Fortification of milk-based yogurt with protein hydrolysates from brewers' spent grain: Evaluation on microstructural properties, lactic acid bacteria profile, lactic acid forming capability and its physical behavior

Current study aimed to evaluate the utilization of protein from brewers' spent grain (BSGP) on microstructural formation as well as rheological behavior, acidity and lactic acid bacteria (LAB) profile during the refrigerated storage. Three different BSGPs were provided including BSGP-C (extract...

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Veröffentlicht in:Current research in food science 2022-01, Vol.5, p.1955-1964
Hauptverfasser: Naibaho, Joncer, Jonuzi, Emir, Butula, Nika, Korzeniowska, Małgorzata, Föste, Maike, Sinamo, Karina Nola, Chodaczek, Grzegorz, Yang, Baoru
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Sprache:eng
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Zusammenfassung:Current study aimed to evaluate the utilization of protein from brewers' spent grain (BSGP) on microstructural formation as well as rheological behavior, acidity and lactic acid bacteria (LAB) profile during the refrigerated storage. Three different BSGPs were provided including BSGP-C (extracted without enzymatic hydrolysis), BSGP-P (with protease), and BSGP-PF (with protease co-incubated with flavourzyme). The results demonstrated that BSGPs improved lactic acid forming capability in yogurt production to a higher level than milk-protein based enrichment. BSGPs improved the growth and survival of lactic acid bacteria (LAB), particularly BSGP-P in improving the survival rate of L. bulgaricus. Confocal laser scanning microscopy showed that BSGP-P generated a denser, softer and more homogenous surface appearance as well as showed the tendency to form more compact networks; had a weaker initial gel forming, increased and preserved the consistency of the yogurt during the storage. In conclusion, BSGPs in yogurt improved and preserved the textural properties, consistency, acidity and lactic acid bacteria. [Display omitted] •Protease-extracted preserve the flow behavior of yogurt•Protease-extracted soften the microstructural surface of the matrices•BSG protein-rich extracts improve the survival of lactic acid bacteria
ISSN:2665-9271
2665-9271
DOI:10.1016/j.crfs.2022.10.016