Publication Cover
Drying Technology
An International Journal
Volume 33, 2015 - Issue 10
405
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

Whey Protein-Pullulan (WP/Pullulan) Polymer Blend for Preservation of Viability of Lactobacillus acidophilus

&

REFERENCES

  • Ouwehand, A.; Vaughan, E.E. Gastrointestinal Microbiology; Taylor & Francis: New York, 2006.
  • Gibson, G.R.; Roberfroid, M.B. Colonic Microbiota, Nutrition, and Health; Kluwer Academic: Boston, 1999.
  • Karthikeyan, N.; Elango, A.; Kumaresan, G.; Gopalakrishnamurty, T.; Raghunath, B. Enhancement of probiotic viability in ice cream by microencapsulation. International Journal of Science, Environment and Technology 2014, 3(1), 339–47.
  • Champagne, C.P.; Fustier, P. Microencapsulation for the improved delivery of bioactive compounds into foods. Current Opinion in Biotechnology 2007, 18(2), 184–90.
  • Charalampopoulos, D.; Wang, R.; Pandiella, S.; Webb, C. Application of cereals and cereal components in functional foods: A review. International Journal of Food Microbiology 2002, 79(1), 131–41.
  • Kailasapathy, K. Encapsulation technologies for functional foods and nutraceutical product development. CAB Reviews: Perspectives in Agriculture, Veterinary Science, Nutrition and Natural Resources. 2009, 4(033), 1–19.
  • de Vos, P.; Faas, M.M.; Spasojevic, M.; Sikkema, J. Encapsulation for preservation of functionality and targeted delivery of bioactive food components. International Dairy Journal 2010, 20(4), 292–302.
  • Desai, K.G.H.; Jin Park, H. Recent developments in microencapsulation of food ingredients. Drying Technology 2005, 23(7), 1361–94.
  • Páez, R.; Lavari, L.; Audero, G.; Cuatrin, A.; Zaritzky, N.; Reinheimer, J.; et al. Study of the effects of spray‐drying on the functionality of probiotic lactobacilli. International Journal of Dairy Technology 2013, 66(2), 155–61.
  • De Castro-Cislaghi, F.P.; Silva, C.D.R.E.; Fritzen-Freire, C.B.; Lorenz, J.G.; Sant'Anna, E.S. Bifidobacterium Bb-12 microencapsulated by spray drying with whey: Survival under simulated gastrointestinal conditions, tolerance to NaCl, and viability during storage. Journal of Food Engineering 2012, 113(2), 186–93.
  • Fritzen-Freire, C.B.; Prudêncio, E.S.; Pinto, S.S.; Muñoz, I.B.; Müller, C.M.O.; Vieira, C.R.W.; et al. Effect of the application of Bifidobacterium BB-12 microencapsulated by spray drying with prebiotics on the properties of ricotta cream. Food Research International 2013, 52(1), 50–5.
  • Oliveira, A.C.; Moretti, T.S.; Boschini, C.; Baliero, J.C.C.; Freitas, O.; Favaro-Trindade, C.S. Stability of microencapsulated B. lactis (Bl 01) and L. acidophilus (LAC 4) by complex coacervation followed by spray drying. Journal of Microencapsulation 2007, 24(7), 685–93.
  • Salar-Behzadi, S.; Wu, S.; Toegel, S.; Hofrichter, M.; Altenburger, I.; Unger, F.M.; et al. Impact of heat treatment and spray drying on cellular properties and culturability of Bifidobacterium bifidum BB-12. Food Research International 2013, 54(1), 93–101.
  • Golowczyc, M.A.; Silva, J.; Teixeira, P.; De Antoni, G.L.; Abraham, A.G. Cellular injuries of spray-dried Lactobacillus spp. isolated from kefir and their impact on probiotic properties. International Journal of Food Microbiology 2011, 144(3), 556–60.
  • Dissanayake, M.; Ramchandran, L.; Piyadasa, C.; Vasiljevic, T. Influence of heat and pH on structure and conformation of whey proteins. International Dairy Journal 2013, 28(2), 56–61.
  • Dissanayake, M.; Vasiljevic, T. Functional properties of whey proteins affected by heat treatment and hydrodynamic high-pressure shearing. Journal of Dairy Science 2008, 92(4), 1387–97.
  • Beaulieu, L.; Savoie, L.; Paquin, P.; Subirade, M. Elaboration and characterization of whey protein beads by an emulsification/cold gelation process: Application for the protection of retinol. Biomacromolecules 2002, 3(2), 239–48.
  • Ruffin, E.; Schmit, T.; Lafitte, G.; Dollat, J.-M.; Chambin, O. The impact of whey protein preheating on the properties of emulsion gel bead. Food Chemistry 2014, 151(0), 324–32.
  • Millqvist-Fureby, A.; Elofsson, U.; Bergenståhl, B. Surface composition of spray-dried milk protein-stabilised emulsions in relation to pre-heat treatment of proteins. Colloids and Surfaces B: Biointerfaces 2001, 21(1–3), 47–58.
  • Boye, J.I.; Godefroy, S.B. Allergen Management in the Food Industry; John Wiley & Sons: Hoboken, NJ, 2011.
  • Heelan, B.; Corrigan, O. Preparation and evaluation of microspheres prepared from whey protein isolate. Journal of Microencapsulation 1998, 15(1), 93–105.
  • Lee, S.; Rosenberg, M. Preparation and properties of glutaraldehyde cross-linked whey protein-based microcapsules containing theophylline. Journal of Controlled Release 1999, 61(1), 123–36.
  • Rosenberg, M.; Lee, S. Water‐insoluble, whey protein‐based microspheres prepared by an all‐aqueous process. Journal of Food Science 2004, 69(1), FEP50–FEP8.
  • Betz, M.; Kulozik, U. Whey protein gels for the entrapment of bioactive anthocyanins from bilberry extract. International Dairy Journal 2011, 21(9), 703–10.
  • Sheu, T.Y.; Rosenberg, M. Microencapsulation by spray drying ethyl caprylate in whey protein and carbohydrate wall systems. Journal of Food Science 1995, 60(1), 98–103.
  • Kagami, Y.; Sugimura, S.; Fujishima, N.; Matsuda, K.; Kometani, T.; Matsumura, Y. Oxidative stability, structure, and physical characteristics of microcapsules formed by spray drying of fish oil with protein and dextrin wall materials. Journal of Food Science 2003, 68(7), 2248–55.
  • Murano, E. Use of natural polysaccharides in the microencapsulation techniques. Journal of Applied Ichthyology 1998, 14(3–4), 245–9.
  • Barnett, C.; Smith, A.; Scanlon, B.; Israilides, C.J. Pullulan production by Aureobasidium pullulans growing on hydrolysed potato starch waste. Carbohydrate Polymers 1999, 38(3), 203–9.
  • Wu, P.; Imai, M. Food polymer pullulan-κ-carrageenan composite membrane performed smart function both on mass transfer and molecular size recognition. Desalination and Water Treatment 2011, 34(1–3), 239–45.
  • Ravi, P.R.; Vats, R.; Balija, J.; Adapa, S.P.N.; Aditya, N. Modified pullulan nanoparticles for oral delivery of lopinavir: Formulation and pharmacokinetic evaluation. Carbohydrate Polymers 2014, 110, 320–8.
  • Guo, H.; Liu, Y.; Wang, Y.; Wu, J.; Yang, X.; Li, R.; et al. pH-sensitive pullulan-based nanoparticle carrier for adriamycin to overcome drug-resistance of cancer cells. Carbohydrate Polymers 2014, 111, 908–917.
  • López-Rubio, A.; Sanchez, E.; Wilkanowicz, S.; Sanz, Y.; Lagaron, J.M. Electrospinning as a useful technique for the encapsulation of living Bifidobacteria in food hydrocolloids. Food Hydrocolloids 2012, 28(1), 159–67.
  • Wood, K.A. Synbiot production and encapsulation. MSc diss., University of Saskatchewan, 2010.
  • Hernández-Carranza, P.; López-Malo, A.; Jiménez-Munguía, M.-T. Microencapsulation quality and efficiency of Lactobacillus casei by spray drying using maltodextrin and vegetable extracts. Journal of Food Research 2013, 3(1), 61.
  • Guo, Z.; Wang, J.C.; Yan, L.Y.; Chen, W.; Liu, X.M.; Zhang, H.P. In vitro comparison of probiotic properties of Lactobacillus casei Zhang, a potential new probiotic, with selected probiotic strains. LWT–Food Science and Technology 2009, 42(10), 1640–6.
  • Bao, Y.; Zhang, Y.C.; Zhang, Y.; Liu, Y.; Wang, S.Q.; Dong, X.M.; et al. Screening of potential probiotic properties of Lactobacillus fermentum isolated from traditional dairy products. Food Control 2010, 21(5), 695–701.
  • Dianawati, D.; Mishra, V.; Shah, N.P. Role of calcium alginate and mannitol in protecting Bifidobacterium. Applied and Environmental Microbiology 2012, 78(19), 6914–21.
  • Rajam, R.; Karthik, P.; Parthasarathi, S.; Joseph, G.S.; Anandharamakrishnan, C. Effect of whey protein: Alginate wall systems on survival of microencapsulated Lactobacillus plantarum in simulated gastrointestinal conditions. Journal of Functional Foods 2012, 4(4), 891–8.
  • Guerin, D.; Vuillemard, J.C.; Subirade, M. Protection of Bifidobacteria encapsulated in polysaccharide-protein gel beads against gastric juice and bile. J Food Prot. 2003, 66(11), 2076–84.
  • Rosas-Flores, W.; Ramos-Ramírez, E.G.; Salazar-Montoya, J.A. Microencapsulation of Lactobacillus helveticus and Lactobacillus delbrueckii using alginate and gellan gum. Carbohydrate Polymer. 2013, 98(1), 1011–7.
  • Gounga, M.E.; Xu, S.-Y.; Wang, Z. Whey protein isolate-based edible films as affected by protein concentration, glycerol ratio and pullulan addition in film formation. Journal of Food Engineering 2007, 83(4), 521–30.
  • Sullivan, S.T. Functional biomaterials: Solution electrospinning and gelation of whey protein and pullulan. PhD diss., North Carolina State University, Raleigh, NC, 2011.
  • Nayebzadeh, K.; Chen, J.; Dickinson, E.; Moschakis, T. Surface structure smoothing effect of polysaccharide on a heat-set protein particle gel. Langmuir 2006, 22(21), 8873–80.
  • Leonardi, M.; Gerbault, P.; Thomas, M.G.; Burger, J. The evolution of lactase persistence in Europe: A synthesis of archaeological and genetic evidence. International Dairy Journal 2012, 22(2), 88–97.
  • Lapsiri, W.; Bhandari, B.; Wanchaitanawong, P. Stability and probiotic properties of Lactobacillus plantarum spray-dried with protein and other protectants. Drying Technology 2013, 31(13–14), 1723–33.
  • Desmond, C.; Ross, R.P.; O'Callaghan, E.; Fitzgerald, G.; Stanton, C. Improved survival of Lactobacillus paracasei NFBC 338 in spray-dried powders containing gum acacia. Journal of Applied Microbiology 2002, 93(6), 1003–11.
  • Favaro-Trindade, C.; Grosso, C. Microencapsulation of L. acidophilus (La-05) and B. lactis (Bb-12) and evaluation of their survival at the pH values of the stomach and in bile. Journal of Microencapsulation 2002, 19(4), 485–94.
  • O'Riordan, K.; Andrews, D.; Buckle, K.; Conway, P. Evaluation of microencapsulation of a Bifidobacterium strain with starch as an approach to prolonging viability during storage. Journal of Applied Microbiology 2001, 91(6), 1059–66.
  • Morelli, L. In vitro assessment of problotic bacteria: From survival to functionality. International Dairy Journal 2007, 17(11), 1278–83.
  • Teixeira, P.C.; Castro, M.H.; Malcata, F.X.; Kirby, R.M. Survival of Lactobacillus delbrueckii ssp. bulgaricus following spray-drying. Journal of Dairy Science 1994, 78(5), 1025–31.
  • Strasser, S.; Neureiter, M.; Geppl, M.; Braun, R.; Danner, H. Influence of lyophilization, fluidized bed drying, addition of protectants, and storage on the viability of lactic acid bacteria. Journal of Applied Microbiology 2009, 107(1), 167–77.
  • Goderska, K.; Czarnecki, Z. Influence of microencapsulation and spray drying on the viability of Lactobacillus and Bifidobacterium strains. Pol J Microbiol. 2008, 57(2), 135–40.
  • Rodríguez-Huezo, M.; Durán-Lugo, R.; Prado-Barragán, L.; Cruz-Sosa, F.; Lobato-Calleros, C.; Alvarez-Ramírez, J.; et al. Pre-selection of protective colloids for enhanced viability of Bifidobacterium bifidum following spray-drying and storage, and evaluation of aguamiel as thermoprotective prebiotic. Food Research International 2007, 40(10), 1299–306.
  • Champagne, C.P.; Mondou, F.; Raymond, Y.; Roy, D. Effect of polymers and storage temperature on the stability of freeze-dried lactic acid bacteria. Food Research International 1996, 29(5), 555–62.
  • Onwulata, C.; Smith, P.; Holsinger, V. Flow and compaction of spray‐dried powders of anhydrous butteroil and high melting milkfat encapsulated in disaccharides. Journal of Food Science 1995, 60(4), 836–40.
  • Ying, D.; Sun, J.; Sanguansri, L.; Weerakkody, R.; Augustin, M.A. Enhanced survival of spray-dried microencapsulated Lactobacillus rhamnosus GG in the presence of glucose. Journal of Food Engineering 2012, 109(3), 597–602.
  • Koç, M.; Koç, B.; Güngör, Ö.; Ertekin, F.K. The effects of moisture on physical properties of spray-dried egg powder. Drying Technology 2012, 30(6), 567–73.
  • Chávez, B.; Ledeboer, A. Drying of probiotics: Optimization of formulation and process to enhance storage survival. Drying Technology 2007, 25(7–8), 1193–201.
  • Simpson, P.J.; Stanton, C.; Fitzgerald, G.F.; Ross, R.P. Intrinsic tolerance of Bifidobacterium species to heat and oxygen and survival following spray drying and storage. J Appl Microbiol. 2005, 99(3), 493–501.
  • Annan, N.T.; Borza, A.D.; Hansen, L.T. Encapsulation in alginate-coated gelatin microspheres improves survival of the probiotic Bifidobacterium adolescentis 15703 T during exposure to simulated gastro-intestinal conditions. Food Research International 2008, 41(2), 184–93.
  • Vivek, K. Use of encapsulated probiotics in dairy based foods. International Journal of Food, Agriculture and Veterinary Sciences 2013, 3(1), 188–99.
  • Soukoulis, C.; Behboudi-Jobbehdar, S.; Yonekura, L.; Parmenter, C.; Fisk, I. Impact of milk protein type on the viability and storage stability of microencapsulated Lactobacillus acidophilus NCIMB 701748 using spray drying. Food and Bioprocess Technology 2014, 7(5), 1255–68.
  • Crittenden, R.; Weerakkody, R.; Sanguansri, L.; Augustin, M. Synbiotic microcapsules that enhance microbial viability during nonrefrigerated storage and gastrointestinal transit. Applied and Environmental Microbiology 2006, 72(3), 2280–2.
  • Patel, B.B.; Patel, J.K.; Chakraborty, S.; Shukla, D. Revealing facts behind spray dried solid dispersion technology used for solubility enhancement. Saudi Pharmaceutical Journal (In press).
  • Oneda, F.; Ré, M.I. The effect of formulation variables on the dissolution and physical properties of spray-dried microspheres containing organic salts. Powder Technology 2003, 130(1–3), 377–84.
  • Littringer, E.M.; Paus, R.; Mescher, A.; Schroettner, H.; Walzel, P.; Urbanetz, N.A. The morphology of spray dried mannitol particles: The vital importance of droplet size. Powder Technology 2013, 239(0), 162–74.
  • Santhalakshmy, S.; Bosco, S.J.D.; Francis, S.; Sabeena, M. Effect of inlet temperature on physicochemical properties of spray dried jamun fruit juice powder. Powder Technology 2015, 274, 37–43.
  • Anandharamakrishnan, C.; Rielly, C.D.; Stapley, A.G.F. Effects of process variables on the denaturation of whey proteins during spray drying. Drying Technology 2007, 25(5), 799–807.
  • Campbell, T.C.; Hayes, J.R. The effect of quantity and quality of dietary protein on drug metabolism. Fed Proc. 1976, 35(13), 2470–4.
  • Breguet, V.; Gugerli, R.; von Stockar, U.; Marison, I.W. CHO immobilization in alginate/poly-L-lysine microcapsules: An understanding of potential and limitations. Cytotechnology 2007, 53(1–3), 81–93.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.