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CX3CR1+ Cell-Mediated Salmonella Exclusion Protects the Intestinal Mucosa during the Initial Stage of Infection.
Man, Angela L; Gicheva, Nadezhda; Regoli, Mari; Rowley, Gary; De Cunto, Giovanna; Wellner, Nikolaus; Bassity, Elizabeth; Gulisano, Massimo; Bertelli, Eugenio; Nicoletti, Claudio.
Afiliação
  • Man AL; Gut Health and Food Safety Programme, Institute of Food Research, Norwich NR4 7UA, United Kingdom.
  • Gicheva N; Gut Health and Food Safety Programme, Institute of Food Research, Norwich NR4 7UA, United Kingdom.
  • Regoli M; Department of Molecular and Developmental Medicine, University of Siena, 53100 Siena, Italy.
  • Rowley G; School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, United Kingdom.
  • De Cunto G; Department of Molecular and Developmental Medicine, University of Siena, 53100 Siena, Italy.
  • Wellner N; Analytical Sciences Unit, Institute of Food Research, Norwich NR4 7UA, United Kingdom; and.
  • Bassity E; Gut Health and Food Safety Programme, Institute of Food Research, Norwich NR4 7UA, United Kingdom.
  • Gulisano M; Section of Human Anatomy, Department of Experimental and Clinical Medicine, University of Florence, 50134 Florence, Italy.
  • Bertelli E; Department of Molecular and Developmental Medicine, University of Siena, 53100 Siena, Italy.
  • Nicoletti C; Gut Health and Food Safety Programme, Institute of Food Research, Norwich NR4 7UA, United Kingdom; claudio.nicoletti@unifi.it claudio.nicoletti@ifr.ac.uk.
J Immunol ; 198(1): 335-343, 2017 01 01.
Article em En | MEDLINE | ID: mdl-27895168
ABSTRACT
During Salmonella Typhimurium infection, intestinal CX3CR1+ cells can either extend transepithelial cellular processes to sample luminal bacteria or, very early after infection, migrate into the intestinal lumen to capture bacteria. However, until now, the biological relevance of the intraluminal migration of CX3CR1+ cells remained to be determined. We addressed this by using a combination of mouse strains differing in their ability to carry out CX3CR1-mediated sampling and intraluminal migration. We observed that the number of S. Typhimurium traversing the epithelium did not differ between sampling-competent/migration-competent C57BL/6 and sampling-deficient/migration-competent BALB/c mice. In contrast, in sampling-deficient/migration-deficient CX3CR1-/- mice the numbers of S. Typhimurium penetrating the epithelium were significantly higher. However, in these mice the number of invading S. Typhimurium was significantly reduced after the adoptive transfer of CX3CR1+ cells directly into the intestinal lumen, consistent with intraluminal CX3CR1+ cells preventing S. Typhimurium from infecting the host. This interpretation was also supported by a higher bacterial fecal load in CX3CR1+/gfp compared with CX3CR1gfp/gfp mice following oral infection. Furthermore, by using real-time in vivo imaging we observed that CX3CR1+ cells migrated into the lumen moving through paracellular channels within the epithelium. Also, we reported that the absence of CX3CR1-mediated sampling did not affect Ab responses to a noninvasive S. Typhimurium strain that specifically targeted the CX3CR1-mediated entry route. These data showed that the rapidly deployed CX3CR1+ cell-based mechanism of immune exclusion is a defense mechanism against pathogens that complements the mucous and secretory IgA Ab-mediated system in the protection of intestinal mucosal surface.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Salmonelose Animal / Mucosa Intestinal Limite: Animals Idioma: En Revista: J Immunol Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Reino Unido

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Salmonelose Animal / Mucosa Intestinal Limite: Animals Idioma: En Revista: J Immunol Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Reino Unido