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Journal of the Science of Food and Agriculture· 2026Q1

Effect of sonication on European and Peruvian lupin flours: impact on the technological quality of gluten‐free breads and as a partial substitute for wheat

Emilia Kärkkäinen, Julio Mauricio Vidaurre-Ruiz, Jonas Ehren, Angeleth Pacheco et al.

Short summary

Sonication improved European lupin flour's water absorption, leading to better volume, texture, and moisture in gluten-free bread, while Peruvian lupin flour showed deterioration.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Sonication increased water absorption capacity of European lupin flour (L. angustifolius).
  • Gluten-free breads with sonicated European lupin flour showed improved volume, texture, and moisture retention.
  • Sonication negatively impacted the functional properties of Peruvian lupin flour (L. mutabilis).
  • In gluten-free formulations, lupin addition (especially sonicated European) improved cohesiveness, springiness, and moisture retention.
  • Sonication may modify protein aggregates and polysaccharide chains, affecting starch gelatinization and retrogradation.

AI-generated from the title and abstract; the full text is not read.

Abstract

BACKGROUND: A widely cultivated pulse, lupin, has garnered interest for its beneficial nutritional properties, especially for baking applications. The harmful alkaloid content and poor functional properties of lupin limit its wider use. Sonication is an ecofriendly technology used to modify molecular structures. Thus, this study aimed to investigate whether sonication can improve the functional properties of Lupinus mutabilis (Peruvian) and L. angustifolius (European) flours for a better baking suitability in wheat and gluten-free breads. Both flours were sonicated and analyzed for their functional properties using Fourier transform infrared spectroscopy, water and oil absorption capacities, Mixolab, Rapid Visco Analyzer and texture profile analysis, and were then baked into bread formulations, substituting for wheat flour at 20% (w/w) and gluten-free flour at 10% (w/w). RESULTS: Sonicated L. angustifolius showed an increased water absorption capacity compared to the raw flour, improving the volume, texture, and moisture retention of gluten-free bread. Sonicated L. mutabilis showed deterioration in those same categories. In wheat formulations, lupin addition reduced product quality due to dilution of the gluten network. In gluten-free formulations, lupin addition - particularly sonicated L. angustifolius - improved texture parameters such as cohesiveness, springiness, and moisture retention. Sonication possibly unraveled protein aggregates and broke polysaccharide chains, forming a gluten-like network. Sonication affected starch gelatinization and retrogradation, thereby altering syneresis and shelf life. CONCLUSION: Sonication seems a promising tool for improving the functionality of blue lupin in gluten-free bread but is rather species-specific. A deeper understanding of protein-level structural changes induced by sonication is essential to expand its application across food matrices. © 2026 The Author(s). Journal of the Science of Food and Agriculture published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

The authors' abstract, as published at the source. Journal of the Science of Food and Agriculture, 2026 · DOI ↗

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Field: Nutrition and Dietetics

Nutrition and DieteticsNursing