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1.
J Oleo Sci ; 70(4): 503-507, 2021 Apr 02.
Artigo em Inglês | MEDLINE | ID: mdl-33692239

RESUMO

In this study, we investigated the compositions of vitamin E tocochromanol [tocopherol (Toc) and tocotrienol (T3)] in crude and refined rice bran oil (RBO) produced in Japan and other countries, including Brazil, Thailand, and Vietnam, based on high-performance liquid chromatography analysis. All RBO analyzed contained α-, ß- and γ-Toc and α-, γ- and δ-T3. Japanese crude RBO, although not refined RBO, also contained ß-T3. Furthermore, total Toc contents in both Japanese crude and refined oils were found to be higher than those in the crude and refined RBO from other countries. Total T3 contents in Japanese crude RBO were similar to those in the crude RBO from Brazil and Vietnam. The α-Toc and α-T3 contents in Japanese crude and refined RBO were considerably higher than those in the crude and refined RBO produced in other countries, whereas in contrast, γ-Toc and γ-T3 contents in Japanese crude and refined RBO were lower. Consequently, the ratios of total α-Toc and α-T3 contents to total γ-Toc and γ-T3 contents in Japanese crude and refined RBO (1.75 and 1.91, respectively) were notably higher than those in the crude and refined RBO produced in other countries. Similarly, the ratios of total Toc to total T3 in Japanese crude and refined RBO were higher than those in the crude and refined RBO produced in other countries. These results accordingly indicate that the ratio of total α-Toc and α-T3 contents to γ-Toc and γ-T3 contents could be used as an effective index to discriminate between the RBO produced in Japan and that produced in other countries.


Assuntos
Análise de Alimentos/métodos , Óleo de Farelo de Arroz/química , Tocoferóis/análise , Tocotrienóis/análise , Brasil , Cromatografia Líquida de Alta Pressão , Japão , Óleo de Farelo de Arroz/classificação , Tailândia , Vietnã
2.
J Sci Food Agric ; 101(13): 5715-5720, 2021 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-33682139

RESUMO

BACKGROUND: Rice bran oil is unique among edible oils owing to its rich source of commercially and nutritionally important phytochemicals, such as oryzanol. γ-Oryzanol performs an important role in the stability of rice bran oil. The crude rice bran oil obtained by solvent extraction is subjected to either chemical or physical refining to meet the specifications of edible-grade vegetable oil. These refining processes can cause the compounds present in rice bran oil to degrade. The aim of this study was to evaluate the stability of γ-oryzanol present in chemically and physically refined rice bran oils, when submitted to temperatures of 100, 140, and 180 °C for a period of 1368 h. RESULTS: The chemically refined rice bran oil presented a lower γ-oryzanol content than the physically refined rice bran oil at all heating temperatures. The losses of γ-oryzanol at 100 °C, 140 °C, and 180 °C at the end of the heating periods for the chemically refined oil were 53.47%, 58.48%, and 97.05% respectively, and for the physically refined oil the losses were 38.11%, 53.58%, and 91.11% respectively. CONCLUSION: Based on the results of the time to reduce the oryzanol concentration by 50% and 100%, it is observed that the oil of rice meal refined physically presents greater stability, in the different temperatures studied and over time, than the oil of rice meal refined chemically. Thus, for situations where the oil needs to be subjected to prolonged heating, a temperature of 100 °C is indicated. In this condition, the physically refined oil is better for maintaining a higher concentration of γ-oryzanol. © 2021 Society of Chemical Industry.


Assuntos
Fenilpropionatos/química , Extratos Vegetais/química , Óleo de Farelo de Arroz/química , Estabilidade de Medicamentos , Temperatura Alta , Cinética , Oryza/química
3.
In. Pagano, Teresa; Fernández, Estela. Lípidos: aspectos tecnológicos y abordaje nutricional en la salud y en la enfermedad. [Montevideo], UdelaR, 2010. p.69-78, graf.
Monografia em Espanhol | LILACS, UY-BNMED, BNUY | ID: biblio-1402504
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