological properties, multiscale structure, and in vitro digestibility of a maize starch–konjac glucomannan–bamboo leaf flavonoid complex modified by dynamic high-pressure microfluidization
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Elsevier BV
Reference37 articles.
1. Resistant starch formation through intrahelical V-complexes between polymeric proanthocyanidins and amylose;Amoako;Food Chemistry,2019
2. Structural changes and components’ interactions alter the digestion property of in-kernel starch from thermally processed Tibetan Qingke;Bai;Food Research International,2022
3. Pasting, paste, and gel properties of starch–hydrocolloid combinations;BeMiller;Carbohydrate Polymers,2011
4. Interaction between amylose and tea polyphenols modulates the postprandial glycemic response to high-amylose maize starch;Chai;Journal of Agricultural and Food Chemistry,2013
5. Molecular mechanisms underlying the formation of starch-lipid complexes during simulated food processing: A dynamic structural analysis;Chao;Carbohydrate Polymers,2020
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