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Time-Resolved Regulation of Soymilk Matrices by Seed Germination: Linking Gastrointestinal Fate to Controlled
Yaqiong Wang1, Shufang Wang1, Shijie Fang1
1Sanya Institute of Nanjing Agricultural University, Whole Grain Food Engineering Research Center, College of Food Science and Technology, Nanjing Agricultural University, Nanjing, Jiangsu 210095, China.
None:
Germination alters the nutrient matrix of soymilk, yet its digestion-related impacts remain unclear. Here, soymilk prepared from soybean seeds germinated for 0, 1, 2, and 3 days was heated and evaluated using a dynamic in vitro gastrointestinal model combined with rheology, particle/interaction analysis, and LC-MS/MS peptidomics. Increasing the level of germination strengthened the matrix, reduced the protein solubility, and enlarged particles, creating a more viscous system. During digestion, moderate germination (1-2 days) accelerated early proteolysis and enhanced intestinal peptide release and the diversity/abundance of several bioactive peptides, whereas extensive germination (3 days) produced excessive viscosity, delayed gastric protein breakdown, caused burst-type intestinal peptide release, and reduced detectable peptides. Peptidomics further identified the β-conglycinin α-subunit as the most digestion-variable protein, whose cleavage shifted from loops/terminal helices (1-2 days) to depletion of resistant β-strands at 3 days. These findings define a practical germination time for optimizing the soymilk matrix and functional outcomes.
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