P. Pastoret, P. Griebel, H. Bazin, and A. Govaerts, Immunology of the pig, Handbook of vertebrate immunology, pp.373-419, 1998.

M. Tumbleson and L. B. Schook, Advances in swine in biomedical research, Advances in swine in biomedical research, pp.1-4, 1996.

I. F. Charo and R. M. Ransohoff, The many roles of chemokines and chemokine receptors in inflammation, N Engl J Med, vol.354, pp.610-621, 2006.

T. S. Olson and K. Ley, Chemokines and chemokine receptors in leukocyte trafficking, Am J Physiol Regul Integr Comp Physiol, vol.283, pp.7-28, 2002.

C. H. Kim and H. E. Broxmeyer, Chemokines: signal lamps for trafficking of T and B cells for development and effector function, J Leukoc Biol, vol.65, pp.6-15, 1999.

J. V. Stein and C. Nombela-arrieta, Chemokine control of lymphocyte trafficking: a general overview, Immunology, vol.116, pp.1-12, 2005.

A. P. Vicari, D. J. Figueroa, J. A. Hedrick, J. S. Foster, and K. P. Singh, TECK: a novel CC chemokine specifically expressed by thymic dendritic cells and potentially involved in T cell development, Immunity, vol.7, pp.291-301, 1997.

H. Choe, M. Farzan, M. Konkel, K. Martin, and Y. Sun, The orphan seven-transmembrane receptor apj supports the entry of primary T-cell-linetropic and dualtropic human immunodeficiency virus type 1, J Virol, vol.72, pp.6113-6118, 1998.

E. J. Kunkel, J. J. Campbell, G. Haraldsen, J. Pan, and J. Boisvert, Lymphocyte CC chemokine receptor 9 and epithelial thymus-expressed chemokine (TECK) expression distinguish the small intestinal immune compartment: Epithelial expression of tissue-specific chemokines as an organizing principle in regional immunity, J Exp Med, vol.192, pp.761-768, 2000.

C. Liu, F. Saito, Z. Liu, Y. Lei, and S. Uehara, Coordination between CCR7-and CCR9-mediated chemokine signals in pre-vascular fetal thymus colonization, Blood, vol.108, pp.2531-2359, 2006.

C. Liu, T. Ueno, S. Kuse, F. Saito, and T. Nitta, The role of CCL21 in recruitment of T-precursor cells to fetal thymi, Blood, vol.105, pp.31-39, 2005.

F. Meurens, M. Berri, J. Whale, T. Dybvig, and S. Strom, Expression of TECK/CCL25 and MEC/CCL28 chemokines and their respective receptors CCR9 and CCR10 in porcine mucosal tissues, Vet Immunol Immunopathol, vol.113, pp.313-327, 2006.

F. Meurens, J. Whale, R. Brownlie, T. Dybvig, and D. R. Thompson, Expression of mucosal chemokines TECK/CCL25 and MEC/CCL28 during fetal development of the ovine mucosal immune system, Immunology, vol.120, pp.544-555, 2007.
URL : https://hal.archives-ouvertes.fr/hal-02657039

M. A. Wurbel, J. M. Philippe, C. Nguyen, G. Victorero, and T. Freeman, The chemokine TECK is expressed by thymic and intestinal epithelial cells and attracts double-and single-positive thymocytes expressing the TECK receptor CCR9, Eur J Immunol, vol.30, pp.262-271, 2000.

A. Zaballos, J. Gutierrez, R. Varona, C. Ardavin, and G. Marquez, Cutting edge: identification of the orphan chemokine receptor GPR-9-6 as CCR9, the receptor for the chemokine TECK, J Immunol, vol.162, pp.5671-5675, 1999.

B. A. Zabel, W. W. Agace, J. J. Campbell, H. M. Heath, and D. Parent, Human G protein-coupled receptor GPR-9-6/CC chemokine receptor 9 is selectively expressed on intestinal homing T lymphocytes, mucosal lymphocytes, and thymocytes and is required for thymus-expressed chemokine-mediated chemotaxis, J Exp Med, vol.190, pp.1241-1256, 1999.

M. C. Hu, D. T. Crowe, I. L. Weissman, and B. Holzmann, Cloning and expression of mouse integrin beta p(beta 7): a functional role in Peyer's patch-specific lymphocyte homing, Proc Natl Acad Sci, vol.89, pp.8254-8258, 1992.

C. Berlin, E. L. Berg, M. J. Briskin, D. P. Andrew, and P. J. Kilshaw, Alpha 4 beta 7 integrin mediates lymphocyte binding to the mucosal vascular addressin MAdCAM-1, Cell, vol.74, pp.185-195, 1993.

O. Pabst, L. Ohl, M. Wendland, M. A. Wurbel, and E. Kremmer, Chemokine receptor CCR9 contributes to the localization of plasma cells to the small intestine, J Exp Med, vol.199, pp.411-416, 2004.

A. M. Norment, L. Y. Bogatzki, B. N. Gantner, and M. J. Bevan, Murine CCR9, a chemokine receptor for thymus-expressed chemokine that is up-regulated following pre-TCR signaling, J Immunol, vol.164, pp.639-648, 2000.

J. Pan, E. J. Kunkel, U. Gosslar, N. Lazarus, and P. Langdon, A novel chemokine ligand for CCR10 and CCR3 expressed by epithelial cells in mucosal tissues, J Immunol, vol.165, pp.2943-2949, 2000.

W. Wang, H. Soto, E. R. Oldham, M. E. Buchanan, and B. Homey, Identification of a novel chemokine (CCL28), which binds CCR10 (GPR2), J Biol Chem, vol.275, pp.22313-22323, 2000.

E. J. Kunkel, C. H. Kim, N. H. Lazarus, M. A. Vierra, and D. Soler, CCR10 expression is a common feature of circulating and mucosal epithelial tissue IgA Ab-secreting cells, J Clin Invest, vol.111, pp.1001-1010, 2003.

J. A. Bonini and D. F. Steiner, Molecular cloning and expression of a novel rat CC-chemokine receptor (rCCR10rR) that binds MCP-1 and MIP-1beta with high affinity, DNA Cell Biol, vol.16, pp.1023-1030, 1997.

M. C. Jaimes, O. L. Rojas, E. J. Kunkel, N. H. Lazarus, and D. Soler, Maturation and trafficking markers on rotavirus-specific B cells during acute infection and convalescence in children, J Virol, vol.78, pp.10967-10976, 2004.

N. H. Lazarus, E. J. Kunkel, B. Johnston, E. Wilson, and K. R. Youngman, A common mucosal chemokine (mucosae-associated epithelial chemokine/ CCL28) selectively attracts IgA plasmablasts, J Immunol, vol.170, pp.3799-3805, 2003.

N. Feng, M. C. Jaimes, N. H. Lazarus, D. Monak, and C. Zhang, Redundant role of chemokines CCL25/TECK and CCL28/MEC in IgA+ plasmablast recruitment to the intestinal lamina propria after rotavirus infection, J Immunol, vol.176, pp.5749-5759, 2006.

E. J. Kunkel, D. J. Campbell, and E. C. Butcher, Chemokines in lymphocyte trafficking and intestinal immunity, Microcirculation, vol.10, pp.313-323, 2003.

E. J. Kunkel and E. C. Butcher, Plasma-cell homing, Nat Rev Immunol, vol.3, pp.822-829, 2003.

D. C. Savage, Microbial ecology of the gastrointestinal tract, Annu Rev Microbiol, vol.31, pp.107-133, 1977.

B. Corthesy, H. R. Gaskins, and A. Mercenier, Cross-Talk between Probiotic Bacteria and the Host Immune System, J Nutr, vol.137, pp.781-790, 2007.

M. Furuse and J. Okumura, Nutritional and physiological characteristics in germ-free chickens, Comp Biochem Physiol A Physiol, vol.109, pp.547-556, 1994.

T. W. Shirkey, R. H. Siggers, B. G. Goldade, J. K. Marshall, and M. D. Drew, Effects of commensal bacteria on intestinal morphology and expression of proinflammatory cytokines in the gnotobiotic pig, Exp Biol Med (Maywood), vol.231, pp.1333-1345, 2006.

B. S. Wostmann, Germfree and gnotobiotic animal models: background and applications, 1996.

A. Ericsson, M. Svensson, A. Arya, and W. W. Agace, CCL25/CCR9 promotes the induction and function of CD103 on intestinal intraepithelial lymphocytes, Eur J Immunol, vol.34, pp.2720-2729, 2004.

N. Hosoe, S. Miura, C. Watanabe, Y. Tsuzuki, and R. Hokari, Demonstration of functional role of TECK/CCL25 in T lymphocyteendothelium interaction in inflamed and uninflamed intestinal mucosa, Am J Physiol Gastrointest Liver Physiol, vol.286, pp.458-466, 2004.

M. T. O'gorman, N. A. Jatoi, S. J. Lane, and B. P. Mahon, IL-1beta and TNF-alpha induce increased expression of CCL28 by airway epithelial cells via an NFkappaB-dependent pathway, Cell Immunol, vol.238, pp.87-96, 2005.

K. English, C. Brady, P. Corcoran, J. P. Cassidy, and B. P. Mahon, Inflammation of the respiratory tract is associated with CCL28 and CCR10 expression in a murine model of allergic asthma, Immunol Lett, vol.103, pp.92-100, 2006.

B. Eksteen, A. Miles, S. M. Curbishley, C. Tselepis, and A. J. Grant, Epithelial inflammation is associated with CCL28 production and the recruitment of regulatory T cells expressing CCR10, J Immunol, vol.177, pp.593-603, 2006.

S. Sakaguchi, Naturally arising Foxp3-expressing CD25+CD4+ regulatory T cells in immunological tolerance to self and non-self, Nat Immunol, vol.6, pp.345-352, 2005.

A. H. Banham, F. M. Powrie, and E. Suri-payer, FOXP3+ regulatory T cells: Current controversies and future perspectives, Eur J Immunol, vol.36, pp.2832-2836, 2006.

L. Zhang, N. Li, R. Caicedo, and J. Neu, Alive and dead Lactobacillus rhamnosus GG decrease tumor necrosis factor-alpha-induced interleukin-8 production in Caco-2 cells, J Nutr, vol.135, pp.1752-1756, 2005.

C. U. Riedel, F. Foata, P. D. Adolfsson, O. Eikmanns, and B. J. , Antiinflammatory effects of bifidobacteria by inhibition of LPS-induced NF-kappaB activation, World J Gastroenterol, vol.12, pp.3729-3735, 2006.

A. M. O'hara, P. O'regan, A. Fanning, C. O'mahony, and J. Macsharry, Functional modulation of human intestinal epithelial cell responses by Bifidobacterium infantis and Lactobacillus salivarius, Immunology, vol.118, pp.202-215, 2006.

K. M. Lammers, A. Vergopoulos, N. Babel, P. Gionchetti, and F. Rizzello, Probiotic therapy in the prevention of pouchitis onset: decreased interleukin-1beta, interleukin-8, and interferon-gamma gene expression, Inflamm Bowel Dis, vol.11, pp.447-454, 2005.

E. O. Petrof, K. Kojima, M. J. Ropeleski, M. W. Musch, and Y. Tao, Probiotics inhibit nuclear factor-kappaB and induce heat shock proteins in colonic epithelial cells through proteasome inhibition, Gastroenterology, vol.127, pp.1474-1487, 2004.

K. Hieshima, H. Ohtani, M. Shibano, D. Izawa, and T. Nakayama, CCL28 has dual roles in mucosal immunity as a chemokine with broadspectrum antimicrobial activity, J Immunol, vol.170, pp.1452-1461, 2003.

M. Waidmann, Y. Allemand, J. Lehmann, S. Di-genaro, and N. Bucheler, Microflora reactive IL-10 producing regulatory T cells are present in the colon of IL-2 deficient mice but lack efficacious inhibition of IFN-gamma and TNFalpha production, Gut, vol.50, pp.170-179, 2002.

U. G. Strauch, F. Obermeier, N. Grunwald, S. Gurster, and N. Dunger, Influence of intestinal bacteria on induction of regulatory T cells: lessons from a transfer model of colitis, Gut, vol.54, pp.1546-1552, 2005.

B. Kaeffer, E. Bottreau, P. Velge, and P. Pardon, Epithelioid and fibroblastic cell lines derived from the ileum of an adult histocompatible miniature boar (d/ d haplotype) and immortalized by SV40 plasmid, Eur J Cell Biol, vol.62, pp.152-162, 1993.
URL : https://hal.archives-ouvertes.fr/hal-02712075

S. H. Seo and E. W. Collisson, Specific cytotoxic T lymphocytes are involved in in vivo clearance of infectious bronchitis virus, J Virol, vol.71, pp.5173-5177, 1997.