Phenolic Compounds of Grape Pomace Skin Released During SHIME Colonic Fermentation Shape the Transcriptomic Profile of Tight Junctions, Improving the Barrier Properties in Caco-2 Cells

Hidalgo, Miltha; Vera, Francisca; Concepcion-Alvarez, Alina; Rubio, Vanessa; Railef, Barbara; Meneses-Pacheco, Jorge; Moreno, Macarena; Oyarzun, Martina; de Camargo, Adriano Costa; Bridi, Raquel; Fuenzalida, Karen; Gonzales, Elva; Pacheco, Igor; Anazco, Carolina; Pulgar, Rodrigo; et. al.

Abstract

The association between dietary fiber and phenolic compounds allows the latter to reach the colon, where most polysaccharides undergo fermentation. This bioprocessing weakens the matrix and promotes the release of the phenolic compounds, which then exert beneficial effects on intestinal function. Although this notion is widely accepted, supporting evidence remains scarce. In this study, we subjected grape pomace skin to in vitro digestion to obtain an indigestible fraction suitable for SHIME bioreactors. Throughout these stages, we observed a sequential increase in the release of phenolic compounds, with colonic fermentation playing an important role. Although we did not observe an increase in short-chain fatty acid (SCFA) production by the gut microbiota, we performed a repeated-challenge design on differentiated Caco-2 monolayers. With this approach, we found that the phenolic-rich ferment prevented the transepithelial electrical resistance (TEER) drop on the second challenge and modulated the transcriptomic profile assessed by RNA-seq. Our findings indicate that the Caco-2 cellular responses mentioned above were SCFA-independent and likely due to the differential impact of phenolic compound load after colonic fermentation of grape pomace skin.

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Título según WOS: ID WOS:001763621700001 Not found in local WOS DB
Título de la Revista: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Volumen: 27
Número: 9
Editorial: MDPI Open Access Publishing
Fecha de publicación: 2026
DOI:

10.3390/ijms27094123

Notas: ISI