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M. Malalgoda

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Review Open access Aug 2026

Sourdough fermentation as a modulator of nutritional quality in cereal-based baked products.

Sourdough fermentation, an ancient food bioprocessing technology, has attracted renewed attention for its positive impact on the nutritional profile and sensory attributes of leavened baked products. This process relies on the symbiotic activity between lactic acid bacteria and yeasts, which leads to acidification, proteolysis, enzyme activation, and metabolite synthesis, altering the dough and the final product. Growing consumer demand for healthy foods has prompted researchers and manufacturers to explore sourdough technology for the development of nutritious and functional baked goods with health benefits. This review provides a critical synthesis of current knowledge, with particular emphasis on linking fermentation mechanisms to nutritional outcomes and their relevance in modern food systems. Specifically, the multifaceted influence of sourdough technology on several macronutrients is explored. Previous research indicates that sourdough fermentation can lower the glycemic response, enhance protein digestibility, increase phenolic compounds, and improve mineral bioavailability. Despite these promising effects, the mechanistic basis underlying such nutritional improvements remains underexplored, particularly under controlled and industrial processing conditions. This review highlights key research gaps, including the scalability of sourdough production for nutritious food development and the specific fermentation mechanisms that promote human health. Variability in fermentation practices across artisanal and industrial settings further complicates the reproducibility of these effects. Addressing these gaps through supplemental research is essential both for consumers seeking healthy food options and for the food industry as it aims to innovate and meet market demands. © 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.

Reyna Stefanson, Sathsara T Deyalage, Sachini Senarathna et al. · 0 citations
Open access Jul 2026

Comparative Evaluation of Starch and Protein Characteristics in Ancient Wheat Species

Driven by increasing consumer demand for nutrient‐dense and more sustainable food options, ancient wheat species present a promising opportunity due to their environmental adaptability and perceived health benefits. Therefore, this study aims to evaluate the starch and protein characteristics of ancient wheat species, einkorn, emmer, and spelt, in comparison to common hexaploid wheat, providing insights into their functionality for potential food applications. Thermal behavior revealed that spelt exhibited the highest thermal stability with high transition temperatures. At the same time, emmer required less energy for gelatinization. Amylose% and amylopectin% showed no significant differences among these wheat species. Protein composition analysis indicated significant variations, mainly in gliadin and glutenin fractions, among common wheat and ancient wheat species. The SDS unextractable glutenin levels were significantly lower in ancient wheat compared to common wheat, suggesting that processing modifications may be required to optimize the use of ancient wheat in bakery applications. Specific physicochemical properties and functional characteristics of ancient grains need further studies and improvements to make such grains functional in bakery applications. The study evaluates the starch and proteins of ancient grains, which demonstrate significant differences compared to hexaploid bread wheat.

Sathsara T Deyalage, Kristin Whitney, S. Simsek et al. · 0 citations