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Injections of Lipopolysaccharide into Mice to Mimic Entrance of Microbial-derived Products After Intestinal Barrier Breach
Published on: May 2, 2018
Beneficial effect of oat-based postbiotics produced through capsule or free-cell fermentation on lipopolysaccharide
Giulia Lentini1, Francesca Passannanti1, Francesca De Palma2
1Department of Chemical Engineering, Materials, and Industrial Production, University of Naples Federico II, P. Tecchio, 80, Naples, Italy; I. T. P. Innovation and Technology Provider S.r.l., Via Bisignano a Chiaia, 68, 80121 Naples, Italy.
Abstract:
The aim of this study was to design an innovative oat fermentation process using capsules to produce postbiotics with anti-inflammatory and antioxidant potential. Capsule fermentation led to higher bacterial growth (3.30*109 CFU/mL) and lactic acid production (20.49 mg/mL), compared to traditional free-cell fermentation (4.73*108 CFU/mL and 9.08 mg/mL, respectively), along with increased cell and product yields. The dried postbiotics were also subjected to in vitro digestion, mimicking the gastrointestinal one. A functional characterization of the four postbiotics, undigested and digested postbiotics from both capsule and free-cell fermentation, was performed using the HCT116 colon cell line. All four products prevented LPS- induced activation of the inflammatory pathway, protein oxidative damage, and impaired glutathione reductase activity, with digested postbiotics being more effective than undigested ones. These findings demonstrate that the capsule-based postbiotic is a promising candidate as a functional food with potential applications in nutraceuticals, animal feeding, and cosmetics.
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