In Vitro Gastrointestinal Digestion and Gut Fermentation of Atlantic Forest Fruit‐Flavored Kombucha: Gut Microbiota Dynamics and Bioactive Compound Bioaccessibility

Fermented foods are sources of highly bioavailable nutrients and compounds with health benefits. This exploratory study evaluated compound bioaccessibility, microbial survival and the effects of kombucha with Atlantic Forest fruits (jaboticaba, grumixama, juçara) on gut microbiota in healthy individuals. Samples underwent simulated digestion and 24 h fermentation with human fecal microbiota. Microbiota composition was analyzed by 16S rRNA amplicon sequencing, and SCFAs and BCFA were quantified. Yeasts, acetic acid bacteria, and lactic acid bacteria remained viable after digestion. Flavored kombucha (FK) showed high antioxidant activity. After 24 h, SCFAs increased, particularly acetate in FK; natural kombucha showed moderate effects, while tea and commercial kombucha caused minimal changes. Time was a major driver of variation in alpha and beta diversity, with the former declining especially with FK. The main taxonomic shifts included an increase in Enterobacteriaceae and a reduction in some beneficial taxa, with formulation-dependent specific modulation.

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Journal
Molecular Nutrition & Food Research
Published
2026-09-30
DOI
https://doi.org/10.1002/mnfr.70620
Primary Topic
Tea Polyphenols and Effects
Type
article
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In Vitro Gastrointestinal Digestion and Gut Fermentation of Atlantic Forest Fruit‐Flavored Kombucha: Gut Microbiota Dynamics and Bioactive Compound Bioaccessibility

Volker Behrends, Kawany de Faria Forato, Solidea Amadei, Semeh Bejaoui et al.
Molecular Nutrition & Food Research
Tea Polyphenols and Effects
article

In Vitro Gastrointestinal Digestion and Gut Fermentation of Atlantic Forest Fruit‐Flavored Kombucha: Gut Microbiota Dynamics and Bioactive Compound Bioaccessibility

Volker Behrends, Kawany de Faria Forato, Solidea Amadei, Semeh Bejaoui, Eduardo Lolato, Asia <1996> Pizzi, Adele Costabile, Karla Bigetti Guergoletto, Silvia Turroni, Federica D'Amico, Vinícius dos Santos Domingues, Giselle Nobre Costa
article en

Abstract

Fermented foods are sources of highly bioavailable nutrients and compounds with health benefits. This exploratory study evaluated compound bioaccessibility, microbial survival and the effects of kombucha with Atlantic Forest fruits (jaboticaba, grumixama, juçara) on gut microbiota in healthy individuals. Samples underwent simulated digestion and 24 h fermentation with human fecal microbiota. Microbiota composition was analyzed by 16S rRNA amplicon sequencing, and SCFAs and BCFA were quantified. Yeasts, acetic acid bacteria, and lactic acid bacteria remained viable after digestion. Flavored kombucha (FK) showed high antioxidant activity. After 24 h, SCFAs increased, particularly acetate in FK; natural kombucha showed moderate effects, while tea and commercial kombucha caused minimal changes. Time was a major driver of variation in alpha and beta diversity, with the former declining especially with FK. The main taxonomic shifts included an increase in Enterobacteriaceae and a reduction in some beneficial taxa, with formulation-dependent specific modulation.

Molecular Nutrition & Food ResearchVol. 70(19)
Universidade Estadual de Londrina (BR), University of Roehampton (GB), University of Bologna (IT)
Life below water
Openalex Percentile: Top 12%
Tea Polyphenols and Effects
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