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Research Article

Microencapsulation in genipin cross-linked gelatine-maltodextrin improves survival of Bifidobacterium adolescentis during exposure to in vitro gastrointestinal conditions

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Pages 387-399 | Received 16 Apr 2009, Accepted 27 Sep 2009, Published online: 27 Oct 2009

References

  • Anal AK, Singh H. Recent advances in microencapsulation of probiotics for industrial applications and targeted delivery. Trends Food Sci Technol 2007; 18: 240–251
  • Anal AK, Stevens WF, Remuñán-Lopez C. Ionotropic crosslinked chitosan microspheres for controlled release of ampicillin. Int J Pharm 2006; 312: 166–173
  • Annan NT, Borza A, Moreau DL, Allan-Wojtas PM, Truelstrup Hansen L. Effect of process variables on particle size and viability of Bifidobacterium lactis Bb-12 in genipin-gelatine microspheres. J Microencapsulation 2007; 24: 152–162
  • Annan NT, Borza AD, Truelstrup Hansen L. Encapsulation in alginate-coated gelatin microspheres improves survival of the probiotic Bifidobacterium adolescentis 15703T during exposure to simulated gastro-intestinal conditions. Food Res Int 2008; 41: 184–193
  • Araya M, Morelli L, Reid G, Sanders ME, Stanton C, Pineiro M, Ben Embarek P. Guidelines for the evaluation of probiotics in food. Joint FAO/WHO working group report on drafting guidelines for the evaluation of probiotics in food. London, ONCanada 2002, ftp://ftp.fao.org/es/esn/food/wgreport2.pdf
  • Ben Amor K, Breeuwer P, Verbaarschot P, Rombouts FM, Akkermans ADL, De Vos WM, Abee T. Multiparametric flow cytometry and cell sorting for the assessment of viable, injured, and dead Bifidobacterium cells during bile salt stress. Appl Environ Microbiol 2002; 68: 5209–5216
  • Bomba A, Nemcová R, Gancarčícová S, Herich R, Guba P, Mudroňová D. Improvement of the probiotic effect of micro-organisms by their combination with maltodextrins, fructo-oligosaccharides and polyunsaturated fatty acids. Br J Nutr 2002; 88(Suppl 1)S95–S99
  • Butler M. Phase separation in a sheared gelatine/maltodextrin mixture studied by small-angle light scattering. Biomacromolecules 2002; 3: 1208–1216
  • Butler MF, Heppenstall-Butler M. Phase separation in gelatine/dextran and gelatine/maltodextrin mixtures. Food Hydrocoll 2003; 17: 815–830
  • Butler MF, Ng Y-F, Pudney PDA. Mechanisms and kinetics of the crosslinking reaction between biopolymers containing primary amine groups and genipin. J Polym Sci A Polym Chem 2003; 41: 3941–3953
  • Champagne CP, Gardner NJ, Roy D. Challenges to the addition of probiotic cultures to foods. Crit Rev Food Sci Nutr 2005; 45: 61–84
  • Charalampopoulos D, Pandiella SS, Webb C. Evaluation of the effect of malt, wheat and barley extracts on the viability of potentially probiotic lactic acid bacteria under acidic conditions. Int J Food Microbiol 2003; 82: 133–141
  • Charteris WP, Kelly PM, Morelly L, Collins JK. Development and applications of an in vivo methodology to determine the transit tolerance of potential probiotic Lactobacillus and Bifidobacterium species in the upper human gastrointestinal tract. J Appl Microbiol 1998; 84: 759–768
  • Chen H, Ouyang W, Lawuyi B, Prakash S. Genipin cross-linked alginate-chitosan microcapsules: Membrane characterization and optimization of cross-linking reaction. Biomacromolecules 2006; 7: 2091–2098
  • Chiono V, Pulieri E, Vozzi G, Ciardelli G, Ahluwalia A, Giusti P. Genipin-crosslinked chitosan/gelatine blends for biomedical applications. J Mater Sci Mater Med 2008; 19: 889–898
  • Corcoran BM, Stanton C, Fitzgerald GF, Ross RP. Survival of probiotic lactobacili in acidic environments is enhanced in the presence of metabolizable sugars. Appl Environ Microbiol 2005; 71: 3060–3067
  • Cotter PD, Hill C. Surviving the acid test: Responses of Gram-positive bacteria to low pH. Microbiol Molec Biol Rev 2003; 67: 429–453
  • Crittenden R, Laitila A, Forssell P, Matto J, Saarela M, Matilla-Sandholm T, Myllarinen P. Adhesion of bifidobacteria to granular starch and its implications in probiotic technologies. Appl Environ Microbiol 2001; 67: 3469–3475
  • Crittenden R, Weerakkaody R, Sanguansri L, Augustin MA. Synbiotic microcapsules that enhance microbial viability during nonrefrigerated storage and gastrointestinal transit. Appl Environ Microbiol 2006; 72: 2280–2282
  • De Belder AN, Granath K. Preparation and properties of fluorescein-labelled dextrans. Carbohyd Res 1973; 30: 375–378
  • DeSmet I, van Hoorde L, van de Woestyne M, Cristiaens H, Verstraete W. Significance of bile salts hydrolytic activities of lactobacilli. J Appl Bacteriol 1995; 79: 292–301
  • Doleyres Y, Lacroix C. Technologies with free and immobilised cells for probiotic bifidobacteria production and protection. Int Dairy J 2005; 15: 973–988
  • Guérin D, Vuillemard J-C, Subirade M. Protection of bifidobacteria encapsulated in polysaccharide-protein gel beads against gastric juice and bile. J Food Protect 2003; 66: 2076–2084
  • Hou YC, Tsai SY, Lai PY, Chen YS, Chao PDL. Metabolism and pharmacokinetics of genipin and geniposide in rats. Food Chem Toxicol 2008; 46: 2764–2769
  • Huang Y, Adams MC. In vitro assessment of the upper gastrointestinal tolerance of potential probiotic dairy propionibacteria. Int J Food Microbiol 2004; 91: 253–260
  • Iwanaga K, Yabuta T, Kakemi M, Morimoto K, Tabata Y, Ikada Y. Usefulness of microspheres composed of gelatine with various crosslinking density. J Microencapsulation 2003; 20: 767–776
  • Jankowski T, Zielinska M, Wysakowska A. Encapsulation of lactic acid bacteria with alginate/starch capsules. Biotechnol Techniques 1997; 11: 31–34
  • Jarvis GN, Thiele JH. Qualitative Rhodamine B assay which uses tallow as a substrate for lipolytic obligately anaerobic bacteria. J Microbiol Methods 1997; 29: 41–47
  • Kailasapathy K. Microencapsulation of probiotic bacteria: Technology and potential applications. Curr Issues Intest Microbiol 2002; 3: 39–48
  • Khalil AH, Mansour EH. Alginate encapsulated bifidobacteria survival in mayonnaise. J Food Sci 1998; 63: 702–705
  • King AH. A review of available technology, focusing on hydrocolloids. Encapsulation of food ingredients: A review of available technology, focusing on hydrocolloids, SJ Risch, GA Reineccius. Oxford University Press, Oxford, UK, Washington, DC 1995
  • Krasaekoopt W, Bhandari B, Deeth H. Evaluation of encapsulation techniques of probiotics for yoghurt. Int Diary J 2003; 13: 3–13
  • Lamura A, Gonnella G. Computer simulation of domain growth in off-critical quences of two-dimensional binary mixtures. Comp Mater Sci 2002; 25: 531–539
  • Lankaputhra WEV, Shah NP. Survival of Lactobacillus acidophilus and Bifidobacterium ssp. in the presence of acid and bile salts. Cultured Dairy Prod J 1995; 30: 2–7
  • Lee KY, Heo TR. Survival of Bifidobacterium longum immobilized in calcium alginate beads in simulated gastric juices and bile salt solution. Appl Environ Microbiol 2000; 66: 869–873
  • Liang H-C, Chang W-H, Lin K-J, Sung H-W. Genipin-crosslinked gelatine microspheres as a drug carrier for intramuscular administration: In vitro and in vivo studies. J Biomed Mater Res 2003; 65A: 271–282
  • Lopes CMA, Felisberti MI. Mechanical behaviour and biocompatibility of poly(1-vinyl-2-pyrrolidinone)-gelatine IPN hydrogels. Biomaterials 2003; 24: 1279–1284
  • Lorén N, Hermansson A-M. Phase separation and gel formation in kinetically trapped gelatine/maltodextrin gels. Int J Biol Macromol 2000; 27: 249–262
  • Lorén N, Hermansson A-M, Williams MAK, Lundin L, Foster TJ, Hubbard CD, Clark AH, Norton IT, Bergström ET, Goodall DM. Phase separation induced by conformational ordering of gelatine in gelatine/maltodextrin mixtures. Macromolecules 2001; 34: 289–297
  • Lu M-C, Hsiang S-W, Lai T-Y, Ao C-H, Lin L-Y, Chen Y-S. Influence of cross-linking degree of a biodegradable genipin-cross-linked gelatine guide on peripheral nerve regeneration. J Biomater Sci Polym Ed 2007; 18: 843–963
  • Madureira AR, Pereira CI, Truszkowska K, Gomes AM, Pintado ME, Malcata FX. Survival of probiotic bacteria in a whey cheese vector submitted to environmental conditions prevailing in the gastrointestinal tract. Int Dairy J 2005; 15: 921–927
  • Mattila-Sandholm T, Myllärinen P, Crittenden R, Mogensen G, Saarela M. Technological challenges for future probiotic foods. Int Dairy J 2002; 12: 173–182
  • Mättö J, Alakomo H-L, Vaari A, Virkajarvi I, Saarela M. Influence of processing conditions on Bifidobacterium animalis subsp. lactis functionality with a special focus on acid tolerance and factors affecting it. Int Dairy J 2006; 16: 1029–1037
  • Muthukumarasny P, Allan-Wojtas P, Holley R. Stability of Lactobacillus reuteri in different types of microcapsules. J Food Sci 2006; 71: 20–24
  • Nickerson MT, Farnworth R, Wagar E, Hodge SM, Rousseau D, Paulson AT. Some physical and microstructural properties of genipin crosslinked gelatine-maltodextrin hydrogels. Int J Biol Macromol 2006; 38: 40–44
  • Noriega L, Cuevas I, Margolles A, de los Reyes-Gavilán CG. Deconjugation and bile salts hydrolase activity by Bifidobacterium strains with acquired resistance to bile. Int Dairy J 2006; 16: 850–855
  • Norton IT, Frith WJ. Microstructure design in mixed biopolymer composites. Food Hydrocoll 2001; 15: 543–553
  • Olano-Martin E, Mountzouris K, Gibson GR, Rastall A. In vitro fermentability of dextran, olgodextran and maltodextrin by human gut bacteria. Br J Nutr 2000; 83: 247–255
  • Perrin S, Warchol M, Grill JP, Schneider F. Fermentations of fructo-ologosaccharides and their components by Bifidobacterium infantis ATCC 15697 on batch culture in semi-synthetic medium. J Appl Microbiol 2001; 90: 859–865
  • Picot A, Lacroix C. Encapsulation of bifidobacteria in whey protein-based microcapsules and survival in simulated gastrointestinal conditions and in yoghurt. Int Dairy J 2004; 14: 505–515
  • Pollauf EJ, Pack DW. Use of thermodynamic parameters for design of double-walled microsphere fabrication method. Biomaterials 2006; 27: 2898–2906
  • Rosenberg M, Lee S-J. Water-insoluble, whey protein-based microspheres prepared by an all-aqueous process. J Food Sci 2004; 69: 50–58
  • Ruas-Madiedo P, Hernández-Barranco A, Margolles A, de los Reyes-Gavilán CG. A bile salt-resistant derivative of Bifidobacterium animalis has an altered fermentation pattern when grown on glucose and maltose. Appl Environ Microbiol 2005; 71: 6564–6570
  • Rycroft CE, Jones MR, Gibson GR, Rastall RA. Fermentation properties of gentio-oligosaccharides. Lett Appl Microbiol 2001; 32: 156–161
  • Saarela M, Mogensen G, Fonden R, Matto J, Mattila-Sandholm T. Probiotic bacteria: Safety, functional and technological properties. J Biotechnol 2000; 84: 197–215
  • Sanders JW, Venema G, Kok J. Environmental stress responses in Lactococcus lactis. FEMS Microbiol Rev 1999; 23: 483–501
  • Shah NP, Ravula RR. Microencapsulation of probiotic bacteria and their survival in frozen fermented dairy desserts. Aust J Dairy Technol 2000; 55: 139–144
  • Shimamura S, Abe F, Ishibashi N, Miyakawa H, Yaeshima T, Araya T, Tomita M. Relationship between oxygen sensitivity and oxygen metabolism of Bifidobacterium species. J Dairy Sci 1992; 75: 3296–3306
  • Sun WR, Griffiths MW. Survival of bifidobacteria in yogurt and simulated gastric juice following immobilization in gellan-xanthan beads. Int J Food Microbiol 2000; 61: 17–25
  • Sung H-W, Liang I, -L, Chen C-N, Huang R-N, Liang H-F. Stability of a biological tissue fixed with a naturally occurring crosslinking agent (genipin). J Biomed Mater Res 2001; 55: 538–546
  • Takahashi N, Xiao J-Z, Miyaji K, Yaeshiima T, Hiramatsu A, Iwatsuki K, Kokubo S, Hosono A. Selection of acid tolerant Bifidobacteria and evidence for a low pH-inducible acid tolerance response in Bifidobacterium longum. J Dairy Res 2004; 71: 340–345
  • Tromp RH, Jones RAL. Off-critical phase separation and gelation in solutions of gelatine and dextran. Macromolecules 1996; 29: 8109–8116
  • Truelstrup Hansen L, Allan-Wojtas PM, Jin Y-L, Paulson AT. Survival of Ca-alginate microencapsulated Bifidobacterium spp. in milk and simulated gastrointestinal conditions. Food Microbiol 2002; 19: 35–45
  • Wang X, Brown IL, Evans AJ, Conway PL. The protective effects of high amylose maize (amylomaize) starch granules on the survival of Bifidobacterium spp. in the mouse intestinal tract. J Appl Microbiol 1999; 87: 631–639

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