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| Campo DC | Valor | Lengua/Idioma |
|---|---|---|
| dc.contributor.author | García Osorio, Lissen Stehicy. | - |
| dc.date.accessioned | 2026-08-13T13:45:59Z | - |
| dc.date.available | 2022 | - |
| dc.date.available | 2026-08-13T13:45:59Z | - |
| dc.date.issued | 2022 | - |
| dc.identifier.citation | García Osorio, L. S. (2022). Elaboración de una barra de chocolate con leche reducida en azúcares con adición de Lactobacillus Rhamnosus GG (LGG) y Té Matcha (Camellia Sinensis) para la Empresa All Great [Trabajo de Grado Pregrado, Universidad de Pamplona]. Repositorio Hulago Universidad de Pamplona. https://repositoriodspace.unipamplona.edu.co/jspui/handle/20.500.12744/10772 | es_CO |
| dc.identifier.uri | https://repositoriodspace.unipamplona.edu.co/jspui/handle/20.500.12744/10772 | - |
| dc.description | Actualmente ha ido en aumento la conciencia de las personas en su salud y dieta, lo que obliga a las empresas a producir alimentos saludables y con adición de componentes bioactivos. De este modo, aumentar la funcionalidad de un producto sin dañar las características de calidad es muy importante para cumplir con los requisitos del consumidor. Al considerar el hecho de que el chocolate es uno de los productos alimenticios ampliamente consumidos y populares entre personas de todas las edades en todo el mundo, el objetivo de esta investigación fue elaborar tres diferentes formulaciones de un chocolate con leche en barra con adición de té matcha a diferentes concentraciones (0,5%, 1,5% y 2,5%) y Lactobacillus rhamnosus GG (LGG), con sustitución parcial de sacarosa por maltitol. En las diferentes formulaciones se evaluaron las propiedades fisicoquímicas (humedad, cenizas y pH se evaluaron en el día 1, 7, 14 y 30, además se evaluó el color y el perfil de fusión) y microbiológicas (determinación de la viabilidad del Lactobacillus rhamnosus GG (LGG), análisis de la viabilidad del Lactobacillus rhamnosus GG (LGG) en las muestras de chocolate y calidad microbiológica de las muestras). Además, se realizó la prueba afectiva (dulzura, apariencia, color, olor, textura, sabor y aceptación general) y se identificó el perfil sensorial para cada una de las formulaciones. Los parámetros fisicoquímicos y sensoriales se compararon con una muestra de chocolate con leche regular comercial. Adicionalmente, se elaboró la tabla nutricional, la etiqueta y la ficha técnica para la muestra con mayor aceptación. En los resultados de los análisis fisicoquímicos se obtuvo que la humedad en las muestras en el día 1 era ligeramente alta (2,58% - 3,2%) y para el día 30 este contenido aumentó para F1 (3,98%) y F2 (4,76%), y disminuyó para FC (2,39%) y F3 (2,8%). En el contenido de cenizas no se encontró diferencias estadísticamente significativas entre F1, F2 y F3 (1,89% - 2,13%), presentándose en menor cantidad en FC (1,21%). El pH de todas las muestras en los días de análisis se encontró dentro de los rangos normales, siendo menor en F1, F2 y F3 (6,33 – 6,72), en comparación con FC (6,55 - 7,07). En las formulaciones suplementadas con té matcha se afectó significativamente los parámetros de color CIE L*a*b* de los chocolates. En perfil de fusión no se encontraron diferencias estadísticamente significativas, encontrándose en un rango de 39-41°C para todas las muestras. En el análisis de calidad microbiológico se encontró que todas eran aptas para el consumo. De los análisis sensoriales se obtuvo que la formulación con mayor aceptación fue F1 (con adición de 0,5% de té matcha) y en el perfil descriptivo no se encontraron diferencias estadísticamente significativas entre las formulaciones para cada uno de los atributos evaluados. En el recuento de células viables de Lactobacillus rhamnosus GG (1x109 UFC/g), este disminuyó al ser adicionado al chocolate (3,2x107 UFC/g). | es_CO |
| dc.description.abstract | La autora no proporciona la información sobre este ítem. | es_CO |
| dc.format.extent | 172 | es_CO |
| dc.format.mimetype | application/pdf | es_CO |
| dc.language.iso | es | es_CO |
| dc.publisher | Universidad de Pamplona - Facultad de Ingenierías y Arquitectura. | es_CO |
| dc.subject | Chocolate con leche. | es_CO |
| dc.subject | Té matcha. Maltitol. | es_CO |
| dc.subject | Componentes bioactivos. | es_CO |
| dc.subject | Propiedades fisicoquímicas. | es_CO |
| dc.subject | Evaluación sensorial. | es_CO |
| dc.title | Elaboración de una barra de chocolate con leche reducida en azúcares con adición de Lactobacillus Rhamnosus GG (LGG) y Té Matcha (Camellia Sinensis) para la Empresa All Great. | es_CO |
| dc.type | http://purl.org/coar/resource_type/c_7a1f | es_CO |
| dc.date.accepted | 2022 | - |
| dc.relation.references | Afoakwa, E. O. (2010). Industrial Chocolate Manufacture- Processes and Factors Influencing Quality. Chocolate Science and Technology, 35-57. https://doi.org/10.1002/9781444319880.CH3. | es_CO |
| dc.relation.references | Alvarado, M., y Duville, K. (2020). Guía técnica para la elaboración de chocolate. | es_CO |
| dc.relation.references | Amulyn. (s. f.). Probióticos en polvo Lactobacillus Rhamnosus. Recuperado 5 de octubre de 2022, a partir de https://es.amulyn-bio.com/probiotics-powder- 1759745/. | es_CO |
| dc.relation.references | Angiolillo, L., del Nobile, M. A., y Conte, A. (2015). The extraction of bioactive compounds from food residues using microwaves. Current Opinion in Food Science, 5, 93-98. https://doi.org/10.1016/J.COFS.2015.10.001. | es_CO |
| dc.relation.references | Aravena, V. (2020). Leche en polvo: ¿Cuál es la mejor del 2022? https://www.reviewbox.com.mx/leche-en-polvo/. | es_CO |
| dc.relation.references | Aroyeun, S., y Jayeola, C. (2016). Effects of Green Tea Extracts on the Caffeine, Tannin, Total Polyphenolic Contents and Organoleptic Properties of Milk Chocolate. Journal of Food Processing y Technology, 07(04). https://doi.org/10.4172/2157-7110.1000579. | es_CO |
| dc.relation.references | Association of Official Analytical Chemists [AOAC]. (1990). Official methods of analysis of the Association of Official Analytical Chemists. En Official Methods of Analysis (15th ed., 1990.). The Association. | es_CO |
| dc.relation.references | Basu, S., y Singha, S. (2022). Influence of sugar substitutes in rheology of fruit gel. Advances in Food Rheology and Its Applications, 385-411. https://doi.org/10.1016/B978-0-12-823983-4.00017-0. | es_CO |
| dc.relation.references | Beckett, S. (2009). Chocolate manufacture. Science and Technology of Enrobed and Filled Chocolate, Confectionery and Bakery Products, 11 -28. https://doi.org/10.1533/9781845696436.1.11. | es_CO |
| dc.relation.references | BeMiller, J. N. (2019). Carbohydrate and Noncarbohydrate Sweeteners. Carbohydrate Chemistry for Food Scientists, 371 -399. https://doi.org/10.1016/B978-0-12-812069-9.00019-4. | es_CO |
| dc.relation.references | Bolenz, S., y Glöde, L. (2021). Technological and nutritional aspects of milk chocolate enriched with grape pomace products. European Food Research and Technology, 247(3), 623-636. https://doi.org/10.1007/S00217-020-03651 -4. | es_CO |
| dc.relation.references | Newton, T. (2017). Guía de los Perfiles de Sabor del Cacao y Chocolate. https://perfectdailygrind.com/es/2017/09/12/guia-de-los-perfiles-de-sabor-delcacao-chocolate-para-principiantes/. | es_CO |
| dc.relation.references | NTC. (2008). Norma técnica Colombiana [NTC] 792: Chocolate y sus sucedáneos para consumo directos. | es_CO |
| dc.relation.references | Oliveras Sevilla, J. M. (2007). La elaboración del chocolate, una técnica dulce y ecológica. https://www.studocu.com/co/document/unidad-central-del-valle-delcauca/resistencia-de-materiales/chocolate-ejemplo-de-la-materia-procesosindustriales/11675218. | es_CO |
| dc.relation.references | Oracz, J., Zyzelewicz, D., y Nebesny, E. (2015). The Content of Polyphenolic Compounds in Cocoa Beans (Theobroma cacao L.), Depending on Variety, Growing Region, and Processing Operations: A Review. Https://Doi.Org/10.1080/10408398.2012.686934, 55(9), 1176-1192. https://doi.org/10.1080/10408398.2012.686934. | es_CO |
| dc.relation.references | Orquídea. (s. f.). Lecitina de soya. Recuperado 5 de octubre de 2022, a partir de https://www.orquidea.com.co/lecitina-de-soya-60g. | es_CO |
| dc.relation.references | Osorio Buitrago, L. N. (2018). Probióticos y prebióticos aplicables en un producto a base de chocote. http://repository.unilasallista.edu.co/dspace/bitstream/10567/2262/1/Probiotico s_prebioticos_aplicables_producto_chocolate.pdf. | es_CO |
| dc.relation.references | Ozer, M., Ozturk, B., Hayaloglu, A. A., y Tellioglu Harsa, S. (2022). Development of a functional chocolate using gamma-amino butyric acid producer Lacticaseibacillus rhamnosus NRRL B-442. Food Bioscience, 47, 101678. https://doi.org/10.1016/J.FBIO.2022.101678. | es_CO |
| dc.relation.references | Palma Rodríguez, M. T., Soledispa Alcívar, G. L., y Matute Zeas, M. E. (2018). Efecto de la harina de papa oca en diferentes niveles en la capacidad higroscópica en una galleta dulce. | es_CO |
| dc.relation.references | Palomo Calvo, A. (2016). Estudio de la viscosidad de distintos tipos de chocolate durante la etapa de conchado líquido. https://uvadoc.uva.es/handle/10324/20845. | es_CO |
| dc.relation.references | Panchis Cakes. (2021). Lecitina de soya. https://panchiscakes.com/productos/comestibles/lecitina-de-soya/. | es_CO |
| dc.relation.references | Bravo, J. A., Forsythe, P., Chew, M. v., Escaravage, E., Savignac, H. M., Dinan, T. G., Bienenstock, J., y Cryan, J. F. (2011). Ingestion of Lactobacillus strain regulates emotional behavior and central GABA receptor expression in a mouse via the vagus nerve. Proceedings of the National Academy of Sciences of the United States of America, 108(38), 16050-16055. https://doi.org/10.1073/PNAS.1102999108/SUPPL_FILE/PNAS.201102999SI. PDF. | es_CO |
| dc.relation.references | Parker, G., y Crawford, J. (2007). Chocolate craving when depressed: a personality marker. The British Journal of Psychiatry, 191(4), 351 -352. https://doi.org/10.1192/BJP.BP.106.033746. | es_CO |
| dc.relation.references | Parker, G., Parker, I., y Brotchie, H. (2006). Mood state effects of chocolate. Journal of Affective Disorders, 92(2-3), 149-159. https://doi.org/10.1016/J.JAD.2006.02.007. | es_CO |
| dc.relation.references | Parra Huertas, R. A. (2010). Bacterias acido lácticas: papel funcional en los alimentos. Biotecnología En El Sector Agropecuario y Agroindustrial, 8(1), 93- 105. http://www.scielo.org.co/scielo.php?script=sci_arttextypid=S1692- 35612010000100012ylng=enynrm=isoytlng=es. | es_CO |
| dc.relation.references | Pastoriza, S., Mesías, M., Cabrera, C., y Rufián-Henares, J. A. (2017). Healthy properties of green and white teas: an update. Food y Function, 8(8), 2650- 2662. https://doi.org/10.1039/C7FO00611J. | es_CO |
| dc.relation.references | Paucar Menacho, L. M., Salvador Reyes, R., Guillén Sánchez, J., y Mori Arismendi, S. (2016). Efecto de la sustitución parcial de la harina de trigo por harina de soya en las características tecnológicas y sensoriales de cupcakes destinados a niños en edad escolar. Scientia Agropecuaria, 7(2), 121 -132. https://doi.org/10.17268/SCI.AGROPECU.2016.02.05. | es_CO |
| dc.relation.references | Pedroso, D. L., Dogenski, M., Thomazini, M., Heinemann, R. J. B., y FavaroTrindade, C. S. (2013). Microencapsulation of Bifidobacterium animalis subsp. lactis and Lactobacillus acidophilus in cocoa butter using spray chilling technology. Brazilian Journal of Microbiology, 44(3), 777-783. https://doi.org/10.1590/S1517-83822013000300017. | es_CO |
| dc.relation.references | Pérez, P. (2022). Más sustitutos del azúcar, ¿Qué es el maltitol? https://www.mentta.com/blog/que-es-el-maltitol/. | es_CO |
| dc.relation.references | Phat, C., Moon, B., y Lee, C. (2016). Evaluation of umami taste in mushroom extracts by chemical analysis, sensory evaluation, and an electronic tongue system. Food Chemistry, 192, 1068-1077. https://doi.org/10.1016/J.FOODCHEM.2015.07.113. | es_CO |
| dc.relation.references | Pickford, E. F., y Jardine, N. J. (2000). Functional confectionery. Functional Foods, 259-286. https://doi.org/10.1533/9781855736436.3.259. | es_CO |
| dc.relation.references | Poliński, S., Topka, P., Tańska, M., Kowalska, S., Czaplicki, S., y SzydłowskaCzerniak, A. (2022). Impact of Bioactive Compounds of Plant Leaf Powders in White Chocolate Production: Changes in Antioxidant Properties during the Technological Processes. Antioxidants 2022, Vol. 11, Page 752, 11(4), 752. https://doi.org/10.3390/ANTIOX11040752. | es_CO |
| dc.relation.references | Burgain, J., Gaiani, C., Linder, M., y 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. | es_CO |
| dc.relation.references | Possemiers, S., Marzorati, M., Verstraete, W., y van de Wiele, T. (2010). Bacteria and chocolate: A successful combination for probiotic delivery. International Journal of Food Microbiology, 141(1 -2), 97-103. https://doi.org/10.1016/J.IJFOODMICRO.2010.03.008. | es_CO |
| dc.relation.references | Quiñones Muñoz, T., Gallegos Infante, J. A., Rocha Guzmán, N. E., Ochoa Martinez, L. A., Morales Castro, J., González Laredo, R. F., y Medina Torres, L. (2011). Mixing and tempering effect on the rheological and particle size properties of dark chocolate coatings. CYTA - Journal of Food, 9(2), 109-113. https://doi.org/10.1080/19476337.2010.482748/SUPPL_FILE/TCYT_A_48274 8_SUP_19121886.PDF. | es_CO |
| dc.relation.references | Quirós Martínez, M. C. (2016). Factibilidad técnica de la elaboración de un chocolate con leche de cabra y evaluación de sus características físico-químicas y sensoriales. | es_CO |
| dc.relation.references | Ramli, N., Zaw, N. Z., Kasim, Z. M., y Idris, N. A. (2006). Sensory Evaluation and Physical Characteristics of Chocolate Using Goat`s Milk. International Journal of Dairy Science, 1(2), 146-154. https://doi.org/10.3923/IJDS.2006.146.154. | es_CO |
| dc.relation.references | Reshi, M. (2018). Chocolate processing. https://www.researchgate.net/publication/330171165. | es_CO |
| dc.relation.references | Rietveld, A., y Wiseman, S. (2003). Antioxidant effects of tea: evidence from human clinical trials. The Journal of Nutrition, 133(10). https://doi.org/10.1093/JN/133.10.3285S. | es_CO |
| dc.relation.references | Roy, D. (2011). Probiotics. Comprehensive Biotechnology, Second Edition, 4, 591 - 602. https://doi.org/10.1016/B978-0-08-088504-9.00317-2. | es_CO |
| dc.relation.references | Sabatini, N. (2010). A Comparison of the Volatile Compounds, in Spanish-style, Greek-style and Castelvetrano-style Green Olives of the Nocellara del Belice Cultivar:: Alcohols, Aldehydes, Ketones, Esters and Acids. Olives and Olive Oil in Health and Disease Prevention, 219-231. https://doi.org/10.1016/B978-0-12- 374420-3.00024-3. | es_CO |
| dc.relation.references | Sánchez Dávila, J. F. (2019). Caracterización molecular de bacterias ácido lácticas aisladas de frutos procedentes de la Región Loreto. https://cybertesis.unmsm.edu.pe/bitstream/handle/20.500.12672/10767/Sanch ez_dj.pdf?sequence=1 yisAllowed=y. | es_CO |
| dc.relation.references | Santos Espinosa, A., Manzanarez Quin, C. G., Reyes Díaz, R., Hernández Mendoza, A., Vallejo Cordoba, B., y González Córdova, A. F. (2018). Ácido gamma-aminobutírico (GABA) producido por bacterias ácido lácticas en alimentos fermentados. https://www.redalyc.org/journal/339/33957185004/html/. | es_CO |
| dc.relation.references | Cárdenas Mazón, N., Cevallos Hermida, C., Salazar Yacelga, J., Romero Machado, E., Gallegos Murillo, P., y Cáceres Mena, M. (2018). Uso de pruebas afectivas, discriminatorias y descriptivas de evaluación sensorial en el campo. | es_CO |
| dc.relation.references | Silva, M. P., Tulini, F. L., Marinho, J. F. U., Mazzocato, M. C., de Martinis, E. C. P., Luccas, V., y Favaro-Trindade, C. S. (2017). Semisweet chocolate as a vehicle for the probiotics Lactobacillus acidophilus LA3 and Bifidobacterium animalis subsp. lactis BLC1: Evaluation of chocolate stability and probiotic survival under in vitro simulated gastrointestinal conditions. LWT, 75, 640-647. https://doi.org/10.1016/J.LWT.2016.10.025. | es_CO |
| dc.relation.references | Smolyansky, J. (2010). Probiotics: A Historical Perspective. Bioactive Foods in Promoting Health: Probiotics and Prebiotics, 43-45. https://doi.org/10.1016/B978-0-12-374938-3.00003-7. | es_CO |
| dc.relation.references | Sollid, K. (2020). ¿Qué es el maltitol? https://foodinsight.org/what-is-maltitol/. | es_CO |
| dc.relation.references | Son, Y. J., Choi, S. Y., Yoo, K. M., Lee, K. W., Lee, S. M., Hwang, I. K., y Kim, S. (2018). Anti-blooming effect of maltitol and tagatose as sugar substitutes for chocolate making. LWT, 88, 87-94. https://doi.org/10.1016/J.LWT.2017.09.018. | es_CO |
| dc.relation.references | Sosa. (2018). Ficha técnica lecitina de soja líquida. | es_CO |
| dc.relation.references | Statista Research Department. (2022a). Colombia: ingresos por confitería de chocolate. https://www.statista.com/forecasts/1287535/chocolateconfectionery-market-revenue-in-colombia. | es_CO |
| dc.relation.references | Statista Research Department. (2022b). Tamaño del mercado de dulces de chocolate a nivel mundial de 2016 a 2027(en billones de dólares estadounidenses). https://www.statista.com/forecasts/983554/globalchocolate-confectionery-market-size. | es_CO |
| dc.relation.references | Stone, H. (2018). Example food: What are its sensory properties and why is that important? Npj Science of Food 2018 2:1, 2(1), 1 -3. https://doi.org/10.1038/s41538-018-0019-3. | es_CO |
| dc.relation.references | Tang, Y., Yu, X., Zhang, Y., Lu, X., Li, Q., Jia, Y., y He, C. (2019). Sensory descriptive analysis of green tea: correlation with chemical components. https://doi.org/10.1088/1755-1315/461/1/012013. | es_CO |
| dc.relation.references | Toker, O. S., Zorlucan, F. T., Konar, N., Dağlıoğlu, O., Sagdic, O., y Şener, D. (2017). Investigating the effect of production process of ball mill refiner on some physical quality parameters of compound chocolate: response surface methodology approach. International Journal of Food Science y Technology, 52(3), 788-799. https://doi.org/10.1111/IJFS.13336. | es_CO |
| dc.relation.references | Champagne, C. P., Raymond, Y., Guertin, N., y Bélanger, G. (2015). Effects of storage conditions, microencapsulation and inclusion in chocolate particles on the stability of probiotic bacteria in ice cream. International Dairy Journal, 47, 109-117. https://doi.org/10.1016/J.IDAIRYJ.2015.03.003. | es_CO |
| dc.relation.references | Tsang, C., Hodgson, L., Bussu, A., Farhat, G., y Al-Dujaili, E. (2019). Effect of Polyphenol-Rich Dark Chocolate on Salivary Cortisol and Mood in Adults. Antioxidants 2019, Vol. 8, Page 149, 8(6), 149. https://doi.org/10.3390/ANTIOX8060149. | es_CO |
| dc.relation.references | USDA. (2019). Información nutricional del té verde matcha en polvo. https://fdc.nal.usda.gov/fdc-app.html#/food-details/1962398/nutrients. | es_CO |
| dc.relation.references | USDA. (2021a). Información nutricional de la azúcar. https://fdc.nal.usda.gov/fdcapp.html#/food-details/2021609/nutrients. | es_CO |
| dc.relation.references | USDA. (2021b). Información nutricional de la leche entera en polvo. https://fdc.nal.usda.gov/fdc-app.html#/food-details/1911462/nutrients. | es_CO |
| dc.relation.references | USDA. (2021c). Información nutricional de la pasta de cacao 100% orgánica. https://fdc.nal.usda.gov/fdc-app.html#/food-details/1997377/nutrients. | es_CO |
| dc.relation.references | USDA. (2022). Información nutricional de la manteca de cacao. https://fdc.nal.usda.gov/fdc-app.html#/food-details/2270065/nutrients. | es_CO |
| dc.relation.references | Vandenplas, Y., Huys, G., y Daube, G. (2015). Probiotics: an update. Jornal de Pediatria, 91(1), 6-21. https://doi.org/10.1016/J.JPED.2014.08.005. | es_CO |
| dc.relation.references | Vegaffinity. (s. f.). Información nutricional de la esencia de vainilla. Recuperado 5 de noviembre de 2022, a partir de https://www.vegaffinity.com/comunidad/alimento/esencia-de-vainillabeneficios-informacion-nutricional--f1208. | es_CO |
| dc.relation.references | Vera, G. (2016). Saludable té matcha: magia en polvo. https://www.cocinayvino.com/vinos-bebidas/cafe-te/saludable-te-matchamagia-en-polvo/. | es_CO |
| dc.relation.references | Vera Romero, J. M., y Mantilla Pabón, Y. T. (2020). Características sensoriales de granos y licor de cacao por un panel de jueces en entrenamiento. Revista Sennova: Revista Del Sistema de Ciencia, Tecnología e Innovación, 5(1), 27- 42. https://doi.org/10.23850/23899573.3232. | es_CO |
| dc.relation.references | Chavarrías, M. (2019). Leche en polvo: ¿cuál es su uso como aditivo? https://www.eldiario.es/consumoclaro/comer/anade-leche-polvolacteos_1_1306060.html. | es_CO |
| dc.relation.references | Vidalón Pinto, S. G. (2017). Efecto de sustitución parcial de azúcar por maltitol sobre las características sensoriales y fisicoquímicas de una galleta dulce. | es_CO |
| dc.relation.references | Vilarrasa, A. (2020). Esencia y extracto de vainilla: ¿cuáles son sus diferencias? . https://mejorconsalud.as.com/esencia-extracto-vainilla-diferencias/. | es_CO |
| dc.relation.references | Villa, J. E. L., Pereira, C. D., y Cadore, S. (2015). A novel, rapid and simple acid extraction for multielemental determination in chocolate bars. https://doi.org/10.1016/j.microc.2015.03.008. | es_CO |
| dc.relation.references | Weiss, D. J., y Anderton, C. R. (2003). Determination of catechins in matcha green tea by micellar electrokinetic chromatography. Journal of Chromatography. A, 1011(1 -2), 173-180. https://doi.org/10.1016/S0021 -9673(03)01133-6. | es_CO |
| dc.relation.references | Yebra Biurrun, M. C. (2005). Edulcorantes. Encyclopedia of Analytical Science: Second Edition, 562-572. https://doi.org/10.1016/B0-12-369397-7/00610-5. | es_CO |
| dc.relation.references | Yonejima, Y., Hisa, K., Kawaguchi, M., Ashitani, H., Koyama, T., Usamikrank, Y., Kishida, N., Kishino, S., y Ogawa, J. (2015). Lactic acid bacteria-containing chocolate as a practical probiotic product with increased acid tolerance. Biocatalysis and Agricultural Biotechnology, 4(4), 773-777. https://doi.org/10.1016/J.BCAB.2015.09.001. | es_CO |
| dc.relation.references | Zarić, D. B., Bulatović, M. L., Rakin, M. B., Krunić, T., Lončarević, I. S., y Pajin, B. S. (2016). Functional, rheological and sensory properties of probiotic milk chocolate produced in a ball mill. RSC Advances, 6(17), 13934-13941. https://doi.org/10.1039/C5RA21363K. | es_CO |
| dc.relation.references | Zhou, J., Yu, Y., Ding, L., Xu, P., y Wang, Y. (2021 ). Matcha green tea alleviates non-alcoholic fatty liver disease in high-fat diet-induced obese mice by regulating lipid metabolism and inflammatory responses. Nutrients, 13(6). https://doi.org/10.3390/nu13061950. | es_CO |
| dc.relation.references | Zimmermann, B. F., y Ellinger, S. (2020). Cocoa, Chocolate, and Human Health. Nutrients 2020, Vol. 12, Page 698, 12(3), 698. https://doi.org/10.3390/NU12030698. | es_CO |
| dc.relation.references | Żyżelewicz, D., Oracz, J., Bilicka, M., Kulbat-Warycha, K., y Klewicka, E. (2021). Influence of Freeze-Dried Phenolic-Rich Plant Powders on the Bioactive Compounds Profile, Antioxidant Activity and Aroma of Different Types of Chocolates. Molecules 2021, Vol. 26, Page 7058, 26(22), 7058. https://doi.org/10.3390/MOLECULES26227058. | es_CO |
| dc.relation.references | Chocograin. (s. f.). Análisis sensorial aplicado al chocolate. Recuperado 30 de septiembre de 2022, a partir de https://chocograin.es/catas-analisis-sensorialaplicado-al-chocolate/. | es_CO |
| dc.relation.references | Cielecka Piontek, J., Dziedziński, M., Szczepaniak, O., Kobus Cisowska, J., Telichowska, A., y Szymanowska, D. (2020). Survival of commercial probiotic strains and their effect on dark chocolate synbiotic snack with raspberry content during the storage and after simulated digestion. Electronic Journal of Biotechnology, 48, 62-71. https://doi.org/10.1016/J.EJBT.2020.09.005. | es_CO |
| dc.relation.references | Cienfuegos Jovellanos, E., del Mar Quiñones, M., Muguerza, B., Moulay, L., Miguel, M., y Aleixandre, A. (2009). Antihypertensive Effect of a Polyphenol-Rich Cocoa Powder Industrially Processed To Preserve the Original Flavonoids of the Cocoa Beans. Journal of Agricultural and Food Chemistry, 57(14), 6156-6162. https://doi.org/1 0.1021/JF804045B. | es_CO |
| dc.relation.references | Codex Alimentarius. (2016). Norma para el chocolate y los productos del chocolate. | es_CO |
| dc.relation.references | Colombo, M., Castilho, N. P. A., Todorov, S. D., y Nero, L. A. (2018). Beneficial properties of lactic acid bacteria naturally present in dairy production 06 Biological Sciences 0605 Microbiology. BMC Microbiology, 18(1), 1 -12. https://doi.org/10.1186/S12866-018-1356-8/TABLES/3. | es_CO |
| dc.relation.references | Coman, M. M., Cecchini, C., Verdenelli, M. C., Silvi, S., Orpianesi, C., y Cresci, A. (2012). Functional foods as carriers for SYNBIO®, a probiotic bacteria combination. International Journal of Food Microbiology, 157(3), 346-352. https://doi.org/10.1016/J.IJFOODMICRO.2012.06.003. | es_CO |
| dc.relation.references | Conservas Dani. (2018). Ficha técnica vainilla. https://www.dani.es/sites/default/files/2019-01/Vainilla%20rama.pdf. | es_CO |
| dc.relation.references | Curry, B., y Crow, V. (2002). LACTOBACILLUS spp. | General Characteristics. Encyclopedia of Dairy Sciences, 1479-1484. https://doi.org/10.1016/B0-12- 227235-8/00238-8. | es_CO |
| dc.relation.references | D, C. (2022). ¿El chocolate es ácido o alcalino? https://trishdeseine.com/ischocolate-acid-or-alkaline/. | es_CO |
| dc.relation.references | da Silva Medeiros, N., Marder, R. K., Farias Wohlenberg, M., Funchal, C., y Dani, C. (2015). Total Phenolic Content and Antioxidant Activity of Different Types of Chocolate, Milk, Semisweet, Dark, and Soy, in Cerebral Cortex, Hippocampus, and Cerebellum of Wistar Rats. Biochemistry Research International, 2015. https://doi.org/10.1155/2015/294659. | es_CO |
| dc.relation.references | de Angelis, M., y Gobbetti, M. (2016). Lactobacillus SPP.: General Characteristics. Reference Module in Food Science. https://doi.org/10.1016/B978-0-08-100596- 5.00851 -9. | es_CO |
| dc.relation.references | Dean, L. L., Klevorn, C. M., y Hess, B. J. (2016). Minimizing the Negative Flavor Attributes and Evaluating Consumer Acceptance of Chocolate Fortified with Peanut Skin Extracts. Journal of Food Science, 81(11), S2824-S2830. https://doi.org/10.1111/1750-3841.13533/FULL. | es_CO |
| dc.relation.references | Devkota, H. P., Gaire, B. P., Hori, K., Subedi, L., Adhikari-Devkota, A., Belwal, T., Paudel, K. R., Jha, N. K., Singh, S. K., Chellappan, D. K., Hansbro, P. M., Dua, K., y Kurauchi, Y. (2021). The science of matcha: Bioactive compounds, analytical techniques and biological properties. Trends in Food Science y Technology, 118, 735-743. https://doi.org/10.1016/J.TIFS.2021.10.021. | es_CO |
| dc.relation.references | Donato Capel, L., Garcia Rodenas, C. L., Pouteau, E., Lehmann, U., Srichuwong, S., Erkner, A., Kolodziejczyk, E., Hughes, E., Wooster, T. J., y Sagalowicz, L. (2014). Technological Means to Modulate Food Digestion and Physiological Response. Food Structures, Digestion and Health, 389-422. https://doi.org/10.1016/B978-0-12-404610-8.00014-1. | es_CO |
| dc.relation.references | el cocinario. (s. f.). Leche en polvo como ingrediente. Recuperado 5 de octubre de 2022, a partir de https://www.elcocinario.com/ingrediente/leche-en-polvo. | es_CO |
| dc.relation.references | Ellis, E. (2022). Alimentos funcionales. https://www.eatright.org/food/nutrition/healthy-eating/functional-foods. | es_CO |
| dc.relation.references | Emmadi, P., Krishna, P., Namasi, A., y Nugala, B. (2012). Role of green tea as an antioxidant in periodontal disease: The Asian paradox. Journal of Indian Society of Periodontology, 16(3), 313. https://doi.org/10.4103/0972-124X.100902. | es_CO |
| dc.relation.references | Empresas Iansa. (s. f.). Azúcar Consciente: ¿Qué es azúcar? Recuperado 5 de octubre de 2022, a partir de https://empresasiansa.cl/azucar-consciente/quees-azucar/. | es_CO |
| dc.relation.references | Erginkaya, Z., Sarıkodal, E., Tülin Özkütük, S., Konuray, G., Ünal Turhan, E., Üniversitesi, Ç., Fakültesi, Z., Mühendisliği Bölümü, G., Korkut Ata Üniversitesi, O., Uygulamalı Bilimler Yüksekokulu, K., Teknolojisi Bölümü, G., y Geliş, T. (2019). Probiyotik bitter çikolata üretiminde mikroenkapsüle Lactobacillus Rhamnosus kullanimi. 44(2), 238-247. https://doi.org/10.15237/gida.GD19021. | es_CO |
| dc.relation.references | Escudero, E. (2020). Lecitina de soya: el emulsionante versátil. https://thefoodtech.com/nutricion-y-salud/lecitina-de-soya-el-emulsionanteversatil/. | es_CO |
| dc.relation.references | Faccinetto Beltrán, P., Gómez Fernández, A. R., Orozco Sánchez, N. E., Pérez Carrillo, E., Marín Obispo, L. M., Hernández Brenes, C., Santacruz, A., y Jacobo Velázquez, D. A. (2021). Physicochemical Properties and Sensory Acceptability of a Next-Generation Functional Chocolate Added with Omega-3 Polyunsaturated Fatty Acids and Probiotics. Foods 2021, Vol. 10, Page 333, 10(2), 333. https://doi.org/1 0.3390/FOODS10020333. | es_CO |
| dc.relation.references | Fatimah Ibrahim, S., Ezzati Dalek, N. M., Firdaus Raffie, Q. M., y Faridatul Ain, M. (2020). Quantification of physicochemical and microstructure properties of dark chocolate incorporated with palm sugar and dates as alternative sweetener. https://doi.org/10.1016/j.matpr.2020.06.235. | es_CO |
| dc.relation.references | Fernández Romero, E., Chavez Quintana, S. G., Siche, R., Castro Alayo, E. M., y Cardenas Toro, F. P. (2020). The Kinetics of Total Phenolic Content and Monomeric Flavan-3-ols during the Roasting Process of Criollo Cocoa. Antioxidants 2020, Vol. 9, Page 146, 9(2), 146. https://doi.org/10.3390/ANTIOX9020146. | es_CO |
| dc.relation.references | Firmanto, H. (2018). Cocoa Butter Characteristic on Different Roasting Temperature and Its Final Sensory Profiles. Pelita Perkebunan (a Coffee and Cocoa Research Journal), 34(3), 175-182. https://doi.org/10.22302/ICCRI.JUR.PELITAPERKEBUNAN.V34I3.312. | es_CO |
| dc.relation.references | Florou Paneri, P., Christaki, E., y Bonos, E. (2013). Lactic Acid Bacteria as Source of Functional Ingredients. Lactic Acid Bacteria - R y D for Food, Health and Livestock Purposes. https://doi.org/10.5772/47766. | es_CO |
| dc.relation.references | Fusar Poli, L., Gabbiadini, A., Ciancio, A., Vozza, L., Signorelli, M. S., y Aguglia, E. (2021). The effect of cocoa-rich products on depression, anxiety, and mood: A systematic review and meta-analysis. Https://Doi.Org/10.1080/10408398.2021.1920570. https://doi.org/10.1080/10408398.2021.1920570. | es_CO |
| dc.relation.references | Gámiz, P. (2018). Antioxidantes, ¿qué son y para qué sirven? https://fundaciondelcorazon.com/blog-impulso-vital/3250-antioxidantes-iqueson-y-para-que-sirven.html. | es_CO |
| dc.relation.references | García Corrales, C. (2016). Caracterización de parámetros de calidad de salchichas tipo frankfurt adicionadas con Compuestos funcionales a partir de la cáscara de piña (ananás comosus var. Esmeralda). Exploraciones, Intercambios y Relaciones Entre El Diseño y La Tecnología, 57-79. https://doi.org/10.16/CSS/JQUERY.DATATABLES.MIN.CSS. | es_CO |
| dc.relation.references | Gayoso, E. (2018). Ficha técnica del maltitol. https://www.delitebe.com/doc/FichasTecnicas/7778990062.pdf. | es_CO |
| dc.relation.references | Gilliland, S. E. (2003). PROBIOTICS. Encyclopedia of Food Sciences and Nutrition, 4792-4798. https://doi.org/10.1016/B0-12-227055-X/00974-3. | es_CO |
| dc.relation.references | Global Organics. (2016). Common Chocolate Questions. https://www.globalorganics.com/post.php?s=2016-02-08-3-common-chocolate-questionsanswered. | es_CO |
| dc.relation.references | Good Scents Company. (2006). Odor Descriptors for tea green tea. http://www.thegoodscentscompany.com/data/ex1068751.html. | es_CO |
| dc.relation.references | Gorbach, S., Doron, S., y Magro, F. (2017). Lactobacillus rhamnosus GG. The Microbiota in Gastrointestinal Pathophysiology: Implications for Human Health, Prebiotics, Probiotics, and Dysbiosis, 79-88. https://doi.org/10.1016/B978-0-12- 804024-9.00007-0. | es_CO |
| dc.relation.references | Gramza Michałowska, A., Kulczyński, B., Skopiec, M., Kobus Cisowska, J., y Brzozowska, A. (2021). The effect of yellow tea leaves camellia sinensis on the quality of stored chocolate confectionery. Applied Sciences (Switzerland), 11(9). https://doi.org/10.3390/app11094123. | es_CO |
| dc.relation.references | Grembecka, M. (2019). Sugar Alcohols. Encyclopedia of Food Chemistry, 265-275. https://doi.org/10.1016/B978-0-08-100596-5.21625-9. | es_CO |
| dc.relation.references | Gültekin Özgüven, M., Berktaş, I., Gönül, Ö., y Özçelik, B. (2020). Development of dark chocolate enriched with matcha green tea (Camellia sinensis). 5, 850-860. https://doi.org/10.15237/gida.GD20034. | es_CO |
| dc.relation.references | Gutiérrez Santander, M. C. (2021). Sustitución parcial de harina de trigo por pure de auyama (cucúrbita moschata) y harinas de: garbanzo (cicer arietinum) y quinoa (chenopodium quinoa) en la elaboración de un producto esponjoso (cupcake). | es_CO |
| dc.relation.references | Hablemos claro. (2018). Confitería funcional. https://hablemosclaro.org/confiteriafuncional/. | es_CO |
| dc.relation.references | Hamzalioğlu, A., y Gökmen, V. (2016). Interaction between Bioactive Carbonyl Compounds and Asparagine and Impact on Acrylamide. Acrylamide in Food: Analysis, Content and Potential Health Effects, 355-376. https://doi.org/10.1016/B978-0-12-802832-2.00018-8. | es_CO |
| dc.relation.references | Hernández, A. (2020). Diferencia entre esencia y extracto de vainilla, ¿cuál es natural y cuál es sintética? . https://eldiariony.com/2020/10/10/diferencia-entreesencia-y-extracto-de-vainilla-cual-es-natural-y-cual-es-sintetica/. | es_CO |
| dc.relation.references | Hodgson, J., medicine, K. C.-M. aspects of, y 2010, undefined. (2008). Tea flavonoids and cardiovascular health. Elsevier, 17(S1), 288-290. https://www.sciencedirect.com/science/article/pii/S0098299710000737. | es_CO |
| dc.relation.references | Hwang, M.-H., Jeon, H.-L., Kim, H.-D., Lee, S.-W., y Kim, M.-R. (2012). Quality Characteristics and Antioxidant Activities of Chocolate Added with Mulberry Pomace. Korean Journal of Food and Cookery Science, 28(4), 479-487. https://doi.org/10.9724/KFCS.2012.28.4.479. | es_CO |
| dc.relation.references | Ibrahim, S. A. (2016). Lactic Acid Bacteria: Lactobacillus spp.: Other Species. Reference Module in Food Science. https://doi.org/10.1016/B978-0-08-100596- 5.00857-X. | es_CO |
| dc.relation.references | IGNOU. (2017). Judging of Milk and Milk Products. http://egyankosh.ac.in//handle/123456789/9637. | es_CO |
| dc.relation.references | Instituto Colombiano de Normas Técnicas y Certificación [ICONTEC]. (2008). NTC 792. | es_CO |
| dc.relation.references | Ioannone, F., di Mattia, C. D., de Gregorio, M., Sergi, M., Serafini, M., y Sacchetti, G. (2015). Flavanols, proanthocyanidins and antioxidant activity changes during cocoa (Theobroma cacao L.) roasting as affected by temperature and time of processing. Food Chemistry, 174, 256-262. https://doi.org/10.1016/J.FOODCHEM.2014.11.019. | es_CO |
| dc.relation.references | Islam, M. Z., Masum, A. K. M., y Harun-ur-Rashid, M. (2022a). Milk chocolate matrix as a carrier of novel Lactobacillus acidophilus LDMB-01: Physicochemical analysis, probiotic storage stability and in vitro gastrointestinal digestion. Journal of Agriculture and Food Research, 7, 100263. https://doi.org/10.1016/J.JAFR.2021.100263. | es_CO |
| dc.relation.references | Islam, M. Z., Masum, A. K. M., y Harun-ur-Rashid, M. (2022b). Milk chocolate matrix as a carrier of novel Lactobacillus acidophilus LDMB-01: Physicochemical analysis, probiotic storage stability and in vitro gastrointestinal digestion. Journal of Agriculture and Food Research, 7, 100263. https://doi.org/10.1016/J.JAFR.2021.100263. | es_CO |
| dc.relation.references | Jafarnejad, S., Shab-Bidar, S., Speakman, J. R., Parastui, K., Daneshi-Maskooni, M., y Djafarian, K. (2016). Probiotics Reduce the Risk of Antibiotic-Associated Diarrhea in Adults (18-64 Years) but Not the Elderly (>65 Years). Nutrition in Clinical Practice, 31(4), 502-513. https://doi.org/10.1177/0884533616639399. | es_CO |
| dc.relation.references | Juaréz, C. (2020). Vivera, nuevo probiótico para el malestar estomacal. https://thefoodtech.com/desarrollo-de-nuevos-productos/vivera-nuevoprobiotico-para-el-malestar-estomacal/. | es_CO |
| dc.relation.references | Kashyap, B. (2019). Classification of Lactic acid bacteria. https://www.slideshare.net/BishalKashyap1/classification-of-lactic-acidbacteria?from_action=save. | es_CO |
| dc.relation.references | Kemsawasd, V., Chaikham, P., y Rattanasena, P. (2016). Survival of immobilized probiotics in chocolate during storage and with an in vitro gastrointestinal model. Food Bioscience, 16, 37-43. https://doi.org/10.1 016/J.FBIO.2016.09.001. | es_CO |
| dc.relation.references | Kobus Cisowska, J., Szymanowska, D., Maciejewska, P., Szczepaniak, O., Kmiecik, D., Gramza Michałowska, A., Kulczyński, B., y Cielecka Piontek, J. (2019). Enriching novel dark chocolate with Bacillus coagulans as a way to provide beneficial nutrients. Food and Function, 10(2), 997-1006. https://doi.org/10.1039/C8FO02099J. | es_CO |
| dc.relation.references | Kochman, J., Jakubczyk, K., Antoniewicz, J., Mruk, H., y Janda, K. (2020). Health Benefits and Chemical Composition of Matcha Green Tea: A Review. Molecules 2021, Vol. 26, Page 85, 26(1), 85. https://doi.org/10.3390/MOLECULES26010085. | es_CO |
| dc.relation.references | Kochman, J., Jakubczyk, K., Antoniewicz, J., Mruk, H., y Janda, K. (2021). Health Benefits and Chemical Composition of Matcha Green Tea: A Review. Molecules, 26(1). https://doi.org/10.3390/MOLECULES26010085. | es_CO |
| dc.relation.references | Kohlmeier, L., Weterings, K. G. C., Steck, S., y Kok, F. J. (2009). Tea and cancer prevention: An evaluation of the epidemiologic literature. Http://Dx.Doi.Org/10.1080/01635589709514494, 27(1), 1 -13. https://doi.org/10.1080/01635589709514494. | es_CO |
| dc.relation.references | Konar, N. (2013). Influence of conching temperature and some bulk sweeteners on physical and rheological properties of prebiotic milk chocolate containing inulin. European Food Research and Technology, 236(1), 135-143. https://doi.org/10.1007/S00217-012-1873-X. | es_CO |
| dc.relation.references | Konar, N., Said Toker, O., Oba, S., y Sagdic, O. (2016). Improving functionality of chocolate: A review on probiotic, prebiotic, and/or synbiotic characteristics. https://doi.org/10.1016/j.tifs.2016.01.002. | es_CO |
| dc.relation.references | Kumar, H., y Salminen, S. (2016). Probiotics. Encyclopedia of Food and Health, 510- 515. https://doi.org/10.1016/B978-0-12-384947-2.00570-5. | es_CO |
| dc.relation.references | Kunes, M., y Kvetina, J. (2016). Probiotics: Preclinical Testing for Verification of Their Gastrointestinal Effectiveness. Nutraceuticals: Efficacy, Safety and Toxicity, 799-810. https://doi.org/10.101 6/B978-0-12-802147-7.00056-5. | es_CO |
| dc.relation.references | Kurauchi, Y., Devkota, H. P., Hori, K., Nishihara, Y., Hisatsune, A., Seki, T., y Katsuki, H. (2019). Anxiolytic activities of Matcha tea powder, extracts, and fractions in mice: Contribution of dopamine D1 receptor- and serotonin 5-HT1A receptor-mediated mechanisms. Journal of Functional Foods, 59, 301 -308. https://doi.org/10.1016/J.JFF.2019.05.046. | es_CO |
| dc.relation.references | la Organización de las Naciones Unidas para la Alimentación y la Agricultura [FAO], y Organización Mundial de la Salud [OMS]. (2006). Probióticos en los alimentos. | es_CO |
| dc.relation.references | Laboratorios Funat. (2019). Té Matcha. https://funat.co/producto/te-matcha-100-g- 2/. | es_CO |
| dc.relation.references | Lahtinen, S. J., Ouwehand, A. C., Salminen, S. J., Forssell, P., y Myllärinen, P. (2007). Effect of starch- and lipid-based encapsulation on the culturability of two Bifidobacterium longum strains. Letters in Applied Microbiology, 44(5), 500-505. https://doi.org/1 0.1111/J.1472-765X.2007.02110.X. | es_CO |
| dc.relation.references | Laličić Petronijević, J., Popov Raljić, J., Lazić, V., Pezo, L., y Nedović, V. (2017). Synergistic effect of three encapsulated strains of probiotic bacteria on quality parameters of chocolates with different composition. Journal of Functional Foods, 38, 329-337. https://doi.org/10.1016/J.JFF.2017.09.041. | es_CO |
| dc.relation.references | Lamprecht, M., Bogner, S., Schippinger, G., Steinbauer, K., Fankhauser, F., Hallstroem, S., Schuetz, B., y Greilberger, J. F. (2012). Probiotic supplementation affects markers of intestinal barrier, oxidation, and inflammation in trained men; a randomized, double-blinded, placebo-controlled trial. Journal of the International Society of Sports Nutrition, 9. https://doi.org/10.1186/1550-2783-9-45. | es_CO |
| dc.relation.references | Laroute, V., Mazzoli, R., Loubière, P., Pessione, E., y Cocaign-Bousquet, M. (2021). Environmental conditions affecting gaba production in lactococcus lactis ncdo 2118. Microorganisms, 9(1), 1 -12. https://doi.org/10.3390/microorganisms9010122. | es_CO |
| dc.relation.references | Lee, D. K., Jang, S., Kim, M. J., Kim, J. H., Chung, M. J., Kim, K. J., y Ha, N. J. (2008). Anti-proliferative effects of Bifidobacterium adolescentis SPM0212 extract on human colon cancer cell lines. BMC Cancer, 8. https://doi.org/10.1186/1471 -2407-8-310. | es_CO |
| dc.relation.references | Logan, A. C., y Jacka, F. N. (2014). Nutritional psychiatry research: an emerging discipline and its intersection with global urbanization, environmental challenges and the evolutionary mismatch. https://doi.org/10.1186/1880-6805-33-22. | es_CO |
| dc.relation.references | López, E. (2018a). Licor de cacao natural. | es_CO |
| dc.relation.references | López, E. (2018b). Manteca de cacao. | es_CO |
| dc.relation.references | Luo, H., Liu, Z., Xie, F., Bilal, M., Liu, L., Yang, R., y Wang, Z. (2021). Microbial production of gamma-aminobutyric acid: applications, state-of-the-art achievements, and future perspectives. Https://Doi.Org/10.1080/07388551.2020.1869688, 41(4), 491 -512. https://doi.org/10.1080/07388551.2020.1869688. | es_CO |
| dc.relation.references | Lyte, M. (2011). Probiotics function mechanistically as delivery vehicles for neuroactive compounds: Microbial endocrinology in the design and use of probiotics. BioEssays, 33(8), 574-581. https://doi.org/10.1002/BIES.201100024. | es_CO |
| dc.relation.references | Madore, J. D. (s. f.). ¿Por qué se utilizan emulsionantes en el chocolate? Recuperado 2 de noviembre de 2022, a partir de https://toptierchocolate.com/why-are-emulsifiers-used-in-chocolate/. | es_CO |
| dc.relation.references | Marengo, K. (2020). Alimentos funcionales: definición, beneficios y usos. https://www.healthline.com/nutrition/functional-foods. | es_CO |
| dc.relation.references | Márquez Fernández, P. M., y Márquez Fernández, D. M. (2019). FUNCTIONAL FOODS: CURRENT ISSUES AND TRENDS. Vitae, 26(1), 6-7. https://doi.org/10.17533/UDEA.VITAE.V26N1A01. | es_CO |
| dc.relation.references | Martini, S., Conte, A., y Tagliazucchi, D. (2018). Comprehensive evaluation of phenolic profile in dark chocolate and dark chocolate enriched with Sakura green tea leaves or turmeric powder. Food Research International, 112, 1 -16. https://doi.org/10.1016/J.FOODRES.2018.06.020. | es_CO |
| dc.relation.references | Mayoclinic. (2021). Edulcorantes artificiales y otros sustitutos del azúcar. https://www.mayoclinic.org/es-es/healthy-lifestyle/nutrition-and-healthyeating/in-depth/artificial-sweeteners/art-20046936. | es_CO |
| dc.relation.references | McKay, D. L., y Blumberg, J. B. (2002). The role of tea in human health: an update. Journal of the American College of Nutrition, 21(1), 1 -13. https://doi.org/10.1080/07315724.2002.10719187. | es_CO |
| dc.relation.references | Ministerio de Salud y Protección Social. (2021). Resolución 810 de 2021. https://minsalud.gov.co/Normatividad_Nuevo/Resoluci%C3%B3n%20No.%20 810de%202021.pdf. | es_CO |
| dc.relation.references | Montagna, M. T., Diella, G., Triggiano, F., Caponio, G. R., de Giglio, O., Caggiano, G., di Ciaula, A., y Portincasa, P. (2019). Chocolate, “Food of the Gods”: History, Science, and Human Health. International Journal of Environmental Research and Public Health 2019, Vol. 16, Page 4960, 16(24), 4960. https://doi.org/10.3390/IJERPH16244960. | es_CO |
| dc.relation.references | Mota Gutierrez, J., Barbosa Pereira, L., Ferrocino, I., y Cocolin, L. (2019). Traceability of Functional Volatile Compounds Generated on Inoculated Cocoa Fermentation and Its Potential Health Benefits. Nutrients 2019, Vol. 11, Page 884, 11(4), 884. https://doi.org/10.3390/NU11040884. | es_CO |
| dc.relation.references | Muzaffar, K., Jan, R., Ahmad Bhat, N., Gani, A., y Ahmed Shagoo, M. (2021). Commercially Available Probiotics and Prebiotics Used in Human and Animal Nutrition. Advances in Probiotics, 417-435. https://doi.org/10.1016/B978-0-12- 822909-5.00025-3. | es_CO |
| dc.relation.references | Nebesny, E., Żyżelewicz, D., Motyl, I., y Libudzisz, Z. (2004). Properties of sucrosefree chocolates enriched with viable lactic acid bacteria. European Food Research and Technology 2004 220:3, 220(3), 358-362. https://doi.org/10.1007/S00217-004-1069-0. | es_CO |
| dc.rights.accessrights | http://purl.org/coar/access_right/c_abf2 | es_CO |
| dc.type.coarversion | http://purl.org/coar/resource_type/c_2df8fbb1 | es_CO |
| Aparece en las colecciones: | Ingeniería de Alimentos | |
Ficheros en este ítem:
| Fichero | Descripción | Tamaño | Formato | |
|---|---|---|---|---|
| García_2022_TG.pdf | García_2022_TG | 3,11 MB | Adobe PDF | Visualizar/Abrir |
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