dc.creatorBarbosa M.I.M.J.
dc.creatorBorsarelli C.D.
dc.creatorMercadante A.Z.
dc.date2005
dc.date2015-06-26T14:08:07Z
dc.date2015-11-26T14:07:42Z
dc.date2015-06-26T14:08:07Z
dc.date2015-11-26T14:07:42Z
dc.date.accessioned2018-03-28T21:08:20Z
dc.date.available2018-03-28T21:08:20Z
dc.identifier
dc.identifierFood Research International. , v. 38, n. 8-9, p. 989 - 994, 2005.
dc.identifier9639969
dc.identifier10.1016/j.foodres.2005.02.018
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-23144467304&partnerID=40&md5=0daa620414653fee3530974408122d04
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/93500
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/93500
dc.identifier2-s2.0-23144467304
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1240837
dc.descriptionBixin was encapsulated by spray-drying with gum arabic or maltodextrin, and the stability was evaluated in aqueous solution both under illumination or in the dark at 21°C. The microcapsules containing emulsifier, such as gum arabic or maltodextrin + Tween 80, showed the highest encapsulation efficiency, respectively 86% and 75%, less superficial imperfections and higher stability than bixin encapsulated with maltodextrin alone or blended with sucrose. The kinetic behavior of bixin photodegradation in all encapsulated systems was composed by two first-order decays, due to the presence of bixin outside and inside the microcapsules. Bixin encapsulated with gum arabic was 3 to 4 times more stable than that encapsulated with maltodextrin. In all systems, greater bixin stability (<two orders of magnitude) was observed in the dark than under illuminated conditions. In addition, 10 times greater bixin stability was observed for encapsulated solutions as compared to the non-encapsulated systems in the absence of light. © 2005 Elsevier Ltd. All rights reserved.
dc.description38
dc.description8-9
dc.description989
dc.description994
dc.descriptionBeatus, Y., Raziel, A., Rosenberg, M., Kopelman, I.J., Spray-drying microencapsulation of paprika oleoresin (1985) Lebensmittel-Wissenschaft Und-Technologie, 18, pp. 28-34
dc.descriptionBertolini, A.C., Siani, A.C., Grosso, C.R.F., Stability of monoterpenes encapsulated in gum arabic by spray-drying (2001) Journal of Agricultural and Food Chemistry, 49, pp. 780-785
dc.descriptionDesobry, S.A., Netto, F.M., Labuza, T.P., Comparison of spray-drying, drum-drying and freeze-drying for β-carotene encapsulation and preservation (1997) Journal of Food Science, 62, pp. 1158-1162
dc.descriptionDesobry, S.A., Netto, F.M., Labuza, T.P., Influence of maltodextrin system at an equivalent 25 de on encapsulated beta-carotene loss during storage (1999) Journal of Food Processing and Preservation, 23, pp. 39-55
dc.descriptionDickinson, E., Hydrocolloids at interfaces and the influence on the properties of dispersed systems (2003) Food Hydrocolloids, 17, pp. 25-39
dc.descriptionDib Taxi, C.M.A., Menezes, H.C., Santos, A.B., Grosso, C.R.F., Study of the microencapsulation of camu-camu (Myrciaria dubia) juice (2003) Journal of Microencapsulation, 20, pp. 443-448
dc.descriptionGlória, M.B.A., Vale, S.R., Bobbio, P.A., Effects of water activity on the stability of bixin in annatto extract microcrystalline cellulose model system (1995) Food Chemistry, 52, pp. 389-391
dc.descriptionHenry, L.K., Catignani, G.L., Schwartz, S.J., Oxidative degradation kinetics of lycopene, lutein, and 9-cis- and all-trans-β-carotene (1998) Journal of the American Oil Chemists' Society, 75, pp. 823-829
dc.descriptionLara, W.H., (1987) Monografias de Corantes Naturais para Fins Alimentícios. Padrões de Identidade e Qualidade, p. 117. , São Paulo, Brazil
dc.descriptionLee, K.Y., Shim, J., Bae, I.Y., Cha, J., Park, C.S., Lee, H.G., Characterization of gellan/gelatin mixed solutions and gels (2003) Lebensmittel-Wissenschaft Und-Technologie, 36, pp. 795-802
dc.descriptionLyng, S.M.O., Passos, M., Fontana, J.D., Bixin and α-cyclodextrin inclusion complex and stability tests (2005) Process Biochemistry, 40, pp. 865-872
dc.descriptionMcNamee, B.F., O'Riordan, E.D., O'Sullivan, M., Effects of partial replacement of gum arabic with carbohydrates on its microencapsulation properties (2001) Journal of Agricultural and Food Chemistry, 49, pp. 3385-3388
dc.descriptionMinemoto, Y., Hakamata, K., Adachi, S., Matsuno, R., Oxidation of linoleic acid encapsulated with gum arabic or maltodextrin by spray-drying (2002) Journal of Microencapsulation, 19, pp. 181-189
dc.descriptionMontenegro, M.A., Rios, A.O., Nazareno, M.A., Mercadante, A.Z., Borsarelli, C.D., Model studies on the photosensitized isomerization of bixin (2004) Journal of Agricultural and Food Chemistry, 52, pp. 367-373
dc.descriptionNajar, S.V., Bobbio, F.O., Bobbio, P.A., Effects to light, air, anti-oxidants and pro-oxidants on annatto extracts (Bixa orellana) (1988) Food Chemistry, 29, pp. 283-289
dc.descriptionPedroza-Islas, R., Vernon-Carter, E.J., Dúran-Domínguez, C., Trejo-Martínez, S., Using biopolymer blends for shrimp feedstuff microencapsulation - I, morphology and microstructure. Microcapsule particle size (1999) Food Research International, 32, pp. 367-374
dc.descriptionPesek, C.A., Warthesen, J.J., Kinetic model for photoisomerization and concomitant photodegradation of β-carotenes (1990) Journal of Agricultural and Food Chemistry, 38, pp. 1313-1315
dc.descriptionPreston, H.D., Rickard, M.D., Extraction and chemistry of annatto (1980) Food Chemistry, 5, pp. 47-56
dc.descriptionRios, A.O., Mercadante, A.Z., Optimization of the conditions to obtain bixin crystals and for extration and saponification to quantify bixin in extruded snacks by HPLC (2005) Alimentos e Nutrição, , (in press)
dc.descriptionRios, A.O., Borsarelli, C.D., Mercadante, A.Z., Thermal degradation kinetics of bixin in an aqueous model-system (2005) Journal of Agricultural and Food Chemistry, 53, pp. 2307-2311
dc.descriptionRobert, P., Carlsson, R.M., Romero, N., Masson, L., Stability of spray-dried encapsulated carotenoid pigments from rosa mosqueta (Rosa rubiginosa) oleoresin (2003) Journal of the American Oil Chemists' Society, 80, pp. 1115-1120
dc.descriptionRodríguez-Huezo, M.E., Pedroza-Islas, R., Prado-Barragán, L.A., Beristain, C.I., Vernon-Carter, E.J., Microencapsulation by spray drying of multiple emulsions containing carotenoids (2004) Journal of Food Science, 69, pp. 351-359
dc.descriptionScotter, M.J., Wilson, L.A., Appleton, G.P., Castle, L., Analysis of annatto (Bixa orellana) food coloring formulations. 1. Determination of coloring components and colored thermal degradation products by high-performance liquid chromatography with photodiode array detection (1998) Journal of Agricultural and Food Chemistry, 46, pp. 1031-1038
dc.descriptionSantos, A.B., (2003) Encapsulação de Oleoresina de Paprica Por Atomização Em Goma Arabica e Em Aglomerados Porosos de Amido/gelatin: Estabilidade e Aplicação, pp. 1-171. , Ph.D. Thesis. Universidade Estadual de Campinas. Faculdade de Engenharia de Alimentos Campinas, Brazil
dc.descriptionSheu, T.Y., Rosenberg, M., Microstructure of microcapsules consisting of whey proteins and carbohydrates (1998) Journal of Food Science, 63, pp. 491-494
dc.descriptionWagner, L.A., Warthesen, J.J., Stability of spray-dried encapsulated carrots carotenes (1995) Journal of Food Science, 60, pp. 1048-1053
dc.languageen
dc.publisher
dc.relationFood Research International
dc.rightsfechado
dc.sourceScopus
dc.titleLight Stability Of Spray-dried Bixin Encapsulated With Different Edible Polysaccharide Preparations
dc.typeActas de congresos


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