Improving the Functionality of Lentil–Casein Protein Complexes through Structural Interactions and Water Kefir-Assisted Fermentation

dc.contributor.authorAlrosan, Mohammad
dc.contributor.authorTan,Thuan-Chew
dc.contributor.authorMat Easa,Azhar
dc.contributor.authorH. Alu’datt,Muhammad
dc.contributor.authorC. Tranchant,Carole
dc.contributor.authorMadi Almajwal,Ali
dc.contributor.authorGammoh,Sana
dc.contributor.authorMaghaydah,Sofyan
dc.contributor.authorAli Dheyab,Mohammed
dc.contributor.authorS. Jameel,Mahmood
dc.contributor.authorAl-Qaisi,Ali
dc.date.accessioned2024-05-06T07:43:19Z
dc.date.available2024-05-06T07:43:19Z
dc.date.issued2023-02-20
dc.description.abstractHighly nutritious lentil proteins (LP) have recently attracted interest in the food industry. However, due to their low solubility, extensive application of LP is severely limited. This study describes a new and successful method for overcoming this challenge by improving the nutritional–functional properties of LP, particularly their solubility and protein quality. By combining protein complexation with water kefir-assisted fermentation, the water solubility of native LP (~58%) increases to over 86% upon the formation of lentil–casein protein complexes (LCPC). Meanwhile, the surface charge increases to over −40 mV, accompanied by alterations in secondary and tertiary structures, as shown by Fourier-transform infrared and UV-vis spectra, respectively. In addition, subjecting the novel LCPC to fermentation increases the protein digestibility from 76% to over 86%, due to the reduction in micronutrients that have some degree of restriction with respect to protein digestibility. This approach could be an effective and practical way of altering plant-based proteins. Keywords: Casein proteins Ientil proteins Structural interaction Protein quality Solubility
dc.identifier.citationAlrosan, Mohammad, et al. "Improving the functionality of lentil–casein protein complexes through structural interactions and water kefir-assisted fermentation." Fermentation 9.2 (2023): 194.
dc.identifier.doihttps://doi.org/10.3390/fermentation9020194
dc.identifier.urihttps://dspace.adu.ac.ae/handle/1/5262
dc.language.isoen
dc.publisherMDPI
dc.titleImproving the Functionality of Lentil–Casein Protein Complexes through Structural Interactions and Water Kefir-Assisted Fermentation
dc.typeArticle

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