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Effectiveness of Germination on Protein Hydrolysis as a Way To Reduce Adverse Reactions to Wheat.

Fatma BoukidBarbara PrandiSofie BuhlerStefano Sforza
Published in: Journal of agricultural and food chemistry (2017)
In this work, the aim is to study the effectiveness of germination on wheat protein degradation, with a specific focus on proteins involved in adverse reactions to wheat. The effects of 8 days of germination at 25 °C on the chemical composition and the protein profile were determined. Germination did not have a significant effect on starch, protein, lipid, and ash contents. General protein profile, as indicated by SDS-PAGE analysis, revealed that germination induced a relevant degradation in protein fraction. After in vitro gastrointestinal digestion, gluten peptides involved in celiac disease (CD) were identified and quantified using UPLC/ESI-MS technique. Also, CM3 protein, involved in baker's asthma and intestinal inflammation, was quantified by measuring a marker peptide. Statistical analysis underlined that germination and genotype had significant impact on the amount of both components. Regarding gluten peptides related to CD, germination enabled an average reduction of 47% in peptides eliciting adaptive immune response and 46% in peptides eliciting innate immune response. CM3 protein showed also a high average reduction (56%). Thus, this study suggests that germination might be a good bioalternative to provide a low "impact" raw ingredient for special wheat-based foodstuffs.
Keyphrases
  • immune response
  • amino acid
  • protein protein
  • celiac disease
  • systematic review
  • randomized controlled trial
  • binding protein
  • ms ms
  • multiple sclerosis
  • emergency department
  • dendritic cells
  • air pollution
  • drug induced