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March 3, 2026SHILAP Revista de lepidopterología4 citationsOpen Access

Fermentation-Driven Valorization of a Carrot Juice By-Product into an Exopolysaccharide-Enriched Beverage

MCMario CaponioLLLorenza Francesca De LellisMDMaria Daglia

Key Points

  • The study found substantial exopolysaccharide synthesis, reaching 16.8 g per 100 g dry weight, enhancing beverage viscosity significantly.
  • Microbial strains displayed robust growth, exceeding 8 log cfu per mL, with strong acidification qualities comparable to yogurt alternatives.
  • Fermentation resulted in improved sensory attributes, such as sweetness and mouthfeel, specifically in sucrose-supplemented beverages.
  • The findings underscore the potential of utilizing carrot by-products for creating high-fiber beverages with antioxidant properties.

Abstract

Carrot juice processing generates large amounts of pomace, a fibre-rich by-product with significant valorisation potential. This study explored the feasibility of fermenting carrot by-product with Levilactobacillus brevis AM7 and Leuconostoc pseudomesenteroides DSM20193 to produce exopolysaccharide (EPS)-enriched functional beverages. Beverages were fermented with or without sucrose addition (EPS+ and EPS-, respectively) and characterized for microbiological, biochemical, rheological, and sensory attributes. Both strains showed robust growth (>8 log cfu/mL) and acidification (final pH below 4.8), comparable to plant-based yoghurt alternatives, with EPS synthesis markedly enhanced in sucrose-supplemented beverages. Leuc. pseudomesenteroides DSM20193 synthesized the highest EPS concentration (16.8 g/100 g dry weight), resulting in a 6-fold viscosity increase compared to EPS- samples, thus improving the adherence to the spoon and preventing syneresis of the beverages. Sensory evaluation revealed that EPS+ carrot-based beverages had improved sweetness due to a slight sucrose residue, aroma, and mouthfeel, while maintaining low off-flavours and high colour uniformity. The results highlight carrot by-product as a promising substrate for developing clean-label beverages that are rich in dietary fibres and polyphenols and show antioxidant and potential prebiotic properties through sustainable fermentation processes.

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Cite This Study

Caponio et al. (2026) studied this question.

synapsesocial.com/papers/69a75aaac6e9836116a20c94https://doi.org/10.3390/foods15030451
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