CrossRef Open Access 2023 11 sitasi

Zero- and Low-Alcohol Fermented Beverages: A Perspective for Non-Conventional Healthy and Sustainable Production from Red Fruits

Marcello Brugnoli Elsa Cantadori Mattia Pia Arena Luciana De Vero Andrea Colonello +1 lainnya

Abstrak

The growing health consciousness among consumers is leading to an increased presence of functional foods and beverages on the market. Red fruits are rich in bioactive compounds such as anthocyanins with high antioxidant activity. In addition, red fruits contain sugars and are rich in phenolic compounds, vitamin C, dietary fibers, and manganese. Due to these characteristics, they are also suitable substrates for fermentation. Indeed, nowadays, microbial transformation of red fruits is based on alcoholic or lactic fermentation, producing alcoholic and non-alcoholic products, respectively. Although products fermented by acetic acid bacteria (AAB) have been thoroughly studied as a model of health benefits for human beings, little evidence is available on the acetic and gluconic fermentation of red fruits for obtaining functional products. Accordingly, this review aims to explore the potential of different red fruits, namely blackberry, raspberry, and blackcurrant, as raw materials for fermentation processes aimed at producing low- and no-alcohol beverages containing bioactive compounds and no added sugars. AAB are treated with a focus on their ability to produce acetic acid, gluconic acid, and bacterial cellulose, which are compounds of interest for developing fruit-based fermented beverages.

Penulis (6)

M

Marcello Brugnoli

E

Elsa Cantadori

M

Mattia Pia Arena

L

Luciana De Vero

A

Andrea Colonello

M

Maria Gullo

Format Sitasi

Brugnoli, M., Cantadori, E., Arena, M.P., Vero, L.D., Colonello, A., Gullo, M. (2023). Zero- and Low-Alcohol Fermented Beverages: A Perspective for Non-Conventional Healthy and Sustainable Production from Red Fruits. https://doi.org/10.3390/fermentation9050457

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Informasi Jurnal
Tahun Terbit
2023
Bahasa
en
Total Sitasi
11×
Sumber Database
CrossRef
DOI
10.3390/fermentation9050457
Akses
Open Access ✓