Allen, S.J., Okoko, B., Martinez, E., Gregorio, G. and Dans, L.F., 2004. Probiotics for treating infectious diarrhoea. Cochrane Database of Systematic Reviews 2004: DOI: 10.1002/14651858.CD003048.pub2.
Google Scholar
Bhan, M.K., 2000. Current and future management of childhood diarrhoea. International Journal of Antimicrobial Agents 14: 71-73.
Crossref, MedlineGoogle Scholar
Bhandari, S.K., Xu, B., Nyachoti, C.M., Giesting, D.W. and Krause, D.O., 2008. Evaluation of alternatives to antibiotics using an Escherichia coli K88+ model of piglet diarrhea: effects on gut microbial ecology. Journal of Animal Science 86: 836-847.
Crossref, MedlineGoogle Scholar
Bruins, M.J., Cermak, R., Kiers, J.L., Van der Meulen, J., Van Amelsvoort, J.M.M. and Van Klinken, B.J.W., 2006. In vivo and in vitro effects of tea extracts on enterotoxigenic Escherichia coli-induced intestinal fluid loss in animal models. Journal of Pediatric Gastroenterology and Nutrition 43: 459-469.
Crossref, MedlineGoogle Scholar
Chaucheyras-Durand, F. and Durand, H., 2010. Probiotics in animal nutrition and health. Beneficial Microbes 1: 3-9.
Wageningen Academic PublishersGoogle Scholar
Corthésy, B., Gaskins, H.R. and Mercenier, A., 2007. Cross-talk between probiotic bacteria and the host immune system. Journal of Nutrition 137: 781S-790S.
Crossref, MedlineGoogle Scholar
De Vrese, M. and Marteau, P.R., 2007. Probiotics and prebiotics: effects on diarrhea. Journal of Nutrition 137: 803S-811S.
Crossref, MedlineGoogle Scholar
Domeneghini, C., Di Giancamillo, A., Arrighi, S. and Bosi, G., 2006. Gut-trophic feed additives and their effects upon the gut structure and intestinal metabolism. State of the art in the pig, and perspectives towards humans. Histology and Histopathology 21: 273-283.
Google Scholar
DuPont, H.L., 2005. What's new in enteric infectious diseases at home and abroad. Current Opinion in Infectious Diseases 18: 407-412.
Crossref, MedlineGoogle Scholar
Dupont, H.L., 2009. Systematic review: the epidemiology and clinical features of travellers' diarrhoea. Alimentary Pharmacology and Therapeutics 30: 187-196.
Crossref, MedlineGoogle Scholar
Dupont, H.L., Ericsson, C.D., Farthing, M.J.G., Gorbach, S., Pickering, L.K., Rombo, L., Steffen, R. and Weinke, T., 2009. Expert review of the evidence base for prevention of travelers' diarrhea. Journal of Travel Medicine 16: 149-160.
Crossref, MedlineGoogle Scholar
Fairbrother, J.M., Nadeau, E. and Gyles, C.L., 2005. Escherichia coli in postweaning diarrhea in pigs: an update on bacterial types, pathogenesis, and prevention strategies. Animal Health Research Reviews 6: 17-39.
Crossref, MedlineGoogle Scholar
Fuller, R., 1989. Probiotics in man and animals. Journal of Applied Bacteriology 66: 365-378.
Crossref, MedlineGoogle Scholar
Geenen, P.L., Döpfer, D., Van der Meulen, J. and De Jong, M.C.M., 2005. Transmission of F4+ E. coli in groups of early weaned piglets. Epidemiology and Infection 133: 459-468.
Crossref, MedlineGoogle Scholar
Gross, G., Van der Meulen, J., Snel, J., Van der Meer, R., Kleerebezem, M., Niewold, T.A., Hulst, M.M. and Smits, M.A., 2008. Mannose-specific interaction of Lactobacillus plantarum with porcine jejunal epithelium. FEMS Immunology and Medical Microbiology 54: 215-223.
Crossref, MedlineGoogle Scholar
Guandalini, S., 2008. Probiotics for children with diarrhea: an update. Journal of Clinical Gastroenterology 42 Suppl. 2: S53-S57.
Crossref, MedlineGoogle Scholar
Guandalini, S., Pensabene, L., Zikri, M.A., Dias, J.A., Casali, L.G., Hoekstra, H., Kolacek, S., Massar, K., Micetic-Turk, D., Papadopoulou, A., De Sousa, J.S., Sandhu, B., Szajewska, H. and Weizman, Z., 2000. Lactobacillus GG administered in oral rehydration solution to children with acute diarrhea: a multicenter European trial. Journal of Pediatric Gastroenterology and Nutrition 30: 54-60.
Crossref, MedlineGoogle Scholar
Guarino, A., Albano, F., Guandalini, S., Booth, I., Ferreira, R.C., Desjeux, J.F., Farthing, M., Hoekstra, H., Isolauri, E., Milla, P., Molla, M., Sandhu, B., Taminiau, J., Van Caille-Bertand, M. and Walker-Smith, J., 2001. Oral rehydration: toward a real solution. Journal of Pediatric Gastroenterology and Nutrition 33: S2-S12.
Crossref, MedlineGoogle Scholar
Guarino, A., Vecchio, A.L. and Canani, R.B., 2009. Probiotics as prevention and treatment for diarrhea. Current Opinion in Gastroenterology 25: 18-23.
Crossref, MedlineGoogle Scholar
Harmsen, M.M., Van Solt, C.B., Hoogendoorn, A., Van Zijderveld, F.G., Niewold, T.A. and Van der Meulen, J., 2005. Escherichia coli F4 fimbriae specific llama single-domain antibody fragments effectively inhibit bacterial adhesion in vitro but poorly protect against diarrhoea. Veterinary Microbiology 111: 89-98.
Crossref, MedlineGoogle Scholar
Hibberd, P.L., 2009. Probiotics for infectious diarrhea and traveler's diarrhea – What do we really know? In: Charalampopoulus, D. and Rastall, R.A. (eds.) Prebiotics and probiotics science and technology. Springer, New York, NY, USA, pp. 845-899.
Google Scholar
Huang, C., Qiao, S., Li, D., Piao, X. and Ren, J., 2004. Effects of Lactobacilli on the performance, diarrhea incidence, VFA concentration and gastrointestinal microbial flora of weaning pigs. Asian-Australasian Journal of Animal Sciences 17: 401-409.
CrossrefGoogle Scholar
Jacela, J.Y., Derouchey, J.M., Tokach, M.D., Goodband, R.D., Nelssen, J.L., Renter, D.G. and Dritz, S.S., 2010. Feed additives for swine: fact sheets prebiotics and probiotics, and phytogenics. Journal of Swine Health and Production 18: 132-134.
Google Scholar
Kararli, T.T., 1995. Comparison of the gastrointestinal anatomy, physiology, and biochemistry of humans and commonly used laboratory animals. Biopharmaceutics and Drug Disposition 16: 351-380.
Crossref, MedlineGoogle Scholar
Kiarie, E., Krause, D.O. and Nyachoti, C.M., 2008a. Net fluid and electrolyte losses in enterotoxigenic Escherichia coli infected piglet small intestine upon perfusion with fumaric acid, zinc oxide, egg yolk antibodies or carbadox. Canadian Journal of Animal Science 88: 485-488.
CrossrefGoogle Scholar
Kiarie, E.G., Slominski, B.A., Krause, D.O. and Nyachoti, C.M., 2008b. Non-starch polysaccharide hydrolysis products of soybean and canola meal protect against enterotoxigenic Escherichia coli in piglets. Journal of Nutrition 138: 502-508.
Crossref, MedlineGoogle Scholar
Kiarie, E.G., Slominski, B.A. and Nyachoti, C.M., 2010. Effect of products derived from hydrolysis of wheat and flaxseed non starch polysaccharides by carbohydrase enzymes on net absorption in enterotoxigenic Escherichia coli (K88) challenged piglet jejunal segments. Animal Science Journal 81: 63-71.
Crossref, MedlineGoogle Scholar
Kiers, J.L., Hoogendoorn, A., Nout, R.M.J., Rombouts, F.M., Nabuurs, M.J.A., and Van der Meulen, J., 2006a. Effect of osmolality on net fluid absorption in non-infected and ETEC-infected piglet small intestinal segments. Research in Veterinary Science 81: 274-279.
Crossref, MedlineGoogle Scholar
Kiers, J.L., Nout, M.J.R., Rombouts, F.M., Nabuurs, M.J.A. and Van der Meulen, J., 2007. A high molecular weight soluble fraction of tempeh protects against fluid losses in Escherichia coli-infected piglet small intestine. British Journal of Nutrition 98: 320-325.
Crossref, MedlineGoogle Scholar
Kiers, J.L., Nout, M.J.R., Rombouts, F.M., Van Andel, E.E., Nabuurs, M.J.A. and Van der Meulen, J., 2006b. Effect of processed and fermented soyabeans on net absorption in enterotoxigenic Escherichia coli-infected piglet small intestine. British Journal of Nutrition 95: 1193-1198.
Crossref, MedlineGoogle Scholar
Konstantinov, S.R., Smidt, H., Akkermans, A.D.L., Casini, L., Trevisi, P., Mazzoni, M., De Filippi, S., Bosi, P. and De Vos, W.M., 2008. Feeding of Lactobacillus sobrius reduces Escherichia coli F4 levels in the gut and promotes growth of infected piglets. FEMS Microbiology Ecology 66: 599-607.
Crossref, MedlineGoogle Scholar
Kosek, M., Bern, C. and Guerrant, R.L., 2003. The global burden of diarrhoeal disease, as estimated from studies published between 1992 and 2000. Bulletin of the World Health Organization 81: 197-204.
MedlineGoogle Scholar
Kuller, W.I., Van Beers-Schreurs, H.M.G., Soede, N.M., Langendijk, P., Taverne, M.A.M., Kemp, B. and Verheijden, J.H.M., 2007. Creep feed intake during lactation enhances net absorption in the small intestine after weaning. Livestock Science 108: 99-101.
CrossrefGoogle Scholar
Litten-Brown, J.C., Corson, A.M. and Clarke, L., 2010. Porcine models for the metabolic syndrome, digestive and bone disorders: a general overview. Animal 4: 899-920.
Crossref, MedlineGoogle Scholar
Lopez, A.D., Mathers, C.D., Ezzati, M., Jamison, D.T. and Murray, C.J., 2006. Global and regional burden of disease and risk factors, 2001: systematic analysis of population health data. The Lancet 367: 1747-1757.
Crossref, MedlineGoogle Scholar
Lunney, J.K., 2007. Advances in swine biomedical model genomics. International Journal of Biological Sciences 3: 179-184.
MedlineGoogle Scholar
McFarland, L.V., 2007. Meta-analysis of probiotics for the prevention of traveler's diarrhea. Travel Medicine and Infectious Disease 5: 97-105.
Crossref, MedlineGoogle Scholar
Metzler, B., Bauer, E. and Mosenthin, R., 2005. Microflora management in the gastrointestinal tract of piglets. Asian-Australasian Journal of Animal Sciences 18: 1353-1362.
CrossrefGoogle Scholar
Miller, E.R. and Ullrey, D.E., 1987. The pig as a model for human nutrition. Annual Review of Nutrition 7: 361-382.
Crossref, MedlineGoogle Scholar
Moughan, P.J., Birtles, M.J., Cranwell, P.D., Smith, W.C. and Pedraza, M., 1992. The piglet as a model animal for studying aspects of digestion and absorption in milk-fed human infants. World Review of Nutrition and Dietetics 67: 40-113.
MedlineGoogle Scholar
Nabuurs, M.J.A., 1998. Weaning piglets as a model for studying pathophysiology of diarrhea. Veterinary Quarterly 20: S42-S45.
Crossref, MedlineGoogle Scholar
Nabuurs, M.J.A., Hoogendoorn, A. and Van Zijderveld-Van Bemmel, A., 1996. Effect of supplementary feeding during the sucking period on net absorption from the small intestine of weaned pigs. Research in Veterinary Science 61: 72-77.
Crossref, MedlineGoogle Scholar
Nabuurs, M.J.A., Hoogendoorn, A. and Van Zijderveld, F.G., 1994. Effects of weaning and enterotoxigenic Escherichia coli on net absorption in the small intestine of pigs. Research in Veterinary Science 56: 379-385.
Crossref, MedlineGoogle Scholar
Nabuurs, M.J.A., Hoogendoorn, A., Van Zijderveld, F.G. and Van der Klis, J.D., 1993. A long-term perfusion test to measure net absorption in the small intestine of weaned pigs. Research in Veterinary Science 55: 108-114.
Crossref, MedlineGoogle Scholar
Nagy, B. and Fekete, P.Z., 1999. Enterotoxigenic Escherichia coli (ETEC) in farm animals. Veterinary Research 30: 259-284.
MedlineGoogle Scholar
Niewold, T.A., Kerstens, H.H.D., Van der Meulen, J., Smits, M.A. and Hulst, M.M., 2005. Development of a porcine small intestinal cDNA micro-array: characterization and functional analysis of the response to enterotoxigenic E. coli. Veterinary Immunology and Immunopathology 105: 317-329.
Crossref, MedlineGoogle Scholar
Niewold, T.A., Van der Meulen, J., Kerstens, H.H.D., Smits, M.A. and Hulst, M.M., 2010. Transcriptomics of enterotoxigenic Escherichia coli infection. Individual variation in intestinal gene expression correlates with intestinal function. Veterinary Microbiology 141: 110-114.
Google Scholar
Niewold, T.A., Veldhuizen, E.J.A., Van der Meulen, J., Haagsman, H.P., De Wit, A.A.C., Smits, M.A., Tersteeg, M.H.G. and Hulst, M.M., 2007. The early transcriptional response of pig small intestinal mucosa to invasion by Salmonella enterica serovar typhimurium DT104. Molecular Immunology 44: 1316-1322.
Crossref, MedlineGoogle Scholar
Okeke, I.N., Aboderin, O.A., Byarugaba, D.K., Ojo, K.K. and Opintan, J.A., 2007. Growing problem of multidrug-resistant enteric pathogens in Africa. Emerging Infectious Diseases 13: 1640-1646.
Crossref, MedlineGoogle Scholar
Patterson, J.K., Lei, X.G. and Miller, D.D., 2008. The pig as an experimental model for elucidating the mechanisms governing dietary influence on mineral absorption. Experimental Biology and Medicine 233: 651-664.
CrossrefGoogle Scholar
Petri, W.A., Miller, M., Binder, H.J., Levine, M.M., Dillingham, R. and Guerrant, R.L., 2008. Enteric infections, diarrhea, and their impact on function and development. Journal of Clinical Investigation 118: 1277-1290.
Crossref, MedlineGoogle Scholar
Pickering, L.K., 2008. Antimicrobial resistance among enteric pathogens. In: Finn, A. and Pollard, A.J. (eds.) Hot topics in infection and immunity in children IV. Springer, New York, NY, USA, pp. 154-163.
Google Scholar
Qadri, F., Svennerholm, A.M., Faruque, A.S.G. and Sack, R.B., 2005. Enterotoxigenic Escherichia coli in developing countries: epidemiology, microbiology, clinical features, treatment, and prevention. Clinical Microbiology Reviews 18: 465-483.
Crossref, MedlineGoogle Scholar
Roselli, M., Finamore, A., Britti, M.S., Bosi, P., Oswald, I. and Mengheri, E., 2005. Alternatives to in-feed antibiotics in pigs: evaluation of probiotics, zinc or organic acids as protective agents for the intestinal mucosa. A comparison of in vitro and in vivo results. Animal Research 54: 203-218.
CrossrefGoogle Scholar
Sangild, P.T., 2006. Gut responses to enteral nutrition in preterm infants and animals. Experimental Biology and Medicine 231: 1695-1711.
CrossrefGoogle Scholar
Santosham, M., Keenan, E.M., Tulloch, J., Broun, D. and Glass, R., 1997. Oral rehydration therapy for diarrhea: an example of reverse transfer of technology. Pediatrics 100: e10.
CrossrefGoogle Scholar
Sazawal, S., Hiremath, G., Dhingra, U., Malik, P., Deb, S. and Black, R.E., 2006. Efficacy of probiotics in prevention of acute diarrhoea: a meta-analysis of masked, randomised, placebo-controlled trials. The Lancet Infectious Diseases 6: 374-382.
Crossref, MedlineGoogle Scholar
Schroeder, B., Duncker, S., Barth, S., Bauerfeind, R., Gruber, A.D., Deppenmeier, S. and Breves, G., 2006. Preventive effects of the probiotic Escherichia coli strain Nissle 1917 on acute secretory diarrhea in a pig model of intestinal infection. Digestive Diseases and Sciences 51: 724-731.
Crossref, MedlineGoogle Scholar
Shah, N., Dupont, H.L. and Ramsey, D.J., 2009. Global etiology of travelers' diarrhea: systematic review from 1973 to the present. American Journal of Tropical Medicine and Hygiene 80: 609-614.
Crossref, MedlineGoogle Scholar
Simon, O., Vahjen, W. and Scharek, L., 2003. Micro-organisms as feed additives: probiotics. In: Ball, R.O. (ed.) 9th International symposium on digestive physiology in pigs, Banff, Canada, pp. 295-318. Google Scholar
Smits, M.A., 2006. Using genomics to unravel host-pathogen interactions. 8th World Congress on Genetics Applied to Livestock Productions, 13-18 August 2006, Belo Horizonte, MG, Brazil. Google Scholar
Szajewska, H. and Mrukowicz, J.Z., 2005. Use of probiotics in children with acute diarrhea. Pediatric Drugs 7: 111-122.
Crossref, MedlineGoogle Scholar
Szajewska, H., Setty, M., Mrukowicz, J. and Guandalini, S., 2006. Probiotics in gastrointestinal diseases in children: hard and not-so-hard evidence of efficacy. Journal of Pediatric Gastroenterology and Nutrition 42: 454-475.
Crossref, MedlineGoogle Scholar
Van Beers-Schreurs, H.M.G. and Bruininx, E.M.A.M., 2002. Nutritional management to prevent disorders in post-weaning pig health. In: Blok, M.C., Vahl, H.A., De Lange, L., Van de Braak, A.E., Hemke, G. and Hessing, M. (eds.) Nutrition and health of the gastrointestinal tract. Wageningen Academic Publishers, Wageningen, the Netherlands, pp. 135-158.
Google Scholar
Van der Meulen, J. and Jansman, A.J.M., 2010. Effect of pea and faba bean fractions on net fluid absorption in ETEC-infected small intestinal segments of weaned piglets. Livestock Science 133: 207-209.
CrossrefGoogle Scholar
Van der Meulen, J., Koopmans, S.J., Dekker, R.A. and Hoogendoorn, A., 2010. Increasing weaning age of piglets from 4 to 7 weeks reduces stress, increases post-weaning feed intake but does not improve intestinal functionality. Animal 4: 1653-1666.
Crossref, MedlineGoogle Scholar
Van Haver, E., Oste, M. and Van Ginneken, C., 2005. Het varken als model voor het humaan gastro-intestinaal onderzoek [The pig as a model for human gastrointestinal studies]. Vlaams Diergeneeskundig Tijdschrift 74: 65-76. Google Scholar
Van Niel, C.W., Feudtner, C., Garrison, M.M. and Christakis, D.A., 2002. Lactobacillus therapy for acute infectious diarrhea in children: a meta-analysis. Pediatrics 109: 678-684.
Crossref, MedlineGoogle Scholar
Vanbelle, M., Teller, E. and Focant, M., 1990. Probiotics in animal nutrition: a review. Archiv für Tierernährung 40: 543-567.
Crossref, MedlineGoogle Scholar
Veldhuizen, E.J.A., Van Dijk, A., Tersteeg, M.H.G., Kalkhove, S.I.C., Van der Meulen, J., Niewold, T.A. and Haagsman, H.P., 2007. Expression of β-defensins pBD-1 and pBD-2 along the small intestinal tract of the pig: lack of upregulation in vivo upon Salmonella typhimurium infection. Molecular Immunology 44: 276-283.
Crossref, MedlineGoogle Scholar
Ventura, M., O'Flaherty, S., Claesson, M.J., Turroni, F., Klaenhammer, T.R., Van Sinderen, D. and O'Toole, P.W., 2009. Genome-scale analyses of health-promoting bacteria: probiogenomics. Nature Reviews Microbiology 7: 61-71.
Crossref, MedlineGoogle Scholar
Wang, A., Yu, H., Gao, X., Li, X. and Qiao, S., 2009. Influence of Lactobacillus fermentum I5007 on the intestinal and systemic immune responses of healthy and E. coli challenged piglets. Antonie van Leeuwenhoek 96: 89-98.
Crossref, MedlineGoogle Scholar
Wolvers, D., Antoine, J.M., Myllyluoma, E., Schrezenmeir, J., Szajewska, H. and Rijkers, G.T., 2010. Guidance for substantiating the evidence for beneficial effects of probiotics: prevention and management of infections by probiotics. Journal of Nutrition 140: 698S-712S.
Crossref, MedlineGoogle Scholar
Yan, F. and Polk, D.B., 2010. Probiotics: progress toward novel therapies for intestinal diseases. Current Opinion in Gastroenterology 26: 95-101.
Crossref, MedlineGoogle Scholar
Zhang, L., Xu, Y.Q., Liu, H.Y., Lai, T., Ma, J.L., Wang, J.F. and Zhu, Y.H., 2010. Evaluation of Lactobacillus rhamnosus GG using an Escherichia coli K88 model of piglet diarrhoea: effects on diarrhoea incidence, faecal microflora and immune responses. Veterinary Microbiology 141: 142-148.
Crossref, MedlineGoogle Scholar

New titles

Related titles:

< >

Issue Details

Beneficial Microbes


Beneficial Microbes

Publication Cover
Print ISSN: 1876-2883
Online ISSN: 1876-2891
Get Permission

2022 Journal Impact Factor 5.4
source: Journal Impact Factor 2023™ from Clarivate™

2022 CiteScore

Purchase Options

Institutional Offers

For institutional orders, please contact [email protected].