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dc.rights.licenseAtribución-SinDerivadas 4.0 Internacional
dc.contributor.advisorDíaz Moreno, Amanda Consuelo
dc.contributor.advisorNovoa Castro, Carlos Fernando
dc.contributor.authorMonguí Rojas, María Jimena
dc.date.accessioned2020-07-23T16:52:28Z
dc.date.available2020-07-23T16:52:28Z
dc.date.issued2020-04-22
dc.identifier.citationMonguí Rojas, M. J. (2020). Efectos sensoriales, microbiológicos y fisicoquímicos del uso de miel de abejas procedente de plantaciones forestales de Acacia (Acacia mangium) en la producción de yogur. Universidad Nacional de Colombia.
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/77828
dc.description.abstractThis work aimed to evaluate the effects on physicochemical, microbiological, and sensory properties of yogurt with Acacia mangium honey as a sweetener. Firstly, the honey concentration was selected (8.5%, 10%, and 11.5%) by a consumer acceptance test and determination of pH, titratable acidity, water holding capacity, color, and viscosity. The time of honey addition was evaluated by including the selected treatment before and after the fermentation process, to assess possible effects on the starter and probiotic cultures, the impact on physicochemical properties, antioxidant activity, sensory acceptance and flavor profile. Subsequently, the influence of honey on Lactobacillus acidophilus and its possible prebiotic effects were evaluated by comparing it with the inulin effect on the microorganism. The results show an improvement of the yogurt physicochemical properties with the addition of honey, however, no significant differences between treatments of 10% and 11.5% were observed within the assessed parameters, but color. Thus, 10% of honey concentration was selected. Additionally, the time of honey addition does not affect the consumer acceptance of the product, despite there are appreciable differences between the flavor profile. Finally, honey has no inhibitory effect on cell growth and viability starter and probiotic used. Furthermore, there is a similar behavior of the microorganism when inulin or honey is included in the formulation.
dc.description.abstractEn este trabajo se evaluaron los efectos fisicoquímicos, sensoriales y microbiológicos la adición de miel de abejas de Acacia mangium como edulcorante en yogur. Inicialmente, se realizó la selección del porcentaje de inclusión de miel a partir de tres concentraciones (8.5%, 10% y 11.5%) mediante una prueba de aceptación de consumidores y la evaluación de las propiedades: pH, acidez titulable, capacidad de retención de agua, color y viscosidad. Posteriormente, se estudió el momento de inclusión de la miel, a partir de la concentración seleccionada inicialmente (10%), incluyéndola antes, y después de la fermentación, con el fin de identificar los posibles efectos sobre el cultivo iniciador y el cultivo probiótico, además de la influencia en propiedades fisicoquímicas, actividad antioxidante, aceptación sensorial y perfil de aroma y sabor. Dentro de los resultados, se observó favorabilidad en las propiedades fisicoquímicas evaluadas de los yogures con diferentes porcentajes de inclusión miel respecto al control, sin embargo, emplear un porcentaje de 10% favoreció propiedades sensoriales típicas del producto tanto fisicoquímicas como sensoriales entre las que se encuentran el color, la consistencia, el sabor y aroma, y el aspecto general evidenciado en la aceptación sensorial por parte de los consumidores. Por su parte el momento de inclusión de miel, muestra diferencias en los perfiles de sabor y aroma, mantiene superiores al control los parámetros fisicoquímicos a lo largo del almacenamiento, y la viabilidad celular es superior que al incluirla después. La comparación de la miel con inulina sugiere que posiblemente la miel de abejas de Acacia mangium, podría tener un efecto prebiótico.
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dc.format.mimetypeapplication/pdf
dc.language.isospa
dc.rightsDerechos reservados - Universidad Nacional de Colombia
dc.rights.urihttp://creativecommons.org/licenses/by-nd/4.0/
dc.titleEfectos sensoriales, microbiológicos y fisicoquímicos del uso de miel de abejas procedente de plantaciones forestales de Acacia (Acacia mangium) en la producción de yogur
dc.typeOtro
dc.rights.spaAcceso abierto
dc.description.projectAprovechamiento de las matrices alimentarias con potencial colorante y edulcorante para uso como aditivo natural en alimentos procesados
dc.type.driverinfo:eu-repo/semantics/other
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.publisher.programBogotá - Ciencias Agrarias - Maestría en Ciencia y Tecnología de Alimentos
dc.description.degreelevelMaestría
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotá
dc.relation.referencesAbu-Jdayil, B., Shaker, R. R., & Jumah, R. Y. (2000). Rheological behavior of concentrated yogurt (Labneh). International Journal of Food Properties, 3(2), 207–216. https://doi.org/10.1080/10942910009524628
dc.relation.referencesAlbuquerque, L., Alves, É., Ribeiro, A., Rocha Júnior, V., Antunes, A., dos Reis, A., … Espinosa Martinez, R. (2018). Viability of probiotic bacteria in bioyogurt with the addition of honey from Jataí and Africanized bees. Pesquisa Agropecuaria Brasileira, 53(2), 206–211. https://doi.org/10.1590/S0100-204X2018000200009
dc.relation.referencesAliyu, M., Odunola, O., Farooq, A., Mesaik, A., Choudhary, M., Erukainure, O., … Jabeen, A. (2012). Fractionation of acacia honey affects its antioxidant potential in vitro. Journal of Acute Disease, 2(4), 115–119. https://doi.org/10.1016/S2221-6189(13)60070-0
dc.relation.referencesAlvarez-Suarez, J. M. (2017). Bee products - chemical and biological properties. Bee Products - Chemical and Biological Properties. https://doi.org/10.1007/978-3-319-59689-1
dc.relation.referencesAOAC. (2012). Official Methods of Analysis of AOAC International. (G. Latimer, Ed.) (19th ed.). Gaitehersburg, Maryland: AOAC International.
dc.relation.referencesAryana, K., & Olson, D. (2017). A 100-Year Review: Yogurt and other cultured dairy products. Journal of Dairy Science, 100(12), 9987–10013. https://doi.org/10.3168/jds.2017-12981
dc.relation.referencesAshraf, R., & Shah, N. P. (2011). Selective and differential enumerations of Lactobacillus delbrueckii subsp. bulgaricus, Streptococcus thermophilus, Lactobacillus acidophilus, Lactobacillus casei and Bifidobacterium spp. in yoghurt - A review. International Journal of Food Microbiology. https://doi.org/10.1016/j.ijfoodmicro.2011.07.008
dc.relation.referencesAween, M. M., Hassan, Z., Muhialdin, B., Eljamel, Y., Al-Mabrok, A. S., & Lani, M. N. (2012). Antibacterial Activity of Lactobacillus acidophilus Strains Isolated from Honey Marketed in Malaysia against Selected Multiple Antibiotic Resistant (MAR) Gram-Positive Bacteria. Journal of Food Science, 77(7). https://doi.org/10.1111/j.1750-3841.2012.02776.x
dc.relation.referencesBadui Dergal, S. (2006). Química de los alimentos. (E. Quintanar Duarte, Ed.), Química de los alimentos (Cuarta). Naucalpan de Juárez: Pearson Educación. https://doi.org/10.1017/CBO9781107415324.004
dc.relation.referencesBakr, I. A., Mohamed, T. H., Tammam, A. A., & El-Gazzar, F. E. (2015). Characteristics of bioyoghurt fortified with fennel honey. Internarional journal of Current Microbiology and Applied Sciences, 4(3), 959–970.
dc.relation.referencesBatt, C., & Lou Tortorello, M. (2014). Encyclopedia of food microbiology. (C. Bart, Ed.), Encyclopedia of Food microbiology (Second). Oxford: Elsevier. https://doi.org/10.1016/B978-0-12-384730-0.01001-6
dc.relation.referencesBelitz, H. D., Grosch, W., & Schieberle, P. (2009). Food Chemistry (4th ed.). Heidelberg: Springer. https://doi.org/10.1007/978-3-40-69934-7
dc.relation.referencesBenzie, I. F. F., & Strain, J. J. (1996). The Ferric Reducing Ability of Plasma (FRAP) as a Measure of “Antioxidant Power”: The FRAP Assay. Analytical Biochemistry, 239(1), 70–76. https://doi.org/10.1006/abio.1996.0292
dc.relation.referencesBernal Castro, C. A. (2017). Evaluación del comportamiento de cultivos probióticos y prebióticos en bebidas de frutos rojos. Universidad Nacional de Colombia. Recuperado de http://www.bdigital.unal.edu.co/61087/1/101841360.2017.pdf
dc.relation.referencesBogdanov, S., Jurendic, T., Sieber, R., & Gallmann, P. (2008). Honey for nutrition and health: A review. Journal of the American College of Nutrition, 27(6), 677–689. https://doi.org/10.1080/07315724.2008.10719745
dc.relation.referencesBull, M., Plummer, S., Marchesi, J., & Mahenthiralingam, E. (2013). The life history of Lactobacillus acidophilus as a probiotic: A tale of revisionary taxonomy, misidentification and commercial success. FEMS Microbiology Letters, 349(2), 77–87. https://doi.org/10.1111/1574-6968.12293
dc.relation.referencesBurgain, J., Gaiani, C., Linder, M., & Scher, J. (2011). Encapsulation of probiotic living cells: From laboratory scale to industrial applications. Journal of Food Engineering, 104(4), 467–483. https://doi.org/10.1016/j.jfoodeng.2010.12.031
dc.relation.referencesCan, Z., Yildiz, O., Sahin, H., Akyuz Turumtay, E., Silici, S., & Kolayli, S. (2015). An investigation of Turkish honeys: Their physico-chemical properties, antioxidant capacities and phenolic profiles. Food Chemistry, 180, 133–141. https://doi.org/10.1016/j.foodchem.2015.02.024
dc.relation.referencesCasarotti, S. N., Borgonovi, T. F., Batista, C. L. F. M., & Penna, A. L. B. (2018). Guava, orange and passion fruit by-products: Characterization and its impacts on kinetics of acidification and properties of probiotic fermented products. LWT - Food Science and Technology, 98, 69–76. https://doi.org/10.1016/j.lwt.2018.08.010
dc.relation.referencesCastro-Mercado, L., & Díaz-Moreno, C. (2016). Contenido de cenizas y perfil mineral de mieles de la Altillanura vichadense. Agronomía Colombiana, 34, 1029–1032. https://doi.org/10.15446/agron.colomb.v34n1supl.58241
dc.relation.referencesCastro Mercado, L. (2018). Evaluación de la composición, calidad y generación de vaor de miel de abejas originaria de zonas forestales en la altillanura del departamento de Vichada. Universidad Nacional de Colombia.
dc.relation.referencesChandan, R., White, C., Kilara, A., & Hui, Y. (2006). Manufacturing yogurt and fermented milks (First). Oxford: Blackwell publishing professional.
dc.relation.referencesChepulis, L. (2016). Honey Food or Medicine The How, Where and Why of Bioactivity Testing. Bee World, 92(4), 97–131.
dc.relation.referencesChepulis, L. M. (2007). The effect of honey compared to sucrose, mixed sugars, and a sugar-free diet on weight gain in young rats. Journal of Food Science, 72(3). https://doi.org/10.1111/j.1750-3841.2007.00286.x
dc.relation.referencesCorporación Autónoma Regional de la Orinoquia. (2012). Informe ejecutivo de la gestión ambiental del Vichada.
dc.relation.referencesda Silva, P., Gauche, C., Gonzaga, L. V., Costa, A. C. O., & Fett, R. (2016). Honey: Chemical composition, stability and authenticity. Food Chemistry, 196, 309–323. https://doi.org/10.1016/j.foodchem.2015.09.051
dc.relation.referencesDas, K., Choudhary, R., & Thompson-witrick, K. A. (2019). Effects of new technology on the current manufacturing process of yogurt-to increase the overall marketability of yogurt. LWT - Food Science and Technology, 108(February), 69–80. https://doi.org/10.1016/j.lwt.2019.03.058
dc.relation.referencesde Oliveira, M. N. (2014). Fermented Milks: Fermented Milks and Yogurt. En Encyclopedia of Food Microbiology: Second Edition (Second Edi, Vol. 2, pp. 908–922). Elsevier. https://doi.org/10.1016/B978-0-12-384730-0.00121-X
dc.relation.referencesDoǧan, M. (2011). Rheological behaviour and physicochemical properties of kefir with honey. Journal fur Verbraucherschutz und Lebensmittelsicherheit, 6(3), 327–332. https://doi.org/10.1007/s00003-010-0643-6
dc.relation.referencesDor Ginnie Ornella, L. M., & Fawzi, M. M. (2016). Traditional and Modern Uses of Honey: An Updated Review. En R. Ramirez (Ed.), Honey: Geographical Origins, Bioactive Properties & Health Benefits (pp. 81–98). New York: Nova Science Publishers, Inc
dc.relation.referencesEdwards, C. H., Rossi, M., Corpe, C. P., Butterworth, P. J., & Ellis, P. R. (2016). The role of sugars and sweeteners in food , diet and health : Alternatives for the future. Trends in Food Science & Technology, 56, 158–166. https://doi.org/10.1016/j.tifs.2016.07.008
dc.relation.referencesEl Sohaimy, S. A., Masry, S. H. D., & Shehata, M. G. (2015). Physicochemical characteristics of honey from different origins. Annals of Agricultural Sciences, 60(2), 279–287. https://doi.org/10.1016/j.aoas.2015.10.015
dc.relation.referencesErasso Arango, Natalia - Montoya Restrepo, L. A. (2010). Análisis de percepción de marca Producto Miel de Abejas en el mercado de Bogotá.
dc.relation.referencesFAO. (2011). Leche y Productos Lácteos Leche y Productos Lácteos. CODEX Alimentarius. https://doi.org/10.4067/S0718-07642015000500010
dc.relation.referencesFAO, & OMS. (1981). Codex Norma para la Miel.
dc.relation.referencesFAO, & OMS. (2011). Codex Alimentarius. Leche y Productos Lácteos. Leche y Productos Lacteos (Segunda ed). Roma. https://doi.org/10.4067/S0718-07642015000500010
dc.relation.referencesFazilah, N. F., Ariff, A. B., Khayat, M. E., Rios-Solis, L., & Halim, M. (2018). Influence of probiotics, prebiotics, synbiotics and bioactive phytochemicals on the formulation of functional yogurt. Journal of Functional Foods, 48(July), 387–399. https://doi.org/10.1016/J.JFF.2018.07.039
dc.relation.referencesFrisvad, J. C., Huys, G., Bourdichon, F., Harnett, J., Powell, I. B., Hammes, W. P., … Van Boven, A. (2011). Food fermentations: Microorganisms with technological beneficial use. International Journal of Food Microbiology, 154(3), 87–97. https://doi.org/10.1016/j.ijfoodmicro.2011.12.030
dc.relation.referencesGaifullina, L., Saltykova, E., & Nikolenko, A. (2016). Prebiotic and Probiotic Properties of Honey. En R. Ramirez (Ed.), Honey: Geographical Origins, Bioactive Properties & Health Benefits (pp. 53–80). New York: Nova Science Publishers, Inc.
dc.relation.referencesGebara, C., Ribeiro, M. C. E., Chaves, K. S., Gandara, A. L. N., & Gigante, M. L. (2015). Effectiveness of different methodologies for the selective enumeration of Lactobacillus acidophilus La5 from yoghurt and Prato cheese. LWT - Food Science and Technology, 64(1), 508–513. https://doi.org/10.1016/j.lwt.2015.04.061
dc.relation.referencesGibson, G. R., Hutkins, R., Sanders, M. E., Prescott, S. L., Reimer, R. A., Salminen, S. J., … Reid, G. (2017). Expert consensus document: The International Scientific Association for Probiotics and Prebiotics (ISAPP) consensus statement on the definition and scope of prebiotics. Nature Reviews Gastroenterology and Hepatology, 14(8), 491–502. https://doi.org/10.1038/nrgastro.2017.75
dc.relation.referencesGomes Machado, T. A. D., Gomes de Oliveira, M. E. G., Ferreira Campos, M. I., Antonio de Assis, P. O., Leite de Souza, E., Madruga, M. S., … Ramos do Egypto Queiroga, R. de C. (2017). Impact of honey on quality characteristics of goat yogurt containing probiotic Lactobacillus acidophilus. LWT - Food Science and Technology, 80, 221–229. https://doi.org/10.1016/j.lwt.2017.02.013
dc.relation.referencesGreenbaum, A., & Aryana, K. J. (2013). Effect of Honey a Natural Sweetener with Several Medicinal Properties on the Attributes of a Frozen Dessert Containing the Probiotic <i>Lactobacillus acidophilus</i> Open Journal of Medical Microbiology, 03(02), 95–99. https://doi.org/10.4236/ojmm.2013.32015
dc.relation.referencesHernandez, E. (2005). Evaluación Sensorial. Universidad Nacional Abierta y a Distancia, 1(Bogota), 1–85.
dc.relation.referencesHeydari, S., Amiri-rigi, A., & Reza, M. (2018). Rheological behaviour , sensory properties and syneresis of probiotic yoghurt supplemented with various prebiotics, 71(March), 175–184. https://doi.org/10.1111/1471-0307.12491
dc.relation.referencesHill, C., Guarner, F., Reid, G., Gibson, G. R., Merenstein, D. J., Pot, B., … Sanders, M. E. (2014). Expert consensus document: The international scientific association for probiotics and prebiotics consensus statement on the scope and appropriate use of the term probiotic. Nature Reviews Gastroenterology and Hepatology, 11(8), 506–514. https://doi.org/10.1038/nrgastro.2014.66
dc.relation.referencesIALIMENTOS. (2016). Tendencias, necesidades y consumo de la industria láctea en Colombia. Recuperado de http://revistaialimentos.com/news/tendencias-necesidades-y-consumo-de-la-industria-lactea-en-colombia.htm
dc.relation.referencesICA. (2015). El ICA organizó primer comité fitosanitario forestal de la Orinoquia en Puerto Carreño. Recuperado de https://www.ica.gov.co/Noticias/Agricola/2015/El-ICA-organizo-primer-comite-fitosanitario-forest.aspx
dc.relation.referencesICBF. (2018). Tabla de composición de alimentos. Bogotá D.C.: Instituto Colombiano de Bienestar Familiar.
dc.relation.referencesICONTEC. (1997). NTC 4206. Análisis sensorial. Metodología. Estimación de la magnitud. Bogotá D.C.
dc.relation.referencesICONTEC. (2002). NTC 5034. Microbiología de alimentos y alimentos para animales. Método horizontal para el recuento de bacterias mesofílicas de ácido láctico. Técnica de recuento de colonias a 30°C. Bogotá D.C.
dc.relation.referencesICONTEC. (2006). NTC 805. Productos lácteos. leches fermentadas. Bogotá D.C.
dc.relation.referencesICONTEC. (2012). NTC 3915. Análisis sensorial. Metodología. Método para investigar la sensibilidad del gusto.
dc.relation.referencesISO. (2010). ISO 27205. Fermentedd milk products-Bacterial starter cultures- Standard of identity. Bratislava: ISO.
dc.relation.referencesJay, J., Loessner, M., & Golden, D. (2009). Microbiología Moderna de los Alimentos (Quinta). Zaragoza: Acribia S.A.
dc.relation.referencesKajiwara, S., Gandhi, H., & Ustunol, Z. (2002). Effect of Honey on the Growth of and Acid Production by Human Intestinal Bi dobacterium spp .: An In Vitro Comparison with Commercial Oligosaccharides and Inulin. Journal of Food Protection, 65(1), 214–218.
dc.relation.referencesKarbasi, M., Yarmand, M. S., & Mousavi, M. (2015). Fermentation Potential of Lactobacillus rhamnosus and Lactobacillus acidophilus in Date Syrup to Develop a Functional Fermented Beverage: A Comparative Study. Journal of Food Processing and Preservation, 39(6), 863–870. https://doi.org/10.1111/jfpp.12297
dc.relation.referencesKennas, A., Amellal-chibane, H., Kessal, F., & Halladj, F. (2018). Effect of pomegranate peel and honey fortification on physicochemical , physical , microbiological and antioxidant properties of yoghurt powder. Journal of the Saudi Society of Agricultural Sciences. https://doi.org/10.1016/j.jssas.2018.07.001
dc.relation.referencesKhan, S. U., Anjum, S. I., Rahman, K., Ansari, M. J., Khan, W. U., Kamal, S., … Khan, H. U. (2018). Honey: Single food stuff comprises many drugs. Saudi Journal of Biological Sciences, 25(2), 320–325. https://doi.org/10.1016/j.sjbs.2017.08.004
dc.relation.referencesKumar Puniya, A. (2016). Fermented milk and dairy products. Boca Raton, Florida: Taylor & Francis Group. https://doi.org/10.1016/j.idairyj.2004.03.003
dc.relation.referencesLahtinen, S., Ouwehand, A. C., Salminen, S., & Von Wright, A. (2012). Lactic acid bacteria. Microbiological and functional aspects. (Taylor & Francis Group, Ed.) (Fourth). Boca Raton, Florida.
dc.relation.referencesLeclercq, H., Saint-Eve, A., Berthelo, S., Oettgen, W., & Delarue, J. (2015). How much sugar do consumers add to plain yogurts? Insights from behavioral and declarative study with French consumers. 11th Pangborn Sensory Science Symposium, 99.
dc.relation.referencesLeroy, F., & De Vuyst, L. (2004). Lactic acid bacteria as functional starter cultures for the food fermentation industry. Trends in Food Science and Technology, 15(2), 67–78. https://doi.org/10.1016/j.tifs.2003.09.004
dc.relation.referencesMachado De-Melo, A. A., Almeida-Muradian, L. B. de, Sancho, M. T., & Pascual-Maté, A. (2017). Composition and properties of Apis mellifera honey: A review. Journal of Apicultural Research, 8839(August), 1–33. https://doi.org/10.1080/00218839.2017.1338444
dc.relation.referencesMachado De-Melo, A. A., Almeida-Muradian, L. B. de, Sancho, M. T., & Pascual-Maté, A. (2017). Composition and properties of Apis mellifera honey: A review. Journal of Apicultural Research, 8839(August), 1–33. https://doi.org/10.1080/00218839.2017.1338444
dc.relation.referencesMandigan, M. T., Martinko, J. M., Bender, K. S., Buckley, D. H., & Stahl, D. A. (2015). Brock biology of microorganisms. https://doi.org/10.1017/CBO9781107415324.004
dc.relation.referencesMartins, N., Oliveira, M. B. P. P., & Ferreira, I. C. F. R. (2019). Development of functional dairy foods. En J. Mérillon & K. Ramawat (Eds.), Bioactive molecules in food (pp. 1377–1395). Springer International Publisher. https://doi.org/10.1007/978-3-319-78030-6_35
dc.relation.referencesMei, J., Feng, F., & Li, Y. (2017). Effective of different homogeneous methods on physicochemical, textural and sensory characteristics of soybean ( Glycine max L.) yogurt. CyTA - Journal of Food, 15(1), 21–26. https://doi.org/10.1080/19476337.2016.1197315
dc.relation.referencesMeo, S. A., Al-Asiri, S. A., Mahesar, A. L., & Ansari, M. J. (2017). Role of honey in modern medicine. Saudi Journal of Biological Sciences, 24(5), 975–978. https://doi.org/10.1016/j.sjbs.2016.12.010
dc.relation.referencesMercan, E., & Akın, Nı̇. (2017). Effect of different levels of pine honey addition on physicochemical, microbiological and sensory properties of set-type yoghurt. International Journal of Dairy Technology, 70(2), 245–252. https://doi.org/10.1111/1471-0307.12332
dc.relation.referencesMinisterio de Salud. Resolución Número 2310, Pub. L. No. 2310 (1986). República de Colombia.
dc.relation.referencesModric, J. (2016). Sweeteners: Relative Sweetness, Calories, Glycemic Index - Nutrients Review. Recuperado el 3 de octubre de 2019, de http://www.nutrientsreview.com/articles/sweeteners.html
dc.relation.referencesMohan, A., Quek, S.-Y., Gutierrez-Maddox, N., Gao, Y., & Shu, Q. (2017). Effect of honey in improving the gut microbial balance. Food Quality and Safety, 1(May 2017), 107–115. https://doi.org/10.1093/fqs/fyx015
dc.relation.referencesMora Adames, W. I. (2017). Aplicación de fermentación láctica en el desarrollo de productos para la generación de valor en polen apícola. Universidad Nacional de Colombia.
dc.relation.referencesMortazavian, A. M., Ehsan, M. R., Sohrabvandi, S., & Reinheimer, J. A. (2007). MRS-bile agar: its suitability for the enumeration of mixed probiotic cultures in cultured dairy products. Milchwissenschaft-Milk Science International, 62(3), 270–272.
dc.relation.referencesMusa Özcan, M., & Al Juhaimi, F. (2015). Honey as source of natural antioxidants. Journal of Apicultural Research, 54(3), 145–154. https://doi.org/10.1080/00218839.2016.1144976
dc.relation.referencesNational Honey Board. (2017). Honey: A Reference Guide to Nature’s Sweetener. Recuperado el 13 de julio de 2018, de https://www.nal.usda.gov/fnic/nutritive-and-nonnutritive-sweetener-resources
dc.relation.referencesNg, E. W., Yeung, M., & Tong, P. S. (2011). Effects of yogurt starter cultures on the survival of Lactobacillus acidophilus. International Journal of Food Microbiology, 145(1), 169–175. https://doi.org/10.1016/j.ijfoodmicro.2010.12.006
dc.relation.referencesNielsen. (2016). Infografía: ingredientes y tendencias de comida fuera de casa en LATAM. Recuperado de http://www.nielsen.com/co/es/insights/news/2016/Ingredientes-y-tendencias-de-comida-fuera-de-casa-en-Latam.html
dc.relation.referencesNurul Zaizuliana, R., Anis Mastura, A., Abd Jamil, Z., Norshazila, S., & Zarinah, Z. (2017). Effect of Storage Conditions on the Crystallisation behaviour of Selected Malaysian honeys. International Food Research Journal, 24, 475–480.
dc.relation.referencesOMS. (2015). Guideline: “Sugars intake for adults and children”. World health Organization. https://doi.org/978 92 4 154902 8
dc.relation.referencesOzturkoglu-Budak, S., Akal, H. C., Buran, İ., & Yetişemiyen, A. (2019). Effect of inulin polymerization degree on various properties of synbiotic fermented milk including Lactobacillus acidophilus La-5 and Bifidobacterium animalis Bb-12. Journal of Dairy Science, 102(8), 6901–6913. https://doi.org/10.3168/jds.2019-16479
dc.relation.referencesParra Huertas, R. A. (2012). Importancia terapéutica y estabilizantes-edulcorantes en la tecnología del yogur (Primera). Tunja: UPTC.
dc.relation.referencesPerna, A., Intaglietta, I., Simonetti, A., & Gambacorta, E. (2014). Antioxidant activity of yogurt made from milk characterized by different casein haplotypes and fortified with chestnut and sulla honeys. Journal of Dairy Science, 97(11), 6662–6670. https://doi.org/10.3168/jds.2013-7843
dc.relation.referencesPerna, A., Simonetti, A., & Gambacorta, E. (2019). Phenolic content and antioxidant activity of donkey milk kefir fortified with sulla honey and rosemary essential oil during refrigerated storage. International Journal of Dairy Technology, 72(1), 74–81. https://doi.org/10.1111/1471-0307.12561
dc.relation.referencesPiana, M. L., Persano Oddo, L., Bentabol, A., Bruneau, E., Bogdanov, S., & Guyot Declerck, C. (2004). Sensory analysis applied to honey: state of the art. Apidologie, 35(1), 26–37. https://doi.org/10.1051/apido
dc.relation.referencesPinheiro, M., & Oliveira, M. (2005). The effect of different sweeteners in low- calorie yogurts — a review. International Journal of Dairy Technology, 58(4), 193–199. Recuperado de http://onlinelibrary.wiley.com/doi/10.1111/j.1471-0307.2005.00228.x/full
dc.relation.referencesPopa, D., & Ustunol, Z. (2011). Influence of sucrose, high fructose corn syrup and honey from different floral sources on growth and acid production by lactic acid bacteria and bifidobacteria. International Journal of Dairy Technology, 64(2), 247–253. https://doi.org/10.1111/j.1471-0307.2011.00666.x
dc.relation.referencesRadke-Mitchell, L. C., & Sandine, W. E. (1986). Influence of Temperature on Associative Growth of Streptococcus thermophilus and Lactobacillus bulgaricus. Journal of Dairy Science, 69(10), 2558–2568. https://doi.org/10.3168/jds.S0022-0302(86)80701-9
dc.relation.referencesRay, B., & Bhunia, A. (2008). Fundamental Food Microbiology (Fourth). Boca Raton, Florida: Taylor & Francis Group.
dc.relation.referencesRe, R., Pellegrini, N., Proteggente, a., Pannala, a., Yang, M., & Rice-Evans, C. (1999). Antioxidant Activity Applying an Improved Abts Radical Cation Decolorization Assay. Free Radical Biology and Medicine, 26(9), 1231–1237. https://doi.org/10.1016/S0891-5849(98)00315-3
dc.relation.referencesReis, R. C., Minim, V. P. R., Bolini, H. M. A., Dias, B. R. P., Minim, L. A., & Ceresino, E. B. (2011). Sweetness equivalence of different sweeteners in strawberry-flavored yogurt. Journal of Food Quality. https://doi.org/10.1111/j.1745-4557.2011.00378.x
dc.relation.referencesRezaei, R., Khomeiri, M., & Aalami, M. (2014). Effect of inulin on the physicochemical properties , flow behavior and probiotic survival of frozen yogurt. Journal of Food Science and Technology, 51(10), 2809–2814. https://doi.org/10.1007/s13197-012-0751-7
dc.relation.referencesRiazi, A, & Ziar, H. (2012). Effect of honey and starter culture on growth, acidification, sensory properties and bifidobacteria cell counts in fermented skimmed milk. African Journal of Microbiology Research, 6(3), 486–498. https://doi.org/10.5897/AJMR10.819
dc.relation.referencesRiazi, Ali, & Ziar, H. (2008). Growth and viability of yogurt starter organisms in honey-sweetened skimmed milk. Journal of Biotechnology, 7(12), 2055–2063.
dc.relation.referencesRosas, E. (2014). Elaboración de un producto lácteo fermentado a base de Morinda citlifolia L., 65.
dc.relation.referencesRuales Guzman, B. V. (2012). Seguimiento de la producción del aroma del yogurt durante la fermentacion ácido láctica mediante nariz electrónica y evaluación sensorial. Universidad Nacional de Colombia.
dc.relation.referencesŞanlıdere Aloğlu, H., & Öner, Z. (2011). Determination of antioxidant activity of bioactive peptide fractions obtained from yogurt. Journal of Dairy Science, 94(11), 5305–5314. https://doi.org/10.3168/jds.2011-4285
dc.relation.referencesSanz, M. L., Polemis, N., Morales, V., Corzo, N., Drakoularakou, A., Gibson, G. R., & Rastall, R. A. (2005). In vitro investigation into the potential prebiotic activity of honey oligosaccharides. Journal of Agricultural and Food Chemistry, 53(8), 2914–2921. https://doi.org/10.1021/jf0500684
dc.relation.referencesSarao, L. K., & Arora, M. (2017). Probiotics, prebiotics, and microencapsulation: A review. Critical Reviews in Food Science and Nutrition, 57(2), 344–371. https://doi.org/10.1080/10408398.2014.887055
dc.relation.referencesSerna Cock, L., & Rodriguez de Stouvenel, A. (2005). Producción Biotecnológica de ácido láctico: Estado del arte. Ciencia y Tecnología Alimentaria, 5(1), 54–65.
dc.relation.referencesSert, D., Akin, N., & Dertli, E. (2011). Effects of sunflower honey on the physicochemical, microbiological and sensory characteristics in set type yoghurt during refrigerated storage. International Journal of Dairy Technology, 64(1), 99–107. https://doi.org/10.1111/j.1471-0307.2010.00635.x
dc.relation.referencesShoaib, M., Shehzad, A., Omar, M., Rakha, A., Raza, H., Sharif, H. R., … Niazi, S. (2016). Inulin: Properties, health benefits and food applications. Carbohydrate Polymers, 147, 444–454. https://doi.org/10.1016/j.carbpol.2016.04.020
dc.relation.referencesSingleton, V., Orthofer, R., & Lamuela-Raventós, R. (1999). Analysis of total phenols and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent. En Methods in Enzymology (Vol. 299, pp. 152–178).
dc.relation.referencesSiró, I., Kápolna, E., Kápolna, B., & Lugasi, A. (2008). Functional food. Product development, marketing and consumer acceptance-A review. Appetite, 51(3), 456–467. https://doi.org/10.1016/j.appet.2008.05.060
dc.relation.referencesSoares, S., Amaral, J. S., Oliveira, M. B. P. P., & Mafra, I. (2017). A Comprehensive Review on the Main Honey Authentication Issues: Production and Origin. Comprehensive Reviews in Food Science and Food Safety, 00. https://doi.org/10.1111/1541-4337.12278
dc.relation.referencesSohrabvandi, S., Mortazavian, A. M., Dolatkhahnejad, M. R., & Monfared, A. B. (2012). Suitability of MRS-bile agar for the selective enumeration of mixed probiotic bacteria in presence of mesophilic lactic acid cultures and yoghurt bacteria. Iranian Journal of Biotechnology, 10(1), 16–21.
dc.relation.referencesStellar University of Northshield. (2015). Sweetening Agents. Recuperado el 3 de octubre de 2019, de northshield.org
dc.relation.referencesStijepić, M., Đurđević-Milošević, D., & Glušac, J. (2012). Production of Low Fat Yoghurt Enriched With Different Functional Ingredients. Quality of Life (Banja Luka) - APEIRON, 5(1–2), 5–12. https://doi.org/10.7251/QOL1201005S
dc.relation.referencesTacha Mahecha, F. A., & Moreno Rodriguez, J. A. (2016). Plan de manejo y aprovechamiento forestal de Acacia mangium willd en la finca El Delirio, Puerto Lleras Meta, periodo 2014-2030. Universidad Nacional Abierta y a Distancia UNAD.
dc.relation.referencesTamime, A., & Robinson, R. (1991). Yogur Ciencia y Tecnología. Zaragoza: Acribia S.A.
dc.relation.referencesUlrich Landry, B. K., Moumita, S., Jayabalan, R., & Ngoufack François, Z. (2016). Honey , probiotics and prebiotics : review. Research Journal of Pharmaceutical, Biological and Chemical Sciences, 7(5), 2428–2438. https://doi.org/0975-8585
dc.relation.referencesUriot, O., Denis, S., Junjua, M., Roussel, Y., Dary-Mourot, A., & Blanquet-Diot, S. (2017). Streptococcus thermophilus: From yogurt starter to a new promising probiotic candidate? Journal of Functional Foods, 37, 74–89. https://doi.org/10.1016/j.jff.2017.07.038
dc.relation.referencesUSDA. (2001). USDA Specifications for Yogurt , Nonfat Yogurt and Lowfat Yogurt.
dc.relation.referencesUSDA. (2019). FoodData Central search results: Yogurt, plain, whole milk. Recuperado el 20 de noviembre de 2019, de https://fdc.nal.usda.gov/fdc-app.html#/food-details/171284/nutrients
dc.relation.referencesVanegas-Azuero, A.-M., & Gutiérrez, L.-F. (2018). Physicochemical and sensory properties of yogurts containing sacha inchi (Plukenetia volubilis L.) seeds and β-glucans from Ganoderma lucidum. Journal of Dairy Science, 1020–1033. https://doi.org/10.3168/jds.2017-13235
dc.relation.referencesVarga, L. (2006). Effect of acacia (Robinia pseudo-acacia L.) honey on the characteristic microflora of yogurt during refrigerated storage. International Journal of Food Microbiology, 108(2), 272–275. https://doi.org/10.1016/j.ijfoodmicro.2005.11.014
dc.relation.referencesVenir, E., Spaziani, M., & Maltini, E. (2010). Crystallization in “Tarassaco” Italian honey studied by DSC. Food Chemistry. https://doi.org/10.1016/j.foodchem.2009.04.012
dc.relation.referencesWalstra, P. (2001). Ciencia de la leche y tecnología de los productos lácteos (1a ed.). Zaragoza: Acribia S.A.
dc.relation.referencesWilliams, E. B., Hooper, B., Spiro, A., & Stanner, S. (2015). The contribution of yogurt to nutrient intakes across the life course. Nutrition Bulletin, 40(1), 9–32. https://doi.org/10.1111/nbu.12130
dc.relation.referencesYildez, F. (2010). Development and manufacture of yogurt and other functional dairy products. Boca Raton, Florida: Taylor & Francis Group.
dc.relation.referencesZapata, I. C., Sepúlveda-Valencia, U., & Rojano, B. A. (2015). Efecto del tiempo de almacenamiento sobre las propiedades fisicoquímicas, probióticas y antioxidantes de yogurt saborizado con mortiño (Vaccinium meridionale Sw). Información Tecnológica, 26(2), 17–28. https://doi.org/10.4067/S0718-07642015000200004
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess
dc.subject.proposalMiel
dc.subject.proposalHoney
dc.subject.proposalfermented milk
dc.subject.proposalbebidas lácteas fermentadas
dc.subject.proposalprebiotics
dc.subject.proposalprebióticos
dc.subject.proposaledulcorantes
dc.subject.proposalprobiotics
dc.subject.proposalprobióticos
dc.subject.proposalsweetener
dc.type.coarhttp://purl.org/coar/resource_type/c_1843
dc.type.coarversionhttp://purl.org/coar/version/c_970fb48d4fbd8a85
dc.type.contentText
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2


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