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Immunology, microbiology and pharmacology

Evaluation of the influence of supplementing the diet with mannose or palm kernel meal on salmonella colonisation in poultry

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Pages 485-488 | Published online: 08 Nov 2007

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Bahman Navidshad, Juan Boo Liang, Mohammad Faseleh Jahromi, Amir Akhlaghi & Norhani Abdullah. (2015) A comparison between a yeast cell wall extract (Bio-Mos®) and palm kernel expeller as mannan-oligosac-charides sources on the performance and ileal microbial population of broiler chickens. Italian Journal of Animal Science 14:1.
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Uma S Babu & Richard B Raybourne. (2008) Impact of dietary components on chicken immune system and Salmonella infection. Expert Review of Anti-infective Therapy 6:1, pages 121-135.
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B. Sundu, A. Kumar & J. Dingle. (2006) Palm kernel meal in broiler diets: effect on chicken performance and health. World's Poultry Science Journal 62:2, pages 316-325.
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F. Van Immerseel, K. Cauwerts, L.A. Devriese, F. Haesebrouck & R. Ducatelle. (2002) Feed additives to control Salmonella in poultry. World's Poultry Science Journal 58:4, pages 501-513.
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C.M. Preston, K.J. McCracken & M.R. Bedford. (2001) Effect of wheat content, fat source and enzyme supplementation on diet metabolisability and broiler performance. British Poultry Science 42:5, pages 625-632.
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S. Dänicke, O. Simon, H. Jeroch, Kathrin Keller, Karola Gläser, H. Kluge & M.R. Bedford. (1999) Effects of dietary fat type, pentosan level and xylanase supplementation on digestibility of nutrients and metabolizability of energy in male broilers. Archiv für Tierernaehrung 52:3, pages 245-261.
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Articles from other publishers (20)

A. Teteh, G. Abbey, Y. Beblemegna, O.E. Oke, E. Decuypere, M. Gbeassor & K. Tona. (2020) Financial Implication of Moringa oleifera Leaf Incorporation into Layer-type Chickens’ Feed. International Journal of Poultry Science 19:8, pages 390-395.
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Yordan Mart&iacut, Aroldo Botello Le & Kefyalew Gebeyew. (2020) Effect of Palm Kernel Meal Inclusion on Growth Performance, Immune and Visceral Organ Weights and Cecal Lactic Acid Bacteria in Neonatal Broilers. International Journal of Poultry Science 19:6, pages 257-264.
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Rui Qing Foo, Mohammad Faseleh Jahromi, Wei Li Chen, Syahida Ahmad, Kok Song Lai, Zulkifli Idrus & Juan Boo Liang. (2020) Oligosaccharides from Palm Kernel Cake Enhances Adherence Inhibition and Intracellular Clearance of Salmonella enterica Serovar Enteritidis In Vitro. Microorganisms 8:2, pages 255.
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Kamelia M. Osman, Osama E Kamal, Heba N. Deif & Marwa M Ahmed. (2020) Phoenix dactylifera, mentha piperita and montanide™ ISA-201 as immunological adjuvants in a chicken model. Acta Tropica 202, pages 105281.
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Waewaree Boontiam & Sumetee Kittipongp. (2019) Effect of Dietary Palm Kernel Meal Supplementation on Growth Performance, Blood Metabolites, Microbial Population and Carcass Characteristics of Growing-Meat Quails. International Journal of Poultry Science 18:5, pages 201-207.
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Y. Yusrizal, R. Angel, A. Adrizal, B.E. Wanto, S. Fakhri & Y. Yatno. (2013) Feeding native laying hens diets containing palm kernel meal with or without enzyme supplementations. 2. Excreta nitrogen, ammonia, and microbial counts. Journal of Applied Poultry Research 22:2, pages 269-278.
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B. Vilà, D. de Queiroz, I. Badiola, A. Pérez-Vendrell & J. Brufau. (2012) Effects of carob bean gum on performance, nutrient digestibility and Salmonella enterica var. Enteritidis colonisation in chickens. Food Research International 45:2, pages 1133-1138.
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Francesc Molist, Rafael Gustavo Hermes, Arantza Gómez de Segura, Susana María Martín-Orúe, Josep Gasa, Edgar Garcia Manzanilla & José Francisco Pérez. (2011) Effect and interaction between wheat bran and zinc oxide on productive performance and intestinal health in post-weaning piglets. British Journal of Nutrition 105:11, pages 1592-1600.
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Alun J. Carter, Martin R. Adams, Martin J. Woodward & Roberto M. La Ragione. (2009) Control strategies for Salmonella colonisation of poultry: the probiotic perspective . Food Science & Technology Bulletin: Functional Foods 5:9, pages 103-115.
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K.D. Dunkley, T.R. Callaway, V.I. Chalova, J.L. McReynolds, M.E. Hume, C.S. Dunkley, L.F. Kubena, D.J. Nisbet & S.C. Ricke. (2009) Foodborne Salmonella ecology in the avian gastrointestinal tract. Anaerobe 15:1-2, pages 26-35.
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Petra M Becker & Sara Galletti. (2008) Food and feed components for gut health‐promoting adhesion of E. coli and Salmonella enterica . Journal of the Science of Food and Agriculture 88:11, pages 2026-2035.
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L.M. Donalson, J.L. McReynolds, W.K. Kim, V.I. Chalova, C.L. Woodward, L.F. Kubena, D.J. Nisbet & S.C. Ricke. (2008) The Influence of a Fructooligosaccharide Prebiotic Combined with Alfalfa Molt Diets on the Gastrointestinal Tract Fermentation, Salmonella Enteritidis Infection, and Intestinal Shedding in Laying Hens. Poultry Science 87:7, pages 1253-1262.
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Helen M. I. Osborn, Philip G. Evans & Karel Bezouska. 2008. Glycoscience. Glycoscience 2399 2444 .
P.M. Becker, S. Galletti, P.J. Roubos-van den Hil & P.G. Van Wikselaar. (2007) Validation of growth as measurand for bacterial adhesion to food and feed ingredients. Journal of Applied Microbiology 103:6, pages 2686-2696.
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L Heres, B Engel, F van Knapen, MC de Jong, JA Wagenaar & HA Urlings. (2003) Fermented liquid feed reduces susceptibility of broilers for Salmonella enteritidis. Poultry Science 82:4, pages 603-611.
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C. Février, Y. Lechevestrier, Y. Lebreton & Y. Jaguelin-Peyraud. (2001) Prediction of the standardized ileal true digestibility of amino acids from the chemical composition of oilseed meals in the growing pig. Animal Feed Science and Technology 90:1-2, pages 103-115.
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Karel Bezouška. 2001. Glycoscience. Glycoscience 1325 1431 .
Karel Bezouška. 2001. Glycoscience: Chemistry and Chemical Biology I–III. Glycoscience: Chemistry and Chemical Biology I–III 1325 1431 .
N. Ishihara, D.-C. Chu, S. Akachi & L.R. Juneja. (2000) Preventive effect of partially hydrolyzed guar gum on infection of Salmonella enteritidis in young and laying hens. Poultry Science 79:5, pages 689-697.
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P.J. Naughton, G. Grant, S. Bardocz & A. Pusztai. (2000) Modulation of Salmonella infection by the lectins of Canavalia ensiformis (Con A) and Galanthus nivalis (GNA) in a rat model in vivo. Journal of Applied Microbiology 88:4, pages 720-727.
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