共 24 条
- [11] MINEKUS M, ALMINGER M, ALVITO P, Et al., A standardised static in vitro digestion method suitable for food-an international consensus, Food & Function, 5, 6, pp. 1113-1124, (2014)
- [12] pp. 18-22, (2012)
- [13] pp. 7-8, (2014)
- [14] (2020)
- [15] pp. 125-126, (2020)
- [16] NINOMIYA K, YAMAGUCHI Y, SHINMACHI F, Et al., Suppression of postprandial blood glucose elevation by buckwheat (Fagpopyrum esculentum) albumin hydrolysate and identification of the peptide responsible to the function, Food Science and Human Wellness, 11, 4, pp. 992-998, (2022)
- [17] BOZKURT F, BEKIROGLU H, DOGAN K, Et al., Technological and bioactive properties of wheat glutenin hydrolysates prepared with various commercial proteases, LWT-Food Science and Technology, 149, (2021)
- [18] VILCACUNDO R, MARTINEZ V C, HERNANDEZ L B., Release of dipeptidyl peptidase IV, α-amylase and α-glucosidase inhibitory peptides from quinoa (Chenopodium quinoa Willd.) during in vitro simulated gastrointestinal digestion, Journal of Functional Foods, 35, pp. 531-539, (2017)
- [19] MUDGIL P, KAMAL H, KILARI B P, Et al., Simulated gastrointestinal digestion of camel and bovine casein hydrolysates: identification and characterization of novel anti-diabetic bioactive peptides, Food Chemistry, 353, 1, (2021)
- [20] MIRZAPOUR K A, GARCIA V M, EUN J B, Et al., Influence of enzymatic hydrolysis and molecular weight fractionation on the antioxidant and lipase/α-amylase inhibitory activities in vitro of watermelon seed protein hydrolysates, Molecules, 27, 22, (2022)