Please use this identifier to cite or link to this item: https://rima.ufrrj.br/jspui/handle/20.500.14407/11004
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dc.contributor.authorCunha Júnior, Paulo Cezar da
dc.date.accessioned2023-12-22T01:45:28Z-
dc.date.available2023-12-22T01:45:28Z-
dc.date.issued2019-02-21
dc.identifier.citationCUNHA JÚNIOR, Paulo Cezar da. Desenvolvimento de bebida simbiótica à base de castanha-do-Brasil. 2019. 69 f.. Dissertação(Mestrado em Ciência e Tecnologia de Alimentos) - Instituto de Tecnologia, Universidade Federal Rural do Rio de Janeiro, Seropédica, RJ, 2019.por
dc.identifier.urihttps://rima.ufrrj.br/jspui/handle/20.500.14407/11004-
dc.description.abstractOs “leites vegetais” são uma tendência mercadológica e de consumo em virtude do aumento de casos de intolerantes à lactose, alérgicos às proteínas do leite e adeptos de regimes alimentares e/ou ideológicos (vegetarianismo e veganismo). Sua elaboração, industrial ou doméstica, consiste na utilização de grãos, cereais, tubérculos, oleaginosas e frutas para a fabricação de extratos hidrossolúveis, visando a substituição do leite e seus derivados. Contudo, sua comercialização ainda é limitada e há pouquíssimas opções de “leites vegetais” com alegação funcional. Nesse contexto, a castanha-do-Brasil (Bertholletia excelsa H. B. K.) destaca-se por ser uma noz típica da região Amazônica, que apresenta alta qualidade nutricional, elevados teores de lipídios (entre 60% e 70%), proteínas de alto valor biológico (entre 15% e 20%) e é uma reconhecida fonte de selênio. Dessa forma, o presente trabalho teve por objetivo o desenvolvimento e caracterização de uma bebida fermentada à base de castanha-do-Brasil com potencial simbiótico, com a utilização da noz in natura, a fim de explorar a qualidade nutricional e biológica desta matéria, propiciando agregar valor e evidenciar a viabilidade do desenvolvimento e manutenção do Lactobacillus casei em matriz vegetal. Como prebiótico, utilizou-se inulina. Após 12 horas de fermentação, a bebida foi caracterizada, tendo os teores de umidade, lipídios, proteínas, carboidratos, fibras e cinzas mensurados e teve sua estabilidade física (pH e cor instrumental), química (acidez em termos de ácido láctico) e microbiológica (bolores e leveduras, Salmonella spp. e coliformes totais e termotolerantes) avaliada frente ao armazenamento sob refrigeração por 28 dias. A sobrevivência in vitro e viabilidade do microorganismo também foram avaliadas. A bebida apresentou escores intermediários em relação a aceitabilidade.por
dc.description.sponsorshipCAPES - Coordenação de Aperfeiçoamento de Pessoal de Nível Superiorpor
dc.formatapplication/pdf*
dc.languageporpor
dc.publisherUniversidade Federal Rural do Rio de Janeiropor
dc.rightsAcesso Abertopor
dc.subjectCastanha-do-Brasilpor
dc.subjectBebida fermentadapor
dc.subjectLactobacillus caseipor
dc.subjectBebida simbiótica não-lácteapor
dc.subjectBrazil nutseng
dc.subjectFermented drinkeng
dc.subjectLactobacillus caseieng
dc.subjectNon-dairy symbiotic drinkeng
dc.titleDesenvolvimento de bebida simbiótica à base de castanha-do-Brasilpor
dc.title.alternativeDevelopment of a symbiotic drink based on Brazil nutseng
dc.typeDissertaçãopor
dc.description.abstractOtherVegetable "milks" are a market and consumer trend due to the increase in cases of lactose intolerants, allergic to milk proteins and adherents of dietary and/or ideological regimes (vegetarianism and veganism). Its industrial or domestic elaboration consists in the use of grains, cereals, tubers, oilseeds and fruits for the manufacture of aqueous extracts, aiming at the substitution of milk and milk derivatives. However, its commercialization is still limited and there are very few options of vegetable "milks" with functional claim. In this context, Brazil nut (Bertholletia excelsa HBK) stands out as a typical nut of the Amazon region, which presents high nutritional quality, high lipid levels (between 60% and 70%), proteins of high biological value (between 15% and 20%) and a recognized source of selenium. The objective of this work was the development and characterization of a Brazil nuts-based fermented beverage with symbiotic potential, using in natura nut, in order to explore the nutritional and biological quality of this matter, favoring add value and evidence the viability of the development and maintenance of Lactobacillus casei in plant matrix. As prebiotic, inulin was used. After 12 hours of fermentation, the beverage was characterized, having the contents of moisture, lipids, proteins, carbohydrates, fibers and ash measured and had its physical (pH and instrumental color), chemical (acidity in terms of lactic acid) and microbiological stability (Molds and yeasts, Salmonella spp., total and thermotolerant coliforms) evaluated before storage under refrigeration for 28 days. Survival in vitro and viability of the microorganism were also evaluated. The drink presented intermediate scores in relation to the acceptabilityeng
dc.contributor.advisor1Ferreira, Elisa Helena da Rocha
dc.contributor.advisor1ID075.506.337-62por
dc.contributor.advisor1Latteshttp://lattes.cnpq.br/9247021829603724por
dc.contributor.advisor-co1Rosenthal, Amauri
dc.contributor.advisor-co1ID025.072.978-40por
dc.contributor.advisor-co1Latteshttp://lattes.cnpq.br/1329532290735502por
dc.contributor.referee1Gregorio, Sandra Regina
dc.contributor.referee1Latteshttp://lattes.cnpq.br/0015837037500256por
dc.contributor.referee2Cruz, Adriano Gomes da
dc.contributor.referee2Latteshttp://lattes.cnpq.br/2750728168418179por
dc.contributor.referee3Esteves, Thiana Claudia Freire
dc.contributor.referee3Latteshttp://lattes.cnpq.br/6691761221055979por
dc.creator.ID132.574.517-09por
dc.creator.Latteshttp://lattes.cnpq.br/3128670702749949por
dc.publisher.countryBrasilpor
dc.publisher.departmentInstituto de Tecnologiapor
dc.publisher.initialsUFRRJpor
dc.publisher.programPrograma de Pós-Graduação em Ciência e Tecnologia de Alimentospor
dc.relation.referencesCARDARELLI, H. R.; OLIVEIRA, A. J. Conservação do leite de castanha-do-Pará. Scientia Agricola, v. 57, n. 4, p. 617-622, 2000. CHAN, E. S.; ZHANG, Z. Bioencapsulation by compression coating of probiotic bacteria for their protection in an acidic medium. Process Biochemistry, v. 40, p. 3346-3351, 2005. CONAB - Companhia Nacional de Abastecimento. Proposta de Preços Mínimos Safra 2015- 2016. Produtos Regionais. Produtos da Sociobiodiversidade, v. 2, 159 p., 2015. FELBERG, I.; ANTONIASSI, R.; DELIZA, R.; FREITAS, S. C. de; MODESTA, R. C. D. Soy and Brazil nut beverage: processing, composition, sensory, and color evaluation. Ciência e Tecnologia de Alimentos, v. 29, n. 3, p. 609-617, 2009. FIORAVANTE, M. B. Elaboração, caracterização e aceitabilidade de bebida fermentada saborizada à base de extrato hidrossolúvel da amêndoa de baru (Dipteryx alata Vogel). Campo Grande, 2015. 99p. Dissertação (Mestrado em Saúde e Desenvolvimento na Região Centro-Oeste). Universidade Federal do Mato Grosso do Sul, 2015. FREITAS, J. B; NAVES, M. M. V. Composição química de nozes e sementes comestíveis e sua relação com a nutrição e saúde. Revista de Nutrição, Campinas, v. 23, n.2, p. 269-279, 2010. HASLER, C. M. Functional foods: their role in disease prevention na health promotion. Food Technology, v. 52, n. 11, p. 63-68, 1998. INSTITUTO BRASILEIRO DE GEOGRAFIA E ESTATÍSTICA – IBGE. Produção da Extração Vegetal e Silvicultura. v. 30, 48 p., 2015. KANDYLIS, P.; PISSARIDI, K.; BEKATOROU, A.; KANELLAKI, M.; KOUTINAS, A. A. Dairy and non-dairy probiotic beverages. Current Opinion in Food Science, v. 7, p. 58-63, 2016. KLUCZKOVSKI, A.; LIMA, N.; OLIVEIRA, M. K. Brazil nut powdered milk properties. Journal of Food Processing and Preservation, v.40, p. 1-6, 2016. MARTINS, M.; PACHECO, A. M.; LUCAS, A. C. S.; ANDRELLO, A. C.; APPOLONI, C. R.; XAVIER, J. J. M. Brazil nuts: determination of natural elements and aflotoxin. Acta Amazônica, v. 42, n. 1, p. 157-164, 2012. SANTOS, O. V. dos. Estudos das potencialidades da castanha-do-Brasil: produtos e subprodutos. 2012. 214 f. Tese (Doutorado) – Faculdade de Ciências Farmacêuticas, Universidade de São Paulo, São Paulo, 2012. VALCHEVA, R.; DIELEMAN, L. A. Prebiotics: Definition and protective mechanisms. Best Practice & Research Clinical Gastroenterology, v. 30, p. 27-37, 2016. VANDENPLAS, Y.; HUYS, G.; DAUBE, G. Probiotics: na update. Jornal de Pediatria, v. 91, n. 1, p. 6-21, 2015. VENTURINI FILHO, W. G. Bebidas não alcoólicas: Ciência e Tecnologia. São Paulo: Editora Blucher, 2010. YANG, J. Brazil nuts and associated health benefits: A review. LWT - Food Science and Technology, v. 42, n. 10, p.1573-1580, 2009. ABOULFAZLI, F. A.; BABA, A. S. Effect of vegetable milk on survival of probiotics in fermented ice cream under gastrointestinal conditions. Food Science and Technology Research, v. 21, n. 3, p. 391-397, 2015. ABOULFAZLI, F. A.; BABA, A. S.; MISRAN, M. Effects of fermentation by Bifidobacterium bifidum on the rheology and physical properties of ice cream mixes made with cow and vegetable milks. International Journal of Food Science and Technology, v. 50, n. 4, p. 942- 949, 2015. ABOULFAZLI, F. A.; BABA, A. S.; MISRAN, M. Replacement of bovine milk with vegetable milk: Effects on the survival of probiotics and rheological and physicochemical properties of frozen fermented dessert. International Journal of Dairy Technology, v. 69, n. 1, p. 71-80, 2016. ABOULFAZLI, F. A.; SHORI, A. B.; BABA, A. S. Effects of the replacement of cow milk with vegetable milk on probiotics and nutritional profile of fermented ice cream. LWT - Food Science and Technology, v. 70, p. 261-270, 2016. AGUIAR, J. P. L. Tabela de Composição de Alimentos da Amazônia. Acta Amazônia, v.26, n.1-2, p.121-126, 1996. AKOGLU, B.; LOYTVED, A.; NUIDING, H.; ZEUZEM, S.; FAUST, D. Probiotic Lactobacillus casei Shirota improves kidney function, inflammation and bowel movements in hospitalized patients with acute gastroenteritis – A prospective study. Journal of Functional Foods, v. 19, p. 305-313, 2015. ALBERDA, C.; MARCUSHAMER, S.; HEWER, T.; JOURNAULT, N.; KUTSOGIANNIS, D. Feasibility of a Lactobacillus casei Drink in the Intensive Care Unit for Prevention of Antibiotic Associated Diarrhea and Clostridium difficile. Nutrients, v. 10, p. 1-13, 2018. ARIHARA, K. Functional Foods. Encyclopedia of Meat Sciences, v. 2, p. 32-36, 2014. BALBI, M. E.; PENTEADO, P. T. P. da S.; CARDOSO, G.; SOBRAL, M. G.; SOUZA, V. R. de. Castanha-do-Pará (Bertholletia Excelsa Bonpl.): Composição Química e sua Importância para Saúde. Visão Acadêmica, v. 15, p. 51-63, 2014. BAYMA, M. M. A.; MALAVAZI, F. W.; SA, C. P.; FONSECA, F. L.; ANDRADE, E. P.; WADT, L. H. O. Aspectos da cadeia produtiva da castanha-do-Brasil no estado do Acre, Brasil. Boletim do Museu Paraense Emílio Goeldi, v. 9, n. 2, p. 417-426, 2014. BERNAT, N.; CHÁFER, M.; RODRÍGUEZ-GARCIA, J.; CHIRALT, A.; GONZÁLEZMARTÍNEZ, C. Effect of high pressure homogenisation and heat treatment on physical properties and stability of almond and hazelnut milks. LWT - Food Science and Technology, v. xxx, p. 1-9, 2014. BIANCHI, F.; ROSSI, E.; GOMES, R.; SIVIERI, K. Potentially synbiotic fermented beverage with aqueous extracts of quinoa (Chenopodium quinoa Willd) and soy. Food Science and Technology International, v. 21, n. 6, p. 403–415, 2014. BINDELS, L. B.; DELZENNE, N. M.; CANI, P. D.; WALTER, J. Towards a more comprehensive concept for prebiotics. Nature Reviews Gastroenterology & Hepatology, v. 12, n. 5, p. 303–310, 2015. 41 BOUVIE, L.; BORELLA, D. R.; PORTO, P. A. de O.; SILVA, A. C. da; LEONEL, S. Caracterização físico-química dos frutos de castanheira do Brasil. Nativa, v. 1, n. 2, p. 107- 111, 2016. BRASIL. Agência Nacional de Vigilância Sanitária – ANVISA. RDC nº 83, de 15 de setembro de 2000. Regulamento Técnico para Fixação de Identidade e Qualidade de Leite de Coco. Brasília, 2000. BRASIL. Agência Nacional de Vigilância Sanitária – ANVISA. RDC nº 90, de 18 de outubro de 2000. Regulamento Técnico para Fixação de Identidade e Qualidade de Alimento com Soja. Brasília, 2000. BRASIL. Ministério da Agricultura, Pecuária e Abastecimento - MAPA. Instrução Normativa nº 62, de 29 de dezembro de 2011. Regulamento Técnico de Produção, Identidade e Qualidade do Leite tipo A, o Regulamento Técnico de Identidade e Qualidade de Leite Cru Refrigerado, o Regulamento Técnico de Identidade e Qualidade de Leite Pasteurizado e o Regulamento Técnico da Coleta de Leite Cru Refrigerado e seu Transporte a Granel. Brasília, 2011. BRASIL. Ministério da Agricultura, Pecuária e Abastecimento -MAPA. Portaria n° 846, de 19 de novembro de 1976. Especificações para padronização, classificação e comercialização interna da Castanha do Brasil (Bertholletia excelsa H.B.K.). Brasília, 1976. BRASIL. Ministério da Agricultura. Decreto nº 51.209, de 18 de agosto de 1961. Aprova as novas especificações para a classificação e fiscalização da exportação da "Castanha do Brasil". Brasília, 1961. CAMARGO, P. B. de; SALOMÃO, R. de P.; TRUMBORE, S.; MARTINELLI, L. A. How old are large Brazil-nut trees (Bertholletia excelsa) in the Amazon? Scientia Agricola, v. 51, n. 2, p. 389-391, 1994. CANANI, R. B.; PEZZELLA, V.; AMOROSO, A.; COZZOLINO, T.; SCALA, C. di., PASSARIELLO, A.; Diagnosing and Treating Intolerance to Carbohydrates in Children. Nutrients, v. 8, n. 3, p.1-16, 2016. CHANG, J. C.; GUTENMANN, W. H.; REID, C. M.; LISK, D. J. Selenium Content of Brazil Nuts from Two Geographic Locations in Brazil. Chemosphere, v. 30, n. 4, p. 801-802, 1995. CHAVAN, M.; GAT, Y.; HARMALKAR, M.; WAGHMARE, R. Development of non-dairy fermented probiotic drink based on germinated and ungerminated cereals and legume. LWT – Food Science and Technology, v. 91, p. 339–344, 2018. CHIBA, M.; ABE, T.; TSUDA, H.; SUGAWARA, T.; TSUDA, S.; TOZAWA, H.; FUJIWARA, K.; IMAI, H. Lifestyle-related disease in Crohn’s disease: Relapse prevention by a semi-vegetarian diet. World Journal of Gastroenterology, v. 19, n. 20, p. 2484-2495, 2010. CHUNHIENG, T.; HAFIDI, A.; PIOCH, D.; BROCHIER, J.; MONTET, D. COLPO, E.; VILANOVA, C. D. D. A.; REETZ, L. G. B.; DUARTE, M. M. M. F.; FARIAS, I. L. G.; MEINERZ, D. F.; MARIANO, D. O. C.; VENDRUSCULO, R. G.; BOLIGON, A. A.; CORTE, C. L. D.; WAGNER, R.; ATHAYDE, M. L.; ROCHA, J. B. T. da. Brazilian nut consumption by healthy volunteers improves inflammatory parameters. Nutrition, v. 30, p. 459-465, 2014. 42 COSTA, D. A. da; ÁLVARES, V. de S.; KUSDRA, J. F.; NOGUEIRA, R. M.; MACIEL, V. T.; MIQUELONI, D. P. Quality of in-shell Brazil nuts after drying using a pilot natural convection oven in the state of Acre, Brazil. Brazilian Journal of Food Tecnology, v. 10, p. 1-9, 2017. COSTA, P. A. da; BALLUS, C. A.; TEIXEIRA FILHO, J.; GODOY, H. T. Fatty acids profile of pulp and nuts of brazilian fruits. Ciência e Tecnologia de Alimentos, v. 31, n. 4, p. 950- 954, 2011. COUSSEMENT, P. A. A. Inulin and Oligofructose: Safe Intakes and Legal Status. The Journal of Nutrition, v. 129, n.7, p. 1412S–1417S, 1999. DONA CASTANHA. Seção Castanha do Pará. Disponível em: <https://www.donacastanha.com.br/nozes-e-castanhas/castanha-do-para.html>. Acessado em 28 de outubro de 2018. EMPÓRIO BENDITO GRÃO. Seção Nozes e Frutas. Disponível em: <https://www.benditograo.com.br/nozes-e-frutas/castanhas-e-nozes-oleaginosas/>. Acessado em 28 de outubro de 2018. ESTAÇÃO DOS GRÃOS. Seção Castanhas, Nozes e Amendoas. Disponível em: <https://www.estacaodosgraos.com.br/graos/castanhas-nozes-e-amendoas.html>. Acessado em 28 de outubro de 2018. FALCÃO, I.; MANSILHA, H. F. Cow’s Milk Protein Allergy and Lactose Intolerance. Acta Pediátrica Portuguesa, n. 48, p. 53-60, 2017. FELBERG, I.; ANTONIASSI, R.; DELIZA, R.; FREITAS, S. C. de; MODESTA, R. C. D. Soy and Brazil nut beverage: processing, composition, sensory, and color evaluation. Ciência e Tecnologia de Alimentos, v. 29, n. 3, p. 609-617, 2009. FELBERG, I.; DELIZA, R,; GONÇALVES, E.B.; ANTONIASSI, R.; FREITAS, S.C.; CABRAL, L.C.; Bebida mista de extrato de soja integral e castanha do Brasil: caracterização físico-química, nutricional e aceitabilidade. Revista Alimentos e Nutrição, v. 15, n. 2, p. 163- 174, 2004. FERNANDEZ-DUARTE, K. P.; OLAYA-GALÁN, N. N.; SALAS-CÁRDENAS, S. P.; LOPEZ-ROZO, J.; GUTIERREZ-FERNANDEZ, M. F. Bifidobacterium adolescentis (DSM 20083) and Lactobacillus casei (Lafti L26-DSL): Probiotics Able to Block the In Vitro Adherence of Rotavirus in MA104 Cells. Probiotics and Antimicrobial proteins, v. 10, p. 56–63, 2018. FERREIRA, E. de S.; SILVEIRA, C. da S.; LUCIEN, V. G.; AMARAL, A. S. Caracterização físico-química da amêndoa, torta e composição dos ácidos graxos majoritários do óleo bruto da castanha-do-Brasil (Bertholletia excelsa H.B.K). Alimentos e Nutrição, v. 17, n. 2, p. 203– 208, 2006. FERREIRA, E. de S.; SILVEIRA, C. da S.; LUCIEN, V. G.; AMARAL, A. S. Caracterização físico-química da amêndoa, torta e composição dos ácidos graxos majoritários do óleo bruto da castanha-do brasil (Bertholletia excelsa H.B.K). Alimentos e Nutrição Araraquara, v. 17, n. 2, p. 203-208, 2006. FERREIRA, L. G.; BURINI, R. C.; MAIA, A. F.; Vegetarian diets and sports performance. Revista de Nutrição, v. 19, n. 4, p. 469-477, 2006. 43 FOOD AND AGRICULTURE ORGANIZATION OF THE UNITED NATIONS – FAO. Amino-acid content of foods and biological data on proteins. Food Policy and Food Science Service, Nutrition Division, FAO. Rome, Italy, 1970. Disponível em: http://www.fao.org/docrep/005/AC854T/AC854T00.htm#TOC. Acessado em 03 de outubro de 2017. FOOD AND AGRICULTURE ORGANIZATION OF THE UNITED NATIONS (FAO) / WORLD HEALTH ORGANIZATION (WHO). Guidelines for the Evaluation of Probiotics in Food - Report of a Joint FAO/WHO Working Group on Drafting Guidelines for the Evaluation of Probiotics in Food. 11 p., 2002. FRANCK, A. Technological functionality of inulin and oligofructose. British Journal of Nutrition, v. 87, p. S287-S291, 2002. FREIRE, A. L.; RAMOS, C. L.; DA COSTA SOUZA, P. N.; CARDOSO, M. G. B.; SCHWAN, R. F. Nondairy beverage produced by controlled fermentation with potential probiotic starter cultures of lactic acid bacteria and yeast. International Journal of Food Microbiology, v. 248, p. 39–46, 2017. FREITAS, J. B; NAVES, M. M. V. Composição química de nozes e sementes comestíveis e sua relação com a nutrição e saúde. Revista de Nutrição, Campinas, v. 23, n.2, p. 269-279, 2010. GIBSON, G. R.; HUTKINS, R.; SANDERS, M. E.; PRESCOTT, S. L.; REIMER, R. A.; SALMINEN, S. J.; SCOTT, K.; STANTON, C.; SWANSON, K. S.; CANI, P. D.; VERBEKE, K.; REID, G. The International Scientific Association for Probiotics and Prebiotics (ISAPP) consensus statement on the definition and scope of prebiotics. Nature Reviews – Gastroenterology & Hepatology, v. 14, p.491-502, 2017. GIBSON, G. R.; ROBERFROID, M. B. Dietary modulation of the human colonic microbiota: introducing the concept of prebiotics. Journal of Nutrition, v. 125, p. 1401–1412, 1995. GIBSON, G. R.; SCOTT, K. P.; RASTALL, R. A.; TUOHY, K. M.; HOTCHKISS, A.; DUBERT-FERRANDON, A.; GAREAU, M.; MURPHY, E. F.; SAULNIER, D.; LOH. G.; MACFARLANE, S.; DELZENNE, N.; RINGEL, Y.; KOZIANOWSKI, G.; DICKMANN, R.; LENOIR-WIJNKOOP, I.; WALKER, C.; BUDDINGTON R. Dietary prebiotics: current status and new definition. Food Science & Technology Bulletin: Functional Foods, v. 7, n. 1, p. 1– 19, 2010. GIMÉNEZ-BASTIDA, J. A.; ZIELINSKI, H. Buckwheat as a Functional Food and Its Effects on Health. Journal of Agricultural and Food Chemistry, v. 36, n. 13, p. 7896-7913, 2015. GOBBETTI, M.; MINERVINI, F. Lactobacillus casei. Encyclopedia of Food Microbiology, v. 2, p. 432–438, 2014. GUARIGUATA, M. R.; CRONKLETON, P.; DUCHELLE, A. E.; ZUIDEMA, P. A. Revisiting the ‘cornerstone of Amazonian conservation’: a socioecological assessment of Brazil nut exploitation. Biodiversity and Conservation, v. 26, p. 2007-2027, 2017. GUO, C. F.; LI, J. Y. Hypocholesterolaemic action of Lactobacillus casei F0822 in rats fed a cholesterol-enriched diet. International Dairy Journal, v. 32, p. 144-149, 2013. GUPTA, M.; BAJAJ, B. K. Development of fermented oat flour beverage as a potential probiotic vehicle. Food Bioscience, v. 20, p. 104–109, 2017. 44 HASLER, C. M. Functional foods: their role in disease prevention na health promotion. Food Technology, v. 52, n. 11, p. 63-68, 1998. HEYMAN, M. B. Lactose intolerance in infants, children, and adolescents. Pediatrics, v. 118, n. 3, p. 1279-1286, 2006. HILL, C.; GUARNER, F.; REID, G.; GIBSON, G. R.; MERENSTEIN, D. J.; POT, B.; SANDERS, M. E. The International Scientific Association for Probiotics and Prebiotics consensus statement on the scope and appropriate use of the term probiotic. Natural Reviews in Gastroenterology Hepatology, v.11, p. 506–514, 2014. HOCHWALLNER, H.; SCHULMEISTER, U.; SWOBODA, I.; SPITZAUER, S.; VALENTA, R. Cow’s milk allergy: From allergens to new forms of diagnosis, therapy and prevention. Methods, v. 66, n. 1, p. 22-33, 2014. IÇIER, F.; GÜNDÜZ, G. T.; YILMAZ, B.; MEMELI, Z. Changes on some quality characteristics of fermented soy milk beverage with added apple juice. LWT - Food Science and Technology, v. 63, p. 57-64, 2015. IMAFLORA – INSTITUTO DE MANEJO E CERTIFICAÇÃO FLORESTAL E AGRÍCOLA. Panorama Nacional da Cadeia de valor da castanha-do-Brasil. 60 p., Piracicaba, São Paulo, 2016. JENKINS, D. J. A.; KENDALL, C. W. C.; MARCHIE, A.; PARKER, T. L.; CONNELLY, P. W.; QIAN, W.; HAIGHT, J. S.; FAULKNER, D.; VIDGEN, E.; LAPSLEY, K. G.; SPILLER, G. A. Doe Response of Almonds on Coronary Heart Disease Risk Factors: Blood Lipids, Oxidized Low-Density Lipoproteins, Lipoprotein(a), Homocysteine and Pulmonary Nitric Oxide: A Randomized, Controlled, Crossover Trial. Circulation, v. 106, p. 1327-1332, 2002. KIM, J. G.; LEE, E.; KIM, S. H.; WHANG, K. Y.; OH, O.; I, J-Y. Effects of a Lactobacillus casei 393 fermented milk product on bone metabolism in ovariectomised rats. International Dairy Journal, v. 19, p. 690-695, 2009. KLUCZKOVSKI, A.; LIMA, N.; OLIVEIRA, M. K. Brazil nut powdered milk properties. Journal of Food Processing and Preservation, v.40, p. 1-6, 2016. KOLAČEK, S.; HOJSAK, I.; CANANI, R. B.; GUARINO, A.; INDRIO, F.; OREL, R.; POT, B.; SHAMIR, R.; SZAJEWSKA, H.; VANDENPLAS, Y.; VAN GOUDOEVER, J.; WEIZMAN, Z. Commercial Probiotic Products: A Call for Improved Quality Control. A Position Paper by the ESPGHAN Working Group for Probiotics and Prebiotics. Journal of Pediatric Gastroenterology and Nutrition, v.65, p.117–124, 2017. KOLETZKO, S.; NIGGEMANN, B.; ARATO, A.; DIAS, J. A.; HEUSCHKEL, R.; HUSBY, S.; MEARIN, M. L.; PAPADOPOULOU, A.; RUEMMELE, F. M.; STAIANO, A.; SCHÄPPI, M. G.; VANDENPLAS, Y. Diagnostic approach and management of cow's-milk protein allergy in infants and children: ESPGHAN GI Committee practical guidelines. Journal of Pediatric Gastroenterology and Nutrition, v. 55, n. 2, p. 221-229, 2012. KPODO, M. K. F.; AFOAKWA, E.; SAALIA, K.; AMOA, B. Changes in physico-chemical characteristics and volatile flavour components of different yoghurt products made from soy, peanuts and cow milk. African Journal of Food, Agriculture, Nutrition and Development, v. 16, n. 4, p. 11278-11294, 2016. KÜSTER-BOLUDA, I.; VIDAL-CAPILLA, I. Consumer attitudes in the election of functional foods. Spanish Journal of Marketing – ESIC, v. 21, supl. 1, p. 65-79, 2017. 45 LYRA, N. R. S.; MOTTA, M. E. F. A., ROCHA, L. A. R.; SOLÉ, D.; PEIXOTO, D. M.; RIZZO, J. A.; TABORDA-BARATA, L.; SARINHO, E. S. C. Adverse Reactions to Foods and Food Allergy: Development and Reproducibility of a Questionnaire for Clinical Diagnosis. Journal of Allergy, p. 1-7, 2013. MÄKINENA, O. E.; WANHALINNAB, V.; ZANNINI, E.; ARENDT, E. K. Foods for Special Dietary Needs: Non-Dairy Plant Based Milk Substitutes and Fermented Dairy Type Products. Critical Reviews in Food Science and Nutrition, v. 56, n. 13, p. 339-349, 2015. MANG, Y. D.; NJINTANG, Y. N.; ABDOU, B. A.; SCHER, J.; BERNARD, C.; MBOFUNG, M. C. Dehulling reduces toxicity and improves in vivo biological value of proteins in vegetal milk derived from two mucuna (Mucuna pruriens L.) seeds varieties. Journal of Food Science and Technology, v. 53, n. 6, p. 2548-2557, 2016. MATEJČEKOVÁ, Z.; SOLTÉSZOVÁ, F.; AČAI, P.; LIPTÁKOVÁ, D.; VALÍK, L. Application of Lactobacillus plantarum in Functional Products Based on Fermented Buckwheat. Journal of Food Science, v. 83, n. 4, p. 1053–1062, 2018. MENEZES, H. C.; SOUZA, M. L. Processamentos de amêndoa e torta de castanha-do-brasil e farinha de mandioca: parâmetros de qualidade. Ciência e Tecnologia de Alimentos, v. 24, n. 1, p. 120-128, 2004. MYERS, G. P.; NEWTON, A. C.; MELGAREJO, O. The influence of canopy gap size on natural regeneration of brazil nut (Bertholletia excelsa) in Bolivia. Forest Ecology and Management, v. 127, p. 199-128, 2000. NAGATA, S.; CHIBA, Y.; WANG, C.; YAMASHIRO, Y. The effects of the Lactobacillus casei strain on obesity in children: a pilot study. Beneficial Microbes, v. 8, n. 4, p. 535-543, 2017. NAOZUKA, J.; VIEIRA, E. C.; NASCIMENTO, A. N.; OLIVEIRA, P. V. Elemental analysis of nuts and seeds by axially viewed ICP OES. Food Chemistry, v. 124, p. 1667-1672, 2011. NAZIRI, E.; KOUPANTSIS, T.; MANTZOURIDOU, F.T.; PARASKEVOPOULOU, A.; TSIMIDOU, M.Z; KIOSSEOGLOU, V. Influence of thermal treatment on the stability of vegetable “milk” obtained by ultrafiltration of aqueous oil body extracts from various sources. European Journal of Lipid Science and Technology, v. 119, n. 7, p. 1-37, 2017. NINESS, K. R. Inulin and Oligofructose: What Are They? The Journal of Nutrition, v. 129, n. 7, p. 1402S–1406S, 1999. OLAOYE, O. A. A study on quality parameters and shelf stability of sweetened condensed vegetable milks produced from four varieties of soybeans (Glycine max). International Food Research Journal, v. 22, n. 6, p. 2212-2218, 2015. OLIVEIRA, F. G.; GONZÁLEZ-MOLERO, I. Probiotics and prebiotics in clinical practice. Nutricion Hospitalaria, v. 22, supl. 2, p. 26-34, 2007. PACHECO, A.; SCUSSEL, V. M. Castanha-do-Brasil: da floresta tropical ao consumidor. Florianópolis: Editograf, 2006. PINELI, L. de L. de O.; BOTELHO, R. B. A.; ZANDONADI, R. P.; SOLORZANO, J. L.; OLIVEIRA, G. T. de; REIS, C. E. G.; TEIXEIRA, D. da S. Low glycemic index and increased protein content in a novel quinoa milk. LWT - Food Science and Technology, v. 63, p. 1261- 1267, 2015. 46 REID, G. Probiotics: definition, scope and mechanisms of action. Best Practice & Research Clinical Gastroenterology, v. 30, p.17-25, 2016. RIBEIRO, M. A. A.; SOLER, R. M.; REGITANO-D‘ARCE, M. A. B.; LIMA, V. A. Shelled Brazil nuts canned under different atmospheres. Ciência e Tecnologia de Alimentos, v. 15, n. 2, p. 105-107,1995. ROBERFROID, M. B. Functional food concept and its application to prebiotics. Digestive and Liver Disease, v. 34, suppl. 2, p. s105-s110, 2002. RODRÍGUEZ, M. B. S.; MEGÍAS, S. M.; BAENA, B. M. Alimentos Funcionales y Nutrición óptima. Revista da Espanha de Salud Pública. v. 77, n. 3, p. 317-331, 2003. ROSENGARTEN, F. The book of edible nuts. 416 p. New York: Walker, 1984. RYAN, E.; GALVIN, K.; O’CONNOR, T. P.; MAGUIRE, A. R.; O’BRIEN, N. M. Fatty acid profile, tocopherol, squalene and phytosterol content of brazil, pecan, pine, pistachio and cashew nuts. International Journal of Food Sciences and Nutrition, v. 57, n. 3/4, p. 219- 228, 2006. SALOMÃO, R. de P.; ROSA N. A.; CASTILHO, A.; MORAIS, K. A. C. Castanheira-do-brasil recuperando áreas degradadas e provendo alimento e renda para comunidades da Amazônia Setentrional. Boletim do Museu Paraense Emílio Goeldi Ciências Naturais, v. 1, n. 2, p. 65– 78, 2006. SALOMÃO, R. P. Estrutura e densidade de Bertholletia excelsa H & B ("Castanheira") nas regiões de Carajás e Marabá, estado do Pará. Boletim do Museu Paraense Emílio Goeldi, v. 7: p. 47-68, 1991. SANTOS, F. L.; FERREIRA, M. A.; PIRES, E. A.; OLIVEIRA, F. S. de; SILVA, C. F. G. da; VIEIRA, R. B. Análise das patentes de tecnologias relacionadas aos probióticos, prebióticos e simbióticos no Brasil. Brazilian Journal Food Tecnology, v. 17, n. 3, p. 252-258, 2014. SEGURA, R.; JAVIERRE, C.; LIZARRAGA, A.; ROS, E. Other relevant components of nuts: phytosterols, folate and minerals. British Journal of Nutrition, v. 96, Suppl. 2, p. S36–S44, 2006. SILVA, R. F. da; ASCHERI, J. L. R.; SOUZA, J. M. L. de. Influence of Brazil nut processing on the quality of nuts. Ciência e Agrotecnologia, v. 34, n. 2, p. 445-450, 2010. SOCIEDADE BRASILEIRA DE VEGETARIANISMO – SVB. Vegetarianismo – O que é?. Outubro/2014. Disponível em: https://www.svb.org.br/vegetarianismo1. Acessado em 05 de novembro de 2017. SREENIVASULU, N.; WOBUS, U. Seed-Development Programs: A Systems Biology–Based Comparison Between Dicots and Monocots. Annual Review Plant Biology, v. 6, p. 189-217, 2013. STATISTA. Functional foods market in the U.S. – Statista dossier on the functional foods market in the U.S. 76 p., New York, USA: Statista Inc., 2018. STATISTIC BRAIN. Lactose Intolerance Statistics. 2017. Disponível em: https://www.statisticbrain.com/lactose-intolerance-statistics/. Acessado em: 05 de novembro de 2017. 47 SUTULA, J.; COULTHWAITE, L. A.; THOMAS, L. V.; VERRAN, J. The effect of a commercial probiotic drink containing Lactobacillus casei strain Shirota on oral health in healthy dentate people. Microbial Ecology in Health & Disease, v. 24, p. 1-12, 2013. SÝKORA, J.; VALECKOVA, K.; AMLEROVA, J.; SIALA, K.; DEDEK, P.; WATKINS, S.; VARVAROVSKA, J.; STOZICKY, F.; PAZDIORA, P.; SCHWARZ, J. Effects of a Specially Designed Fermented Milk Product Containing Probiotic Lactobacillus casei DN-114 001 and the Eradication of H. pylori in Children A Prospective Randomized Double-Blind Study. Journal of Clinical Gastroenterology, v. 39, n. 8, p.692-698, 2005. TACO – Tabela brasileira de composição de alimentos. 113 p., 4.ed. revisada e ampliada. Campinas, SP: NEPA – UNICAMP, 2006. TAN S. Y.; MATTES R. D. Appetitive, dietary and health effects of almonds consumed with meals or as snacks: a randomized, controlled trial. European Journal of Clinical Nutrition, v. 63, p. 1205–1214, 2013. TAN, S. Y.; DHILLON, J.; MATTES, R. D. A review of the effects of nuts on appetite, food intake, metabolism, and body weight. The American Journal of Clinical Nutrition, v. 100, p. 412–422, 2014. TURSE, A.; BRANDMARTE, G.; ELISEI, W.; PICCHIO, M.; FORTI, G.; PIANESE, G.; RODINO, S.; D'AMICO, T.; SACCA, N.; PORTINCASA, P.; CAPEZUTTO, E.; LATTANZIO, R.; SPADACCINI, A.; FIORELLA, S.; POLIMENI, N.; STOPPINO, V.; STOPPINO, G.; GIORGETTI, G. M.; AIELLO, F.; DANESE, S. Randomised clinical trial: mesalazine and/or pr obiotics inmaintaining r emission of symptomatic uncomplicated dive rticul ardisease – a double-blind, r andomised, placebo-contr olled study. Alimentary Pharmacology Therapeutics, v. 38, p. 741-751, 2013. UNITED STATES DEPARTMENT OF AGRICULTURE. AGRICULTURAL RESEARCH SERVICE – USDA. Nutrient Data Laboratory. 2016. Composition of foods: raw, processed, prepared. USDA National Nutrient Database for Standard Reference, Release 28. Disponível em https://ndb.nal.usda.gov/ndb/foods/show/3641. Acessado em 21 de setembro de 2017. VENKATACHALAM, M.; SATHE, S. K. Chemical Composition of Selected Edible Nut Seeds. Journal of Agricultural and Food Chemistry, v. 54, p. 4705–4714, 2006. WELNA, M.; KLIMPEL, M.; ZYRNICKI, W. Investigation of major and trace elements and their distributions between lipid and non-lipid fractions in Brazil nuts by inductively coupled plasma atomic optical spectrometry. Food Chemistry, v. 111, p. 1012-1015, 2008. WILSON, B. S. S.; BLASCHEK, K.; MEJIA, E. G. de. Allergenic Proteins in Soybean: Processing and Reduction of P34 Allergenicity. Nutrition Reviews, v. 63, n. 2, p. 47-58, 2005. YADAV, H.; JAIN, S.; SINHA, P. R. Antidiabetic effect of probiotic dahi containing Lactobacillus acidophilus and Lactobacillus casei in high fructose fed rats. Nutrition, v. 23, p. 62-68, 2007. YANG, J. Brazil nuts and associated health benefits: A review. LWT - Food Science and Technology, v. 42, n. 10, p.1573-1580, 2009. ZONA CEREALISTA. Seção Castanha do Pará. Disponível em: <https://www.zonacerealista.com.br/frutas-oleaginosas/castanhas-do-para.html>. Acessado em 30 de outubro de 2018. 48 ZUBAIDAH, E.; NURCHOLIS, M.; WULAN, S. N.; KUSUMA, A. Comparative Study on Synbiotic Effect of Fermented Rice Bran by Probiotic Lactic Acid Bacteria Lactobacillus casei and Newly Isolated Lactobacillus plantarum B2 in Wistar Rats. APCBEE Procedia, v. 2, p. 170–177, 2012. FUCHS, R. H. B.; BORSATO D.; BONA, E.; HAULY, M. C. de O. “Iogurte” de Soja Suplementado com Oligofrutose e Inulina. Ciência e Tecnologia de Alimentos, v. 25, n. 2, p. 175- 181, 2005. ROSSI, E. A.; FARIA, J. B.; BORSATO, D.; BALDOCHI, F. L. Otimização de um sistema para o “iogurte” de soja. Alimentos e Nutrição, v.2, p. 83-92, 1990. ROSSI, E. A.; VENDRAMININ, R. C.; CARLOS, I. Z.; PEI, Y. C.; VALDEZ, G. F. de. Development of a novel fermented soymilk product with potential probiotic properties. European Food Research and Technology, v. 209, p. 305-307, 1999. AOAC. (2005). Official methods of analysis of the AOAC International (18th ed., rev. 2010). Gaithersburg, MD, USA: AOAC International. APHA. (2001). Compendium of methods for the microbiological examination of foods. (4th ed.) Washington, DC, USA: APHA International. ARIHARA, K. (2014). Functional Foods. Encyclopedia of Meat Sciences, 2, 32-36. Bernat, N., Cháfer, M., Rodríguez-Garcia, J., Chiralt, A., & González-Martínez, C. Effect of high pressure homogenisation and heat treatment on physical properties and stability of almond and hazelnut milks. (2015). LWT - Food Science and Technology, 64, 488-496. Bianchi, F., Rossi, E. A., Gomes, R. G., & Sivieri, K. (2014). Potentially synbiotic fermented beverage with aqueous extracts of quinoa (Chenopodium quinoa Willd) and soy. Food Science and Technology International, 21, 403–415. Buriti, F. C. A., Freitas, S. C., Egito, A. S., & Santos, K. M. O. dos. (2014). Effects of tropical fruit pulps and partially hydrolysed galactomannan from Caesalpinia pulcherrima seeds on the dietary fibre content, probiotic viability, texture and sensory features of goat dairy beverages. LWT - Food Science and Technology, 59, 196-203. Casarotti, S. N., Carneiro, B. M., & Penna, A. L. B. (2014). Evaluation of the effect of supplementing fermented milk with quinoa flour on probiotic activity. Journal of Dairy Science, 97, 6027–6035. Chavan, M., Gat, Y., Harmalkar, M., & Waghmare, R. (2018). Development of non-dairy fermented probiotic drink based on germinated and ungerminated cereals and legume. LWT, 91, 339–344. Codina-Torrella, I., Guamis, B., Ferragut, V., & Trujillo, A. J. (2017) Potential application of ultra-high pressure homogenization in the physico-chemical stabilization of tiger nuts' milk beverage. Innovative Food Science & Emerging Technologies, 40, 42-51. Cruz, A. G., Cadena, R. S., Walter, E. H. M., Mortazavian, A. M., Granato, D., Faria, J. A. F., & Bolini, H. M. A. (2010). Sensory Analysis: Relevance for Prebiotic, Probiotic, and Synbiotic Product Development. Comprehensive Reviews in Food Science and Food Safety, 9, 358–373. Delgado, S., Guadamuro, L., Flórez, A. B., Vázquez, L., & Mayo, B. (2018). Fermentation of commercial soy beverages with lactobacilli and bifidobacteria strains featuring high β- glucosidase activity. Innovative Food Science and Emerging Technologies, xxx, xxx–xxx. Dubois, M., Gilles, K. A., Hamilton, J. K., Rebers, P. A. T., & Smith, F. (1956). Colorimetric Method for Determination of Sugars and Related Substances. Analytical Chemistry, 28, 350- 356. Espitia, P. J. P., Batista, R. A., Azeredo, H. M. C., & Otoni, C. G. (2016). Probiotics and their potential applications in active edible films and coatings. Food Research International, 90, 42– 52. Favarin, L., Laureano-Melo, R., & Luchese, R. H. (2015). Survival of free and microencapsulated Bifidobacterium: effect of honey addition. Journal of Microencapsulation, 32, 329-335. 67 Fioravante, M. B., Hiane, P. A., & Neto, J. A. B. (2017) Elaboration, sensorial acceptance and characterization of fermented flavored drink based on water-soluble extract of baru almond. Ciência Rural, 47, p. 1-6. Gibson, G. R., Hutkins, R., Sanders, M. E., Prescott, S. L., Reimer, R. A., Salminen, S. J., Scott, K., Stanton, C., Swanson, K. S., Cani, P. D., Verbeke, K., & Reid, G. (2017). The International Scientific Association for Probiotics and Prebiotics (ISAPP) consensus statement on the definition and scope of prebiotics. Nature Reviews – Gastroenterology & Hepatology, 14, 491- 502. Guillemard, E., Tanguy, J., Flavigny, A., Motte, S., & Schrezenmeir, J. (2013). Effects of Consumption of a Fermented Dairy Product Containing the Probiotic Lactobacillus casei DN- 114 001 on Common Respiratory and Gastrointestinal Infections in Shift Workers in a Randomized Controlled Trial. Journal of American College of Nutrition, 29, 455-468. Hill, C., Guarner, F., Reid, G., Gibson, G. R., Merenstein, D. J., Pot, B., Morelli, L., Canani, R. B., Flint, H. J., Salminen, S., Calder, P. C., & Sanders, M. E. (2014). The International Scientific Association for Probiotics and Prebiotics consensus statement on the scope and appropriate use of the term probiotic. Nature Reviews – Gastroenterology & Hepatology, 11, 506-514. Içier, F., Gündüz, G. T., Yilmaz, B., & Memeli, Z. Changes on some quality characteristics of fermented soy milk beverage with added apple juice. (2015). LWT - Food Science and Technology, 63, 57-64. Kandylis, P., Pissaridi, K., Bekatorou, A., Kanellaki, M., & Koutinas, A. A. (2016). Dairy and non-dairy probiotic beverages. Current Opinion in Food Science, 7, 58-63. Kaprasob, R., Kerdchoechuen, O., Laohakunjit, N., Sarkar, D., & Shetty, K. (2017). Fermentation-based biotransformation of bioactive phenolics and volatile compounds from cashew apple juice by select lactic acid bacteria. Process Biochemistry, 59, 141–149. Kherzi, S., Dehghan, P., Mahmoudi, R., & Jafarlou, M. (2016). Fig Juice Fermented with Lactic Acid Bacteria as a Nutraceutical Product. Pharmaceutical Sciences, 22, 260-266. Kolaček, S., Hojsak, I., Canani, R. B., Guarino, A., Indrio, F., Orel, R., Pot, B., Shamir, R., Szajewska, H., Vandenplas, Y., Van Goudoever, J., & Weizman, Z. (2017). Commercial Probiotic Products: A Call for Improved Quality Control. A Position Paper by the ESPGHAN Working Group for Probiotics and Prebiotics. Journal of Pediatric Gastroenterology and Nutrition, 65, 117–124. Küster-Boluda, I., & Vidal-Capilla, I. (2017). Consumer attitudes in the election of functional foods. Spanish Journal of Marketing – ESIC, 21, 65-79. Kwon, S., Lee, P. C., Lee, E. G., Chang, Y. K., & Chang, N. (2000). Production of lactic acid by Lactobacillus rhamnosus with vitamin-supplemented soybean hydrolysate. Enzyme and Microbial Technology, 26, 209–215 Reid, G. (2016). Probiotics: definition, scope and mechanisms of action. Best Practice & Research Clinical Gastroenterology, 30, 17-25. Sharma, P., Trivedi, N., & Gat, Y. (2017). Development of functional fermented whey-oat based product using probiotic bacteria. 3 Biotech, 7, 272. Statista. (2018) Functional foods market in the U.S. – Statista dossier on the functional foods market in the U.S. New York, USA: Statista Inc. 68 Sutula, J., Coulthwaite, L. A., Thomas, L. V., & Verran, J. (2013). The effect of a commercial probiotic drink containing Lactobacillus casei strain Shirota on oral health in healthy dentate people. Microbial Ecology in Health & Disease, 24, 1-12. Sýkora, J., Valeckova, K., Amlerova, J., Siala, K., Dedek, P., Watkins, S., Varvarovska, J., Stozicky, F., Pazdiora, P., & Schwarz, J. (2005). Effects of a Specially Designed Fermented Milk Product Containing Probiotic Lactobacillus casei DN-114 001 and the Eradication of H. pylori in Children A Prospective Randomized Double-Blind Study. Journal of Clinical Gastroenterology, 39, 692-698. Tajchakavit, S., Boye, J., Bélanger, D., & Couture, R. (2001). Kinetics of haze formation and factors influencing the development of haze in clarified apple juice. Food Research International, 34, 431–440. Virk, A, Mandrekar, J., Berbari, E. F., Boyce, T. G., Fischer, P. R., Kasten, M. J., Orenstein, R., Rosenblatt, J. E., Sampathkumar, P., Sia, I., Springer, D., & Witzig, T. E. (2013). A Randomized, Double Blind, Placebo-Controlled Trial of an Oral Synbiotic (AKSB) for Prevention of Travelers’ Diarrhea. Journal of Travel Medicine, 20, 88-94. Walker, G. M. (2004). Metals in Yeast Fermentation Processes. Advances in Applied Microbiology, 197–229. Yadav, H., Jain, S., & Sinha, P. R. (2007). Antidiabetic effect of probiotic dahi containing Lactobacillus acidophilus and Lactobacillus casei in high fructose fed rats. Nutrition, 23, 62- 68. Yang, J. (2009) Brazil nuts and associated health benefits: A review. LWT - Food Science and Technology, 42, 1573-1580. Zhao, D., & Shah, N. P. Antiradical and tea polyphenol-stabilizing ability of functional fermented soymilk–tea beverage. (2014). Food Chemistry, 158, 262-269por
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