Effects of flour storage and heat generated during milling on starch, dietary fibre and polyphenols in stoneground flours from two durum-type wheats
Autor: | Alessandro Di Loreto, Robert Quinn, Valeria Bregola, Giovanni Dinelli, Sara Bosi, Andrea Gianotti, Ilaria Marotti, Raffaella Di Silvestro |
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Přispěvatelé: | Raffaella Di Silvestro, Alessandro Di Loreto, Ilaria Marotti, Sara Bosi, Valeria Bregola, Andrea Gianotti, Robert Quinn, Giovanni Dinelli |
Rok vydání: | 2014 |
Předmět: |
KAMUT
food.ingredient Starch dietary fibre Dietary fibre FLAVONOIDS food and beverages stone milling Industrial and Manufacturing Engineering chemistry.chemical_compound Glycaemic index POLYPHENOLS food milling damage chemistry Functional food Polyphenol Amylose durum flour storage STARCH Food science Resistant starch Production chain Food Science |
Zdroj: | International Journal of Food Science & Technology. 49:2230-2236 |
ISSN: | 0950-5423 |
Popis: | Summary In the perspective of cereal-based functional food development, the research compared stone watermill and stone mill which differed in the heating generated during grinding (30 and 60 °C) and the effects of storage on the preservation of phytochemicals. After 6-month storage of flour, a decrease in soluble dietary fibre (loss of 1.9–2.5 g 100 g−1) and bound polyphenols (loss of 6.2–8.5%) was observed, while other wheat grain components remained unvaried. Comparing the milling techniques, stoneground wheat grains (60 °C) showed the highest amylose (34.7–36.9% of total starch) and resistant starch amounts (0.85–1.16% of total starch), which could be of interest for lowering Glycaemic Index. Stoneground KAMUT® starch had higher tendency to be converted into resistant starch and it also showed the higher degree of starch damage, as compared to the durum wheat variety Claudio. The study provided suggestions for modulating the production chain with the aim of supplying added value to wheat-based products. |
Databáze: | OpenAIRE |
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