Intestinal Epithelium-Derived Galectin-9 Is Involved in the Immunomodulating Effects of Nondigestible Oligosaccharides

Галектин-9, происходящий из кишечного эпителия, участвует в иммуномодулирующем действии неперевариваемых олигосахаридов
Sander de Kivit, Aletta D. Kraneveld, L.M.J. Knippels, Yvette van Kooyk, Johan Garssen, Linette E. M. Willemsen
2013-01-01

Galectin-9TLR9 signalingTh1 and Treg polarizationintestinal epithelial cellsnondigestible oligosaccharides
Dietary intervention using nondigestible oligosaccharides, short-chain galacto-oligosaccharides (scGOS)/long-chain fructo-oligosaccharides (lcFOS), in combination with Bifidobacterium breve M-16V prevents allergic disease involving galectin-9. In addition, apical TLR9 signaling contributes to intestinal homeostasis. We studied the contribution of galectin-9 secreted by intestinal epithelial cells (IEC; HT-29 and T84) in Th1 and regulatory T-cell (Treg) polarization in vitro. IEC were grown in transwell filters, cocultured with CD3/CD28-activated human peripheral blood mononuclear cells (PBMC) and apically exposed to genomic DNA derived from B. breve M-16V or synthetic TLR9 ligand in the absence or presence of scGOS/lcFOS. Cytokine production and T-cell phenotype were determined and galectin expression by IEC was assessed. Galectin-9 was neutralized using lactose or a TIM-3-Fc fusion protein. IEC exposed to DNA from B. breve M-16V or TLR9 ligand in the presence of scGOS/lcFOS enhanced IFN-γ secretion by PBMC and increased the percentage of Th1 and Treg cells. Expression and secretion of galectin-9 by IEC was increased and neutralization of galectin-9 prevented the induction of IFN-γ secretion and also suppressed the production of IL-10 by PBMC. Furthermore, we show that galectin-9 induces Treg and Th1 polarization through interaction with antigen-presenting cells. Our findings show that galectin-9 secreted by IEC apically exposed to TLR9 ligand in the presence of scGOS/lcFOS is involved in Th1 and Treg polarization and may be a promising target to prevent or treat allergic disease.
1
Apical exposure of intestinal epithelial cells to B. breve M-16V DNA or a TLR9 ligand with scGOS/lcFOS increased galectin-9 expression and secretion.
2
Galectin-9 promoted Th1 and regulatory T-cell polarization through interactions with antigen-presenting cells.
3
Intestinal epithelial galectin-9 may represent a therapeutic target for preventing or treating allergic disease.
4
Neutralizing epithelial galectin-9 prevented IFN-γ induction and suppressed PBMC IL-10 production, demonstrating its functional contribution.
5
The combined TLR9 ligand and scGOS/lcFOS stimulation enhanced PBMC IFN-γ production and increased Th1 and regulatory T-cell frequencies.

intestinal epithelial cells exposed to TLR9 ligands and scGOS/lcFOS

galectin-9-mediated Th1 and regulatory T-cell polarization and immunomodulation

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2013-01-01
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Sander de Kivit
Aletta D. Kraneveld
L.M.J. Knippels
Yvette van Kooyk
Johan Garssen
Linette E. M. Willemsen
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