Salmonella spp. remains a major public health problem for the whole world. Intestinal epithelial cells serve as an essential component of the innate mucosal immune system to defend against Salmonella infection. A substantial amount of evidence has accumulated that probiotics can regulate interleukin 8 (IL-8) involved in innate immunity. However, the exact effect of probiotics on epithelial IL-8 response to Salmonella infection is not well understood. Therefore, we investigated the action of probiotics on Salmonella-infected Caco-2 cells and its novel mechanisms. Two probiotic strains were examined for Salmonella-induced IL-8 responses and regulating proteins using Caco-2 cell cultures. We demonstrated probiotic, either Lactobacillus rhamnosus GG or Bifidobacterium animalis subsp. lactis DSM10140, administered before Salmonella infection conferred significantly suppressive effect on Salmonella-induced IL-8 responses in Caco-2 cells, either in secreted protein or mRNA, via the PI3K/Akt signal pathway while probiotic administered after infection enhanced Salmonella-induced IL-8 responses via nucleotide-binding oligomerisation domain-containing protein 2 expression in membrane. These findings suggest that the different regulation of probiotics on Salmonella-induced IL-8 responses in Caco-2 cells according to the administered timing supports a rationale for the therapeutic use of probiotics in the treatment of Salmonella colitis and inflammatory bowel disease. This can explain the reported controversial effect of probiotics on these diseases.
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Alberda, C., Gramlich, L., Meddings, J., Field, C., McCargar, L., Kutsogiannis, D., Fedorak, R. and Madsen, K., 2007. Effects of probiotic therapy in critically ill patients: a randomized, double-blind, placebo-controlled trial. American Journal of Clinical Nutrition 85: 816-823.
'Effects of probiotic therapy in critically ill patients: a randomized, double-blind, placebo-controlled trial ' () 85 American Journal of Clinical Nutrition : 816 -823.
Allen, S.J., Martinez, E.G. Gregorio, G.V. and Dans, L.F., 2010. Probiotics for treating acute infectious diarrhoea. Cochrane Database Systematic Reviews: CD003048.
'Probiotics for treating acute infectious diarrhoea ' () CD003048 Cochrane Database Systematic Reviews: .
Banadakoppa, M., Goluszko, P., Liebenthal, D., Nowicki, B.J., Nowicki, S. and Yallampalli, C., 2014. PI3K/Akt pathway restricts epithelial adhesion of Dr+ Escherichia coli by down-regulating the expression of decay accelerating factor. Experimental Biology and Medicine 239: 581-594.
'PI3K/Akt pathway restricts epithelial adhesion of Dr+ Escherichia coli by down-regulating the expression of decay accelerating factor ' () 239 Experimental Biology and Medicine : 581 -594.
Begue, B., Dumant, C., Bambou, J.C., Beaulieu, J.F., Chamaillard, M., Hugot, J.P., Goulet, O., Schmitz, J., Philpott, D.J., Cerf-Bensussan, N. and Ruemmele, F.M., 2006. Microbial induction of CARD15 expression in intestinal epithelial cells via toll-like receptor 5 triggers an antibacterial response loop. Journal of Cellular Physiology 209: 241-252.
'Microbial induction of CARD15 expression in intestinal epithelial cells via toll-like receptor 5 triggers an antibacterial response loop ' () 209 Journal of Cellular Physiology : 241 -252.
Boonma, P., Spinler, J.K., Venable, S.F., Versalovic, J. and Tumwasorn, S., 2014. Lactobacillus rhamnosus L34 and Lactobacillus casei L39 suppress Clostridium difficile-induced IL-8 production by colonic epithelial cells. BMC Microbiology 14: 177.
'Lactobacillus rhamnosus L34 and Lactobacillus casei L39 suppress Clostridium difficile-induced IL-8 production by colonic epithelial cells ' () 14 BMC Microbiology : 177.
Coconnier, M.H., Lievin, V., Bernet-Camard, M.F., Hudault, S. and Servin, A.L., 1997. Antibacterial effect of the adhering human Lactobacillus acidophilus strain LB. Antimicrobial Agents and Chemotherapy 41: 1046-1052.
'Antibacterial effect of the adhering human Lactobacillus acidophilus strain LB ' () 41 Antimicrobial Agents and Chemotherapy : 1046 -1052.
Dani, C., Biadaioli, R., Bertini, G., Martelli, E. and Rubaltelli, F.F., 2002. Probiotics feeding in prevention of urinary tract infection, bacterial sepsis and necrotizing enterocolitis in preterm infants. A prospective double-blind study. Biology of the Neonate 82: 103-108.
'Probiotics feeding in prevention of urinary tract infection, bacterial sepsis and necrotizing enterocolitis in preterm infants ' () 82 Biology of the Neonate : 103 -108.
De Filippo, K., Henderson, R.B., Laschinger, M. and Hogg, N., 2008. Neutrophil chemokines KC and macrophage-inflammatory protein-2 are newly synthesized by tissue macrophages using distinct TLR signaling pathways. Journal of Immunology 180: 4308-4315.
'Neutrophil chemokines KC and macrophage-inflammatory protein-2 are newly synthesized by tissue macrophages using distinct TLR signaling pathways ' () 180 Journal of Immunology : 4308 -4315.
Eun, C.S., Kim, Y.S., Han, D.S., Choi, J.H., Lee, A.R. and Park, Y.K., 2011. Lactobacillus casei prevents impaired barrier function in intestinal epithelial cells. APMIS 119: 49-56.
'Lactobacillus casei prevents impaired barrier function in intestinal epithelial cells ' () 119 APMIS : 49 -56.
Fedorak, R. and Demeria, D., 2012. Probiotic bacteria in the prevention and the treatment of inflammatory bowel disease. Gastroenterology Clinics of North America 41: 821-842.
'Probiotic bacteria in the prevention and the treatment of inflammatory bowel disease ' () 41 Gastroenterology Clinics of North America : 821 -842.
Gerritsen, J., Timmerman, H.M., Fuentes, S., Van Minnen, L.P., Panneman, H., Konstantinov, S.R., Rombouts, F.M., Gooszen, H.G., Akkermans, L.M., Smidt, H. and Rijkers, G.T., 2011. Correlation between protection against sepsis by probiotic therapy and stimulation of a novel bacterial phylotype. Applied Environmental Microbiology 77: 7749-7756.
'Correlation between protection against sepsis by probiotic therapy and stimulation of a novel bacterial phylotype ' () 77 Applied Environmental Microbiology : 7749 -7756.
Haller, D., Bode, C., Hammes, W.P., Pfeifer, A.M., Schiffrin, E.J. and Blum, S., 2000. Non-pathogenic bacteria elicit a differential cytokine response by intestinal epithelial cell/leucocyte co-cultures. Gut 47: 79-87.
'Non-pathogenic bacteria elicit a differential cytokine response by intestinal epithelial cell/leucocyte co-cultures ' () 47 Gut : 79 -87.
Homer, C.R., Richmond, A.L., Rebert, N.A., Achkar, J.P. and McDonald, C., 2010. ATG16L1 and NOD2 interact in an autophagy-dependent antibacterial pathway implicated in Crohn's disease pathogenesis. Gastroenterology 139: 1630-1641, 1641 e1631-1632.
'ATG16L1 and NOD2 interact in an autophagy-dependent antibacterial pathway implicated in Crohn's disease pathogenesis ' () 139 Gastroenterology : e1631 -1632.
Honeycutt, T.C., El Khashab, M., Wardrop 3rd, R.M., McNeal-Trice, K., Honeycutt, A.L., Christy, C.G., Mistry, K., Harris, B.D., Meliones, J.N. and Kocis, K.C., 2007. Probiotic administration and the incidence of nosocomial infection in pediatric intensive care: a randomized placebo-controlled trial. Pediatric Critical Care Medicine 8: 452-458.
'Probiotic administration and the incidence of nosocomial infection in pediatric intensive care: a randomized placebo-controlled trial ' () 8 Pediatric Critical Care Medicine : 452 -458.
Huang, F.C., 2012. Regulation of Salmonella flagellin-induced interleukin-8 in intestinal epithelial cells by muramyl dipeptide. Cell Immunology 278: 1-9.
'Regulation of Salmonella flagellin-induced interleukin-8 in intestinal epithelial cells by muramyl dipeptide ' () 278 Cell Immunology : 1 -9.
Huang, F.C., 2014. The critical role of membrane cholesterol in salmonella-induced autophagy in intestinal epithelial cells. International Journal of Molecular Sciences 15: 12558-12572.
'The critical role of membrane cholesterol in salmonella-induced autophagy in intestinal epithelial cells ' () 15 International Journal of Molecular Sciences : 12558 -12572.
Huang, F.C., Li, Q. and Cherayil, B.J., 2005. A phosphatidyl-inositol-3-kinase-dependent anti-inflammatory pathway activated by Salmonella in epithelial cells. FEMS Microbiology Letters 243: 265-270.
'A phosphatidyl-inositol-3-kinase-dependent anti-inflammatory pathway activated by Salmonella in epithelial cells ' () 243 FEMS Microbiology Letters : 265 -270.
Jess, T., Simonsen, J., Nielsen, N.M., Jorgensen, K.T., Bager, P., Ethelberg, S. and Frisch, M., 2011. Enteric Salmonella or Campylobacter infections and the risk of inflammatory bowel disease. Gut 60: 318-324.
'Enteric Salmonella or Campylobacter infections and the risk of inflammatory bowel disease ' () 60 Gut : 318 -324.
Lammers, K.M., Helwig, U., Swennen, E., Rizzello, F., Venturi, A., Caramelli, E., Kamm, M.A., Brigidi, P., Gionchetti, P. and Campieri, M., 2002. Effect of probiotic strains on interleukin 8 production by HT29/19A cells. American Journal of Gastroenterology 97: 1182-1186.
'Effect of probiotic strains on interleukin 8 production by HT29/19A cells ' () 97 American Journal of Gastroenterology : 1182 -1186.
Lin, P.W., Nasr, T.R., Berardinelli, A.J., Kumar, A. and Neish, A.S., 2008. The probiotic Lactobacillus GG may augment intestinal host defense by regulating apoptosis and promoting cytoprotective responses in the developing murine gut. Pediatric Research Journal 64: 511-516.
'The probiotic Lactobacillus GG may augment intestinal host defense by regulating apoptosis and promoting cytoprotective responses in the developing murine gut ' () 64 Pediatric Research Journal : 511 -516.
Ma, D., Forsythe, P. and Bienenstock, J., 2004. Live Lactobacillus rhamnosus [corrected] is essential for the inhibitory effect on tumor necrosis factor alpha-induced interleukin-8 expression. Infection and Immunity 72: 5308-5314.
'Live Lactobacillus rhamnosus [corrected] is essential for the inhibitory effect on tumor necrosis factor alpha-induced interleukin-8 expression ' () 72 Infection and Immunity : 5308 -5314.
Manukyan, M.C., Weil, B.R., Wang, Y., Abarbanell, A.M., Herrmann, J.L., Poynter, J.A. and Meldrum, D.R., 2010. The phosphoinositide-3 kinase survival signaling mechanism in sepsis. Shock 34: 442-449.
'The phosphoinositide-3 kinase survival signaling mechanism in sepsis ' () 34 Shock : 442 -449.
McCormick, B.A., Hofman, P.M., Kim, J., Carnes, D.K., Miller, S.I. and Madara, J.L., 1995. Surface attachment of Salmonella typhimurium to intestinal epithelia imprints the subepithelial matrix with gradients chemotactic for neutrophils. Journal of Cell Biology 131: 1599-1608.
'Surface attachment of Salmonella typhimurium to intestinal epithelia imprints the subepithelial matrix with gradients chemotactic for neutrophils ' () 131 Journal of Cell Biology : 1599 -1608.
Nemeth, E., Fajdiga, S., Malago, J., Koninkx, J., Tooten, P. and Van Dijk, J., 2006. Inhibition of Salmonella-induced IL-8 synthesis and expression of Hsp70 in enterocyte-like Caco-2 cells after exposure to non-starter lactobacilli. International Journal of Food Microbiology 112: 266-274.
'Inhibition of Salmonella-induced IL-8 synthesis and expression of Hsp70 in enterocyte-like Caco-2 cells after exposure to non-starter lactobacilli ' () 112 International Journal of Food Microbiology : 266 -274.
Neutra, M.R., Mantis, N.J. and Kraehenbuhl, J.P., 2001. Collaboration of epithelial cells with organized mucosal lymphoid tissues. Nature Immunology 2: 1004-1009.
'Collaboration of epithelial cells with organized mucosal lymphoid tissues ' () 2 Nature Immunology : 1004 -1009.
Nitzan, O., Elias, M., Chazan, B., Raz, R. and Saliba, W., 2013. Clostridium difficile and inflammatory bowel disease: role in pathogenesis and implications in treatment. World Journal of Gastroenterology 19: 7577-7585.
'Clostridium difficile and inflammatory bowel disease: role in pathogenesis and implications in treatment ' () 19 World Journal of Gastroenterology : 7577 -7585.
O'Hara, A.M., O'Regan, P., Fanning, A., O'Mahony, C., Macsharry, J., Lyons, A., Bienenstock, J., O'Mahony, L. and Shanahan, F., 2006. Functional modulation of human intestinal epithelial cell responses by Bifidobacterium infantis and Lactobacillus salivarius. Immunology 118: 202-215.
'Functional modulation of human intestinal epithelial cell responses by Bifidobacterium infantis and Lactobacillus salivarius ' () 118 Immunology : 202 -215.
Otte, J.M. and Podolsky, D.K., 2004. Functional modulation of enterocytes by gram-positive and gram-negative microorganisms. American Journal of Physiology â Gastrointestinal and Liver Physiology 286: G613-G626.
'Functional modulation of enterocytes by gram-positive and gram-negative microorganismsFunctional modulation of enterocytes by gram-positive and gram-negative microorganisms ' () 286 American Journal of Physiology â Gastrointestinal and Liver Physiology : G613 -G626.
Pearl, D.S., Shah, K., Whittaker, M.A., Nitch-Smith, H., Brown, J.F., Shute, J.K. and Trebble, T.M., 2013. Cytokine mucosal expression in ulcerative colitis, the relationship between cytokine release and disease activity. Journal of Crohn's and Colitis 7: 481-489.
'Cytokine mucosal expression in ulcerative colitis, the relationship between cytokine release and disease activity ' () 7 Journal of Crohn's and Colitis : 481 -489.
Petnicki-Ocwieja, T., Hrncir, T., Liu, Y.J., Biswas, A., Hudcovic, T., Tlaskalova-Hogenova, H. and Kobayashi, K.S., 2009. Nod2 is required for the regulation of commensal microbiota in the intestine. Proceedings of the National Academy of Sciences of the USA 106: 15813-15818.
'Nod2 is required for the regulation of commensal microbiota in the intestine ' () 106 Proceedings of the National Academy of Sciences of the USA : 15813 -15818.
Rabsch, W., Tschape, H. and Baumler, A.J., 2001. Non-typhoidal salmonellosis: emerging problems. Microbes and Infection 3: 237-247.
'Non-typhoidal salmonellosis: emerging problems ' () 3 Microbes and Infection : 237 -247.
Rautava, S., Salminen, S. and Isolauri, E., 2009. Specific probiotics in reducing the risk of acute infections in infancy â a randomised, double-blind, placebo-controlled study. British Journal of Nutrition 101: 1722-1726.
'Specific probiotics in reducing the risk of acute infections in infancy â a randomised, double-blind, placebo-controlled study ' () 101 British Journal of Nutrition : 1722 -1726.
Rychter, J.W., Van Minnen, L.P., Verheem, A., Timmerman, H.M., Rijkers, G.T., Schipper, M.E., Gooszen, H.G., Akkermans, L.M. and Kroese, A.B., 2009. Pretreatment but not treatment with probiotics abolishes mouse intestinal barrier dysfunction in acute pancreatitis. Surgery 145: 157-167.
'Pretreatment but not treatment with probiotics abolishes mouse intestinal barrier dysfunction in acute pancreatitis ' () 145 Surgery : 157 -167.
Salvatore, S., Hauser, B., Devreker, T., Vieira, M.C., Luini, C., Arrigo, S., Nespoli, L. and Vandenplas, Y., 2007. Probiotics and zinc in acute infectious gastroenteritis in children: are they effective? Nutrition 23: 498-506.
'Probiotics and zinc in acute infectious gastroenteritis in children: are they effective? ' () 23 Nutrition : 498 -506.
Santos, R.L., Tsolis, R.M., Baumler, A.J. and Adams, L.G., 2003. Pathogenesis of Salmonella-induced enteritis. Brazilian Journal of Medical and Biological Research 36: 3-12.
'Pathogenesis of Salmonella-induced enteritis ' () 36 Brazilian Journal of Medical and Biological Research : 3 -12.
Spees, A.M., Kingsbury, D.D., Wangdi, T., Xavier, M.N., Tsolis, R.M. and Baumler, A.J., 2014. Neutrophils are a source of gamma interferon during acute Salmonella enterica serovar Typhimurium colitis. Infection and Immunity 82: 1692-1697.
'Neutrophils are a source of gamma interferon during acute Salmonella enterica serovar Typhimurium colitis ' () 82 Infection and Immunity : 1692 -1697.
Tien, M.T., Girardin, S.E., Regnault, B., Le Bourhis, L., Dillies, M.A., Coppee, J.Y., Bourdet-Sicard, R., Sansonetti, P.J. and Pedron, T., 2006. Anti-inflammatory effect of Lactobacillus casei on Shigella-infected human intestinal epithelial cells. Journal of Immunology 176: 1228-1237.
'Anti-inflammatory effect of Lactobacillus casei on Shigella-infected human intestinal epithelial cells ' () 176 Journal of Immunology : 1228 -1237.
Vandenplas, Y., Salvatore, S., Vieira, M., Devreker, T. and Hauser, B., 2007. Probiotics in infectious diarrhoea in children: are they indicated? European Journal of Pediatrics 166: 1211-1218.
'Probiotics in infectious diarrhoea in children: are they indicated? ' () 166 European Journal of Pediatrics : 1211 -1218.
Whelan, K. and Quigley, E.M., 2013. Probiotics in the management of irritable bowel syndrome and inflammatory bowel disease. Current Opinion in Gastroenterology 29: 184-189.
'Probiotics in the management of irritable bowel syndrome and inflammatory bowel disease ' () 29 Current Opinion in Gastroenterology : 184 -189.
Yan, F. and Polk, D.B., 2002. Probiotic bacterium prevents cytokine-induced apoptosis in intestinal epithelial cells. Journal of Biological Chemistry 277: 50959-50965.
'Probiotic bacterium prevents cytokine-induced apoptosis in intestinal epithelial cells ' () 277 Journal of Biological Chemistry : 50959 -50965.
Zhang, L., Li, N., Caicedo, R. and Neu, J., 2005. Alive and dead Lactobacillus rhamnosus GG decrease tumor necrosis factoralpha-induced interleukin-8 production in Caco-2 cells. Journal of Nutrition 135: 1752-1756.
'Alive and dead Lactobacillus rhamnosus GG decrease tumor necrosis factoralpha-induced interleukin-8 production in Caco-2 cells ' () 135 Journal of Nutrition : 1752 -1756.
| å ¨é¨æé´ | è¿å»ä¸å¹´ | è¿å»30天 | |
|---|---|---|---|
| æè¦æµè§æ¬¡æ° | 360 | 170 | 21 |
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| PDFä¸è½½æ¬¡æ° | 15 | 4 | 0 |
Salmonella spp. remains a major public health problem for the whole world. Intestinal epithelial cells serve as an essential component of the innate mucosal immune system to defend against Salmonella infection. A substantial amount of evidence has accumulated that probiotics can regulate interleukin 8 (IL-8) involved in innate immunity. However, the exact effect of probiotics on epithelial IL-8 response to Salmonella infection is not well understood. Therefore, we investigated the action of probiotics on Salmonella-infected Caco-2 cells and its novel mechanisms. Two probiotic strains were examined for Salmonella-induced IL-8 responses and regulating proteins using Caco-2 cell cultures. We demonstrated probiotic, either Lactobacillus rhamnosus GG or Bifidobacterium animalis subsp. lactis DSM10140, administered before Salmonella infection conferred significantly suppressive effect on Salmonella-induced IL-8 responses in Caco-2 cells, either in secreted protein or mRNA, via the PI3K/Akt signal pathway while probiotic administered after infection enhanced Salmonella-induced IL-8 responses via nucleotide-binding oligomerisation domain-containing protein 2 expression in membrane. These findings suggest that the different regulation of probiotics on Salmonella-induced IL-8 responses in Caco-2 cells according to the administered timing supports a rationale for the therapeutic use of probiotics in the treatment of Salmonella colitis and inflammatory bowel disease. This can explain the reported controversial effect of probiotics on these diseases.
| å ¨é¨æé´ | è¿å»ä¸å¹´ | è¿å»30天 | |
|---|---|---|---|
| æè¦æµè§æ¬¡æ° | 360 | 170 | 21 |
| å ¨ææµè§æ¬¡æ° | 10 | 2 | 0 |
| PDFä¸è½½æ¬¡æ° | 15 | 4 | 0 |