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Registro Completo |
Biblioteca(s): |
Embrapa Agroindústria de Alimentos. |
Data corrente: |
18/08/2022 |
Data da última atualização: |
13/10/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Autoria: |
OLIVEIRA, M. E. A. S.; COIMBRA, P. P. S.; GALDEANO, M. C.; CARVALHO, C. W. P. de; TAKEITI, C. Y. |
Afiliação: |
MARIA EUGENIA ARAUJO SILVA OLIVEIRA, UNIRIO; PEDRO PAULO SALDANHA COIMBRA, UNIRIO; MELICIA CINTIA GALDEANO, CTAA; CARLOS WANDERLEI PILER DE CARVALHO, CTAA; CRISTINA YOSHIE TAKEITI, CTAA. |
Título: |
How does germinated rice impact starch structure, products and nutritional evidences? A review. |
Ano de publicação: |
2022 |
Fonte/Imprenta: |
Trends in Food Science & Technology, v. 122, p. 13–23, 2022. |
Idioma: |
Inglês |
Conteúdo: |
Background: In recent years, germination is used as a tool that improves nutritional quality of cereals by increasing digestibility and concentration of bioactive compounds, and thereby, gaining visibility concerning to reducing of risk of noncommunicable diseases (NCDs). Germination promotes the enzymatic modification of carbohydrates especially relating to starch-polyphenol interactions that could be used in glycaemic control. Scope and approach: The Web of Science database was searched for studies published between 1992 and 2021 in order to investigate the relationship among germination, starch and health benefits. The aim of this review is to reinforce and summarize the impact of germination on starch modifications, technological approaches, niche products and evidence of nutritional benefits. Key findings and conclusions: Germination is a process that modifies starch digestibility and improves bioactive compounds especially phenolic acids, may delivering important nutritional and technological characteristics (starch-phenolic interactions) that impact on physiological performance (delayed digestibility and glycaemia control). In addition, germinated rice shows GABAergic effects and anti-inflammatory activity and it can mediate oxidative stress-related pathogenesis and carcinogenesis. In light of this evidence, the role of food technology is to develop processes in order to obtain products that deliver low glycaemic index (GI) as well as high phenolic content with good sensory attributes. MenosBackground: In recent years, germination is used as a tool that improves nutritional quality of cereals by increasing digestibility and concentration of bioactive compounds, and thereby, gaining visibility concerning to reducing of risk of noncommunicable diseases (NCDs). Germination promotes the enzymatic modification of carbohydrates especially relating to starch-polyphenol interactions that could be used in glycaemic control. Scope and approach: The Web of Science database was searched for studies published between 1992 and 2021 in order to investigate the relationship among germination, starch and health benefits. The aim of this review is to reinforce and summarize the impact of germination on starch modifications, technological approaches, niche products and evidence of nutritional benefits. Key findings and conclusions: Germination is a process that modifies starch digestibility and improves bioactive compounds especially phenolic acids, may delivering important nutritional and technological characteristics (starch-phenolic interactions) that impact on physiological performance (delayed digestibility and glycaemia control). In addition, germinated rice shows GABAergic effects and anti-inflammatory activity and it can mediate oxidative stress-related pathogenesis and carcinogenesis. In light of this evidence, the role of food technology is to develop processes in order to obtain products that deliver low glycaemic index (GI) as well as high phenolic content with good s... Mostrar Tudo |
Thesaurus Nal: |
Food technology. |
Categoria do assunto: |
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Marc: |
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Registro original: |
Embrapa Agroindústria de Alimentos (CTAA) |
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Registros recuperados : 4 | |
1. |  | SANTOS, R. de C.; FIGUEIRA, A. R.; ALMEIDA, A. M. R.; SANTOS, J. B.; MENEZES, C. B.; SILVA, O. A. Identificação de marcador microssatélite (SSR) para gene de resist~encia ao Soybean yellow shoot virus em soja. Fitopatologia Brasileira, Brasília, v. 29, p. S248, ago. 2004. Suplemento. Resumo apresentado no XXXVII Congresso Brasileiro de Fitopatologia, Gramado, RS, agosto, 2004.Biblioteca(s): Embrapa Soja. |
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2. |  | NAKASONE, A. K.; BEZERRA, V.; SANTOS, R. de C.; CAMPOS, K.; SILVA, C. T. B. da; CUNHA, E. F. M. Fungos associados à podridão radicular da mandioca nos municípios de Bragança, Castanhal e Igarapé-Açu, Pará. In: CONGRESSO BRASILEIRO DE MANDIOCA, 17.; CONGRESSO LATINO-AMERICANO E CARIBENHO DE MANDIOCA, 2., 2018, Belém, PA. Anais... Cruz das Almas: Sociedade Brasileira de Mandioca: Secretaria de Desenvolvimento Agropecuário e da Pesca, 2021. p. 259-261.Tipo: Artigo em Anais de Congresso |
Biblioteca(s): Embrapa Amazônia Oriental. |
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3. |  | AMORIM, R. S.; ARRUDA, C. C. B.; RIBEIRO, D. O.; MENEZES, M. P. M. de; MEHLIG, U.; MAUES, M. M.; VENTURIERI, G. C.; SANTOS, R. de C. O. dos; SILVA, M. B. Aspectos da fenologia floral, sistema de cruzamento e polinização em Avicennia germinans (L.) Stearn (Acanthaceae). In: CONGRESSO NACIONAL DE BOTÂNICA, 61., 2010, Manaus. Diversidade vegetal brasileira: conhecimento, conservação e uso. Manaus: SBB, 2010. 1 CD-ROM.Tipo: Resumo em Anais de Congresso |
Biblioteca(s): Embrapa Amazônia Oriental. |
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4. |  | SANTOS, R. de C. dos; BONAMINA, F.; PÉRICO, L. L.; RODRIGUES, V. P.; ZANATTA, A. C.; RODRIGUES, C. M.; SANNOMIYA, M.; RAMOS. M. A. dos S.; BONIFÁCIO, B. V.; BAUAB, T. M.; TAMASHIRO, J.; ROCHA, L. R. M. da; VILEGAS, W.; HIRUMA-LIMA, C. A. Byrsonima intermedia A. Juss partitions promote gastroprotection against peptic ulcers and improve healing through antioxidant and antiinflammatory activities. Biomedicine & Pharmacotherapy, v. 111, p. 1112-1123, 2019.Tipo: Artigo em Periódico Indexado | Circulação/Nível: A - 2 |
Biblioteca(s): Embrapa Agroenergia. |
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