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  5. Cow Milk Extracellular Vesicle Effects on an In Vitro Model of Intestinal Inflammation

Cow Milk Extracellular Vesicle Effects on an In Vitro Model of Intestinal Inflammation

Author(s)
Mecocci, Samanta
Ottaviani, Alessio
Razzuoli, Elisabetta
Fiorani, Paola
Pietrucci, Daniele  
more
Date Issued
2022
Type
article
Volume
10
Issue
3
DOI
10.3390/biomedicines10030570
Journal
BIOMEDICINES  
Abstract
Extracellular vesicles (EVs) are lipid bilayer nano-dimensional spherical structures and act mainly as signaling mediators between cells, in particular modulating immunity and inflammation. Milk-derived EVs (mEVs) can have immunomodulatory and anti-inflammatory effects, and milk is one of the most promising food sources of EVs. In this context, this study aimed to evaluate bovine mEVs anti-inflammatory and immunomodulating effects on an in vitro co-culture (Caco-2 and THP-1) model of intestinal inflammation through gene expression evaluation with RT-qPCR and cytokine release through ELISA. After establishing a pro-inflammatory environment due to IFN-γ and LPS stimuli, CXCL8, IL1B, TNFA, IL12A, IL23A, TGFB1, NOS2, and MMP9 were significantly up-regulated in inflamed Caco-2 compared to the basal co-culture. Moreover, IL-17, IL-1β, IL-6, TNF-α release was increased in supernatants of THP-1. The mEV administration partially restored initial conditions with an effective anti-inflammatory activity. Indeed, a decrease in gene expression and protein production of most of the tested cytokines was detected, together with a significant gene expression decrease in MMP9 and the up-regulation of MUC2 and TJP1. These results showed a fundamental capability of mEVs to modulate inflammation and their potential beneficial effect on the intestinal mucosa.
Handle
http://hdl.handle.net/2067/51150
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