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Articles

Effects of galacto-oligosaccharide on growth performance, feacal microbiota, immune response and antioxidant capability in weaned piglets

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Pages 63-69 | Received 17 Nov 2018, Accepted 14 Feb 2020, Published online: 25 Feb 2020

References

  • Akbari P, Braber S, Alizadeh A, Verheijden KA, Schoterman MH, Kraneveld AD, Garssen J, Fink-Gremmels J. 2015. Galacto-oligosaccharides protect the intestinal barrier by maintaining the tight junction network and modulating the inflammatory responses after a challenge with the mycotoxin deoxynivalenol in human Caco-2 cell monolayers and B6C3F1 mice. J Nutr. 145(7):1604–1613.
  • Alizadeh A, Akbari P, Difilippo E, Schols HA, Ulfman LH, Schoterman MH, Garssen J, Fink-Gremmels J, Braber S. 2016. The piglet as a model for studying dietary components in infant diets: effects of galacto-oligosaccharides on intestinal functions. Br J Nutr. 115(4):605–618.
  • Bhatia S, Prabhu PN, Benefiel AC, Miller MJ, Gaskins HR. 2015. Galacto-oligosaccharides may directly enhance intestinal barrier function through the modulation of goblet cells. Mol Nutr Food Res. 59(3):566–573.
  • Boehm G, Jelinek J, Stahl B, Van LK, Knol J, Fanaro S, Moro G, Vigi V. 2004. Prebiotics in infant formulas. J Clin Gastroenterol. 38(6 Suppl):S76–S79.
  • Cardellecobas A, Corzo N, Olano A, Peláez C, Requena T, Ávila M. 2011. Galactooligosaccharides derived from lactose and lactulose: influence of structure on lactobacillus, streptococcus and bifidobacterium growth. Int J Food Microbiol. 149(1):81–87.
  • Che L, Zhan L, Fang Z, Lin Y, Yan T, Wu D. 2012. Effects of dietary protein sources on growth performance and immune response of weanling pigs. Livest Sci. 148(1-2):1–9.
  • Choct M, Cadogan DJ. 2001. How effective are supplemental enzymes in pig diets? In: P. D. Cranwell, editor. Manipulating pig production VIII. Werribee: Australian Pig Science Association; p. 240–247.
  • Dai Z, Su D, Zhang Y, Sun Y, Hu B, Ye H, Zeng X. 2014. Immunomodulatory activity in vitro and in vivo of verbascose from mung beans (Phaseolus aureus). J Agric Food Chem. 62(44):10727–10735.
  • Eiwegger T, Stahl B, Haidl P, Schmitt J, Boehm G, Dehlink E, Urbanek R, Szepfalusi Z. 2010. Prebiotic oligosaccharides: in vitro evidence for gastrointestinal epithelial transfer and immunomodulatory properties. Pediatr Allergy Immunol. 21(8):1179–1188.
  • Eiwegger T, Stahl B, Schmitt J, Boehm G, Gerstmayr M, Pichler J, Dehlink E, Loibichler C, Urbanek R, Szepfalusi Z. 2004. Human milk-derived oligosaccharides and plant-derived oligosaccharides stimulate cytokine production of cord blood T-cells in vitro. Pediatr Res. 56(4):536–540.
  • Fanaro S, Marten B, Bagna R, Vigi V, Fabris C, Peñaquintana L, Argüelles F, Scholz-Ahrens KE, Sawatzki G, Zelenka R, et al. 2009. Galacto-oligosaccharides are bifidogenic and safe at weaning: a double-blind randomized multicenter study. J Pediatr Gastroenterol Nutr. 48(1):82–88.
  • Gibson GR, Fuller R. 2000. Aspects of in vitro and in vivo research approaches directed toward identifying probiotics and prebiotics for human use. J Nutr. 130(2S Suppl):391S–395S.
  • Gopal PK, Sullivan PA, Smart JB. 2001. Utilisation of galacto-oligosaccharides as selective substrates for growth by lactic acid bacteria including bifidobacterium lactis DR10 and lactobacillus rhamnosus DR20. Int Dairy J. 11(1):19–25.
  • Hajiaghapour M, Rezaeipour V. 2018. Comparison of two herbal essential oils, probiotic, and mannan-oligosaccharides on egg production, hatchability, serum metabolites, intestinal morphology, and microbiota activity of quail breeders. Livest Sci. 210:93–98.
  • Hoseinifar SH, Ahmadi A, Raeisi M, Hoseini SM, Khalili M, Behnampour N. 2017. Comparative study on immunomodulatory and growth enhancing effects of three prebiotics (galactooligosaccharide, fructooligosaccharide and inulin) in common carp (cyprinus carpio). Aquac Res. 48(7):3298–3307.
  • Hosono A, Ozawa A, Kato R, Ohnishi Y, Nakanishi Y, Kimura T, Nakamura R. 2003. Dietary fructooligosaccharides induce immunoregulation of intestinal IgA secretion by murine peyer's patch cells. J Agricult Chem Soc Japan. 67(4):758–764.
  • Hu W, Zhao J, Wang J, Yu T, Wang J, Li N. 2012. Transgenic milk containing recombinant human lactoferrin modulates the intestinal flora in piglets. Biochem Cell Biol. 90(3):485–496.
  • Inan MS, Rasoulpour RJ, Yin L, Hubbard AK, Rosenberg DW, Giardina C. 2000. The luminal short-chain fatty acid butyrate modulates NF-κB activity in a human colonic epithelial cell line. Gastroenterology. 118(4):724–734.
  • Jeurink PV, Esch BCV, Rijnierse A, Garssen J, Knippels LM. 2013. Mechanisms underlying immune effects of dietary oligosaccharides. Am J Clin Nutr. 98(2):572S–577S.
  • Jung SJ, Houde R, Baurhoo B, Zhao X, Lee BH. 2008. Effects of galacto-oligosaccharides and a bifidobacteria lactis-based probiotic strain on the growth performance and fecal microflora of broiler chickens. Poult Sci. 87(9):1694–1699.
  • Kaisho T, Akira S. 2002. Toll-like receptors as adjuvant receptors. BBA – Molecular Cell Research. 1589(1):1–13.
  • Lallès JP, Bosi P, Smidt H, Stokes CR. 2007. Nutritional management of gut health in pigs around weaning. Proc Nutr Soc. 66(2):260–268.
  • Leforestier G, Blais A, Blachier F, Marsset-Baglieri A, Davila-Gay AM, Perrin E, Tome D. 2009. Effects of galacto-oligosaccharide ingestion on the mucosa-associated mucins and sucrase activity in the small intestine of mice. Eur J Nutr. 48(8):457–464.
  • Martinez-Ferez A, Rudloff S, Guadix A, Henkel CA, Pohlentz G, Boza JJ, Guadix EM, Kunz C. 2006. Goats’ milk as a natural source of lactose-derived oligosaccharides: isolation by membrane technology. Int Dairy J. 16(2):173–181.
  • Matsuki T, Tajima S, Hara T, Yahagi K, Ogawa E, Kodama H. 2016. Infant formula with galacto-oligosaccharides (OM55N) stimulates the growth of indigenous bifidobacteria in healthy term infants. Benefic Microbes. 7(4):453–461.
  • Montagne L, Pluske JR, Hampson DJ. 2003. A review of interactions between dietary fibre and the intestinal mucosa, and their consequences on digestive health in young non-ruminant animals. Anim Feed Sci Technol. 108(1):95–117.
  • Monteagudo-Mera A, Arthur JC, Jobin C, Keku T, Bruno-Barcena JM, Azcarate-Peril MA. 2016. High purity galacto-oligosaccharides enhance specific bifidobacterium species and their metabolic activity in the mouse gut microbiome. Benefic Microbes. 7(2):247–264.
  • Mountzouris KC, Xypoleas I, Kouseris I, Fegeros K. 2006. Nutrient digestibility, faecal physicochemical characteristics and bacterial glycolytic activity of growing pigs fed a diet supplemented with oligofructose or trans-galactooligosaccharides. Livest Sci. 105(1):168–175.
  • Nurmi JT, Puolakkainen PA, Rautonen NE. 2005. Bifidobacterium lactis sp. 420 up-regulates cyclooxygenase (cox)-1 and down-regulates cox-2 gene expression in a caco-2 cell culture model. Nutr Cancer. 51(1):83–92.
  • Rajauria G, Draper J, Mcdonnell M, O'Doherty JV. 2016. Effect of dietary seaweed extracts, galactooligosaccharide and vitamin E supplementation on meat quality parameters in finisher pigs. Innovative Food Sci Emerging Technol. 37(Part B):269–275.
  • Sakaguchi E, Sakoda C, Toramaru Y. 1998. Caecal fermentation and energy accumulation in the rat fed on indigestible oligosaccharides. Br J Nutr. 80(5):469–476.
  • Sanders LM, Henderson CE, Hong MY, Barhoumi R, Burghardt RC, Carroll RJ, Turner ND, Chapkin RS, Lupton JR. 2004. Pro-oxidant environment of the colon compared to the small intestine may contribute to greater cancer susceptibility. Cancer Lett. 208(2):155–161.
  • Scheppach W, Weiler F. 2004. The butyrate story: old wine in new bottles? Curr Opin Clin Nutr Metab Care. 7(5):563–567.
  • Sehirli O, Tozan A, Omurtag GZ, Cetinel S, Contuk G, Gedik N, Sener G. 2008. Protective effect of resveratrol against naphthalene-induced oxidative stress in mice. Ecotoxicol Environ Saf. 71(1):301–308.
  • Sen S, Chakraborty R, Sridhar C, Reddy YSR, De B. 2010. Free radicals, antioxidants, diseases and phytomedicines: current status and future prospect. Int J Pharmaceut Sci Rev Res. 3(3):91–100.
  • Shoaf K, Mulvey GL, Armstrong GD, Hutkins ARW. 2006. Prebiotic galactooligosaccharides reduce adherence of enteropathogenic escherichia coli to tissue culture cells. Infect Immun. 74(12):6920–6928.
  • Takasugi S, Ashida K, Maruyama S, Matsukiyo Y, Kaneko T, Yamaji T. 2013. A combination of a dairy product fermented by lactobacilli and galactooligosaccharides shows additive effects on mineral balances in growing rats with hypochlorhydria induced by a proton pump inhibitor. Biol Trace Elem Res. 153(1-3):309–318.
  • Tian S, Wang J, Yu H, Wang J, Zhu W. 2018. Effects of galacto-oligosaccharides on growth and gut function of newborn suckling piglets. J Anim Sci Biotechnol. 9(1):75–86.
  • Torres DPM, Gonçalves MDPF, Teixeira JA, Rodrigues LR. 2010. Galacto-oligosaccharides: production, properties, applications, and significance as prebiotics. Comprehen Rev Food Sci Food Safety. 9(5):438–454.
  • Tuohy KM, Rouzaud GC, Brück WM, Gibson GR. 2005. Modulation of the human gut microflora towards improved health using prebiotics–assessment of efficacy. Curr Pharm Des. 11(1):75–90.
  • Tzortzis G, Goulas AK, Gee JM, Gibson GR. 2005. A novel galactooligosaccharide mixture increases the bifidobacterial population numbers in a continuous in vitro fermentation system and in the proximal colonic contents of pigs in vivo. J Nutr. 135(7):1726–1731.
  • Tzortzis G, Vulevic J. 2009. Galacto-oligosaccharide prebiotics. New York (NY): Springer. 207–244.
  • Varasteh S, Braber S, Garssen J, Fink-Gremmels J. 2015. Galacto-oligosaccharides exert a protective effect against heat stress in a Caco-2 cell model. J Funct Foods. 16:265–277.
  • Verardo V, Crisá A, Ochando-Pulido JM, Martínez-Férez A. 2018. Oligosaccharides from colostrum and dairy by-products: determination, enrichment, and healthy effects. Stud Nat Prod Chem. 57:157–178.
  • Vulevic J, Juric A, Walton GE, Claus SP, Tzortzis G, Toward RE, Gibson GR. 2015. Influence of galacto-oligosaccharide mixture (B-GOS) on gut microbiota, immune parameters and metabonomics in elderly persons. Br J Nutr. 114(4):586–595.
  • Weaver CM, Martin BR, Nakatsu CH, Armstrong AP, Clavijo A, Mccabe LD, McCabe GP, Duignan S, Schoterman MH, van den Heuvel EG. 2011. Galactooligosaccharides improve mineral absorption and bone properties in growing rats through gut fermentation. J Agric Food Chem. 59(12):6501–6510.
  • Willskarp M. 1999. Immunologic basis of antigen-induced airway hyperresponsiveness. Annu Rev Immunol. 17(1):255–281.
  • Youakim A, Ahdieh M. 1999. Interferon-γ decreases barrier function in T84 cells by reducing ZO-1 levels and disrupting apical actin. Am J Physiol. 276(5 Pt 1):G1279–G1288.
  • Yousef MI, Saad AA, El-shennawy LK. 2009. Protective effect of grape seed proanthocyanidin extract against oxidative stress induced by cisplatin in rats. Food Chem Toxicol. 47(6):1176–1183.