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January 25, 2026Food and Bioprocess Technology2 citationsOpen Access

Biotransformation of Fruit-Based Matrices Through Probiotic Fermentation: Effects on Chemical Composition, Volatiles and Sensory Properties

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JDJúlia Vitória Barbosa DiasUniversidade Federal da ParaíbaWCWhyara Karoline Almeida CostaÍMÍsis Meireles MafaldoUniversidade Federal da Paraíba

Key Points

  • The aim is to evaluate the effects of probiotic fermentation on the chemical composition and sensory properties of various fruit matrices.
  • Fermentation of jambolan, cajarana, kiwifruit, and soursop using Lacticaseibacillus casei 01 and Bifidobacterium animalis subsp. lactis BB12.
  • Analysis of probiotic viability, sugar content, lactic acid production, and bioactive compound changes after 48 hours.
  • Assessment of volatile profiles and sensory qualities of the fermented fruit pulps.
  • Probiotic viability remained above 6 log CFU/g after fermentation.
  • Significant decrease in sugars and increase in lactic acid production were observed.
  • Kiwifruit showed greater bioaccessibility of phenolic compounds post-fermentation.
  • BB12 was more effective at stabilizing bioactive compounds compared to Lc1.

Abstract

Abstract Probiotic fermentation is a promising strategy for developing non-dairy functional foods, particularly when using different fruit matrices with distinct bioactive profiles. This study evaluated the fermentation of jambolan, cajarana, kiwifruit, and soursop using Lacticaseibacillus casei 01 (Lc1) and Bifidobacterium animalis subsp. lactis BB12 (BB12), focusing on the production of metabolites and the biotransformation of bioactive compounds. After 48 h of fermentation, all fruit pulps maintained probiotic viability above 6 log CFU/g, and sugars decreased significantly, while lactic acid production increased. Greater bioaccessibility of phenolic compounds was observed in fermented kiwifruit, with BB12 showing a greater ability to stabilize bioactive compounds and Lc1 leading to greater acidification. Overall, fermentation improved the volatile profiles and sensory qualities of the pulps, notably in kiwifruit and cajarana. These results highlight the potential of probiotic fermentation in the functional properties of fruit-derived products, contributing to the creation of new functional products beyond the dairy sector.

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Cite This Study

Dias et al. (2026) studied this question.

synapsesocial.com/papers/6975b36bfeba4585c2d6eedbhttps://doi.org/10.1007/s11947-026-04217-0
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