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Abstract:

The effect of xanthan gum, guar gum, oil and the structure promoted by these compounds on the growth of Zygosaccharomyces bailii and on physical stability of emulsified systems simulating acid sauces was studied. Furthermore, the effect of yeast growth on physical stability of emulsions was also evaluated.Yeast growth was evaluated by plate count and modeled by the modified Gompertz equation. Emulsions characteristics and their stability were determined by droplet size, zeta potential and rheological measurements. The latter was also used to evaluate structure's effect on yeast growth.Physical characteristics of emulsions depended on system composition. Yeasts slightly affected droplet size. Z. bailii growth was satisfactorily modeled by the modified Gompertz equation. The specific growth rate (μm) and the asymptotic value (A) obtained depended on xanthan gum, guar gum and oil content. Furthermore, the structure promoted by these compounds exerted a significant effect on growth. In general, an increase in the solid character and yield stress through the addition of xanthan gum promoted a decrease in A parameter. On the contrary, a decrease in the solid character through the addition of guar gum promoted an increase in the A parameter. The results obtained stressed that stabilizers, oil and their structuring ability play an important role on Z. bailii growth. © 2016s.

Registro:

Documento: Artículo
Título:Effect of stabilizers, oil level and structure on the growth of Zygosaccharomyces bailii and on physical stability of model systems simulating acid sauces
Autor:Zalazar, A.L.; Gliemmo, M.F.; Campos, C.A.
Filiación:Departamento de Industrias, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Int. Güiraldes 2160, Buenos Aires, 1428, Argentina
Consejo Nacional de Investigaciones, Científicas y Técnicas de la República Argentina, Argentina
Palabras clave:Guar gum; Oil; Simulating acid sauces; Structure; Xanthan gum; Zygosaccharomyces bailii; Drops; Emulsification; Emulsions; Stability; Structure (composition); System stability; Yeast; Yield stress; Guar gums; Modified gompertz equations; Physical stability; Rheological measurements; Simulating acid sauces; Specific growth rate; System composition; Zygosaccharomyces bailii; Xanthan gum
Año:2016
Volumen:85
Página de inicio:200
Página de fin:208
DOI: http://dx.doi.org/10.1016/j.foodres.2016.04.040
Título revista:Food Research International
Título revista abreviado:Food Res. Int.
ISSN:09639969
CODEN:FORIE
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09639969_v85_n_p200_Zalazar

Referencias:

  • Antwi, M., Geeraerd, A.H., Vereeken, K.M., Jenné, R., Bernaerts, K., Van Impe, J.F., Influence of a gel microstructure as modified by gelatin concentration on Listeria innocua growth (2006) Innovative Food Science and Emerging Technologies, 7, pp. 124-131
  • Bas, D., Boyaci, I.H., Modeling and optimization I: Usability of response surface methodology (2007) Journal of Food Engineering, 78, pp. 836-845
  • BeMiller, J.N., Huber, K.C., Carbohydrates (2008) Fennema's food chemistry, pp. 83-154. , CRC Press, Boca Raton, FL, S. Damodaran, K.L. Parkin, O.R. Fennema (Eds.)
  • Boons, K., Noriega, E., Van den Broeck, R.N., David, C.C., Hofkens, J., Van Impe, J.F., Effect of microstructure on population growth parameters of Escherichia coli in gelatin-dextran systems (2014) Applied and Environmental Microbiology, 80 (17), pp. 5330-5339
  • Boons, K., Noriega, E., Verherstraeten, N., David, C.C., Hofkens, J., Van Impe, J.F., The effect of medium structure complexity on the growth of Saccharomyces cerevisiae in gelatin-dextran systems (2015) International Journal of Food Microbiology, 199, pp. 8-14
  • Boons, K., Van Derlinden, E., Mertens, L., Peeters, V., Van Impe, J.F., Effect of immobilization and salt concentration on the growth dynamics of Escherichia coli K12 and Salmonella typhimurium (2013) Journal of Food Science, 78 (4), pp. 567-574
  • Brocklehurst, T.F., Challenge of food and the environment (2004) Modeling microbial responses in food, , CRC Press, Francis and Taylor Group, London, R.C. McKellar, X. Lu (Eds.)
  • Brocklehurst, T.F., Wilson, P.D.G., The role of lipids in controlling microbial growth (2000) Grasas y Aceites, 51, pp. 66-73
  • Brocklehurst, T.F., Parker, M.L., Gunning, P.A., Coleman, H.P., Robins, M.M., Growth of food-borne pathogenic bacteria in oil-in-water emulsions: II Effect of emulsion structure on growth parameters and form of growth (1995) Journal of Applied Bacteriology, 78, pp. 609-615
  • Brocklehurst, T.F., Parker, M.L., Gunning, P.A., Robins, M.M., Microbiology of food emulsions: Physicochemical aspects (1993) Lipid Technology, pp. 83-88
  • Brugnoni, L.I., Lozano, J.E., Cubitto, M.A., Potential of yeast isolated from apple juice to adhere to stainless steel surfaces in the apple juice processing industry (2007) Food Research International, 40, pp. 332-340
  • Campos, C.A., Gliemmo, M.F., Zalazar, A., Castro, M.P., Schelegueda, L.I., Effect of food structure on microbial growth and on the activity of stress factors (2015) Food microbiology: Fundamentals, challenges and health implications, pp. 1-24. , Nova Science Publishers, Inc., Nueva York, USA, E. Perkins (Ed.)
  • Carneiro-da-Cunha, M.G., Cerqueira, M.A., Souza, B.W.S., Teixeira, J.A., Vicente, A.A., Influence of concentration, ionic strength and pH on zeta potential and mean hydrodynamic diameter of edible polysaccharide solutions envisaged for multinanolayered films production (2011) Carbohydrate Polymers, 85, pp. 522-528
  • Castro, M.P., Garro, O., Gerschenson, L.N., Campos, C.A., Interaction between potassium sorbate, oil and tween 20: Its effect on the growth and inhibition of Z. bailii in model salad dressings (2003) Journal of Food Safety, 23, pp. 47-59
  • Castro, M.P., Rojas, A.M., Campos, C.A., Gerschenson, L.N., Effect of preservatives, tween 20, oil content and emulsion structure on the survival of Lactobacillus fructivorans in model salad dressings (2009) LWT- Food Science and Technology, 42, pp. 1428-1434
  • Da Silva, J.A.L., Rao, M.A., Viscoelastic properties of foods hydrocolloids dispersions (1992) Viscoelastic properties of foods, pp. 285-316. , Elsevier Applied Science, London, M.A. Rao, J.F. Steffe (Eds.)
  • Dickinson, E., Hydrocolloids as emulsifiers and emulsion stabilizers (2009) Food Hydrocolloids, 23, pp. 1473-1482
  • Huang, X., Kakuda, Y., Cui, W., Hydrocolloids in emulsions: particle size distribution and interfacial activity (2001) Food Hydrocolloids, 15, pp. 533-542
  • Kurtzman, C.P., Rogers, P.R., Hesseltine, C.W., Microbiological spoilage of mayonnaise and salad dressings (1971) Applied Microbiology and Biotechnology, 21, pp. 870-874
  • Kurup, T.R.R., Wan, L.S.C., Chan, L.W., Availability and activity of preservatives in emulsified systems (1991) Pharmaceutical Acta Helvetica, 66, pp. 76-82
  • Li, J., McClements, D.J., McLandsborough, L.A., Interaction between emulsion droplets and Escherichia coli cells (2001) Journal of Food Science, 66, pp. 570-574
  • Ly, M.H., Naïtali-Bouchez, M., Meylheuc, T., Bellon-Fontaine, M.N., Le, T.M., Belin, J.M., Waché, Y., Importance of bacterial surface properties to control the stability of emulsions (2006) International Journal of Food Microbiology, 112, pp. 26-34
  • Mcclements, D.J., Critical review of techniques and methodologies for characterization of emulsion stability (2007) Critical Reviews in Food Science and Nutrition, 47, pp. 611-649
  • Mertens, L., Geeraerd, A.H., Dang, T.D.T., Vermeulen, A., Serneels, K., Van Derlinden, E., Van Impe, J.F., Design of an experimental viscoelastic food model system for studying Zygosaccharomyces bailii spoilage in acidic sauces (2009) Applied and Environmental Microbiology, 75, pp. 7060-7069
  • Mertens, L., Van Derlinden, E., Dang, T.D.T., Cappuyns, A.M., Vermeulen, A., Debevere, J., Van Impe, J.F., On the critical evaluation of growth/no growth assessment of Zygosaccharomyces bailii with optical density measurements: Liquid versus structured media (2011) Food Microbiology, 28, pp. 736-745
  • Mezger, T.G., (2006) The rheology handbook: For users of rotational and oscillatory rheometers, , Hannover, Vincentz Network
  • Parker, A., Gunning, P.A., Ng, K., Robins, M.M., How does xanthan stabilise salad dressing? (1995) Food Hydrocolloids, 9 (4), pp. 333-342
  • Parker, M.L., Brocklehurst, T.F., Gunning, P.A., Coleman, H.P., Robins, M.M., Growth of food-borne pathogenic bacteria in oil-in-water emulsions: I methods for investigating the form of growth of bacteria in model oil-in-water emulsions and dairy cream (1995) Journal of Applied Bacteriology, 78, pp. 601-608
  • Qian, C., McClements, D.J., Formation of nanoemulsions stabilized by model food-grade emulsifiers using high-pressure homogenization: Factors affecting particle size (2011) Food Hydrocolloids, 25, pp. 1000-1008
  • Sikora, M., Badrie, N., Deisingh, A., Kowalski, S., Sauces and dressings: A review of properties and applications (2008) Critical Reviews in Food Science and Nutrition, 48, pp. 50-77
  • Smittle, R.B., Microbial safety of mayonnaise, salad dressings, and sauces produced in the United States: A review (2000) Journal of Food Protection, 63, pp. 1144-1158
  • Sun, C., Gunasekaran, S., Richards, M.P., Effect of xanthan gum on physicochemical properties of whey protein isolate stabilized oil-in-water emulsions (2007) Food Hydrocolloids, 21, pp. 555-564
  • Theys, T.E., Geeraerd, A.H., Devlieghere, F., Van Impe, J.F., On the selection of relevant environmental factors to predict microbialdynamics in solidified media (2010) Food Microbiology, 27, pp. 220-228
  • Theys, T.E., Geeraerd, A.H., Verhulst, A., Poot, K., Van Bree, I., Devlieghere, F., Van Impe, J.F., Effect of pH, water activity and gel micro-structure, including oxygen profiles and rheological characterization, on the growth kinetics of Salmonella typhimurium (2008) International Journal of Food Microbiology, 128, pp. 67-77
  • Walstra, P., van Vliet, T., Dispersed systems: basic considerations (2008) Fennema's food chemistry, pp. 783-848. , CRC Press, Boca Raton, FL, S. Damodaran, K.L. Parkin, O.R. Fennema (Eds.)
  • Wedzicha, B.L., Zeb, A., Ahmed, S., Reactivity of food preservatives in dispersed systems (1991) Food polymers, gels and colloids, pp. 180-193. , Cambridge, Royal Society of Chemistry, E. Dickinson (Ed.)
  • Wilson, P.D.G., Brocklehurst, T.F., Arino, S., Thualt, D., Jakobsen, M., Lange, M., Van Impe, J.F., Modelling microbial growth in structured foods: Towards a unified approach (2002) International Journal of Food Microbiology, 73, pp. 275-289
  • Wimpenny, J.W.T., Leistner, L., Thomas, L.V., Mitchell, A.J., Katsaras, K., Peetz, P., Submerged bacterial colonies within food and model systems: Their growth, distribution and interactions (1995) International Journal of Food Microbiology, 28, pp. 299-315
  • Zwietering, M.H., Jongerburger, I., Rombouts, F.M., van'tRiet, K., Modeling of the bacterial growth curve (1990) Applied and Environmental Microbiology, 56, pp. 1875-1881

Citas:

---------- APA ----------
Zalazar, A.L., Gliemmo, M.F. & Campos, C.A. (2016) . Effect of stabilizers, oil level and structure on the growth of Zygosaccharomyces bailii and on physical stability of model systems simulating acid sauces. Food Research International, 85, 200-208.
http://dx.doi.org/10.1016/j.foodres.2016.04.040
---------- CHICAGO ----------
Zalazar, A.L., Gliemmo, M.F., Campos, C.A. "Effect of stabilizers, oil level and structure on the growth of Zygosaccharomyces bailii and on physical stability of model systems simulating acid sauces" . Food Research International 85 (2016) : 200-208.
http://dx.doi.org/10.1016/j.foodres.2016.04.040
---------- MLA ----------
Zalazar, A.L., Gliemmo, M.F., Campos, C.A. "Effect of stabilizers, oil level and structure on the growth of Zygosaccharomyces bailii and on physical stability of model systems simulating acid sauces" . Food Research International, vol. 85, 2016, pp. 200-208.
http://dx.doi.org/10.1016/j.foodres.2016.04.040
---------- VANCOUVER ----------
Zalazar, A.L., Gliemmo, M.F., Campos, C.A. Effect of stabilizers, oil level and structure on the growth of Zygosaccharomyces bailii and on physical stability of model systems simulating acid sauces. Food Res. Int. 2016;85:200-208.
http://dx.doi.org/10.1016/j.foodres.2016.04.040