Analysis of Phenolic Compounds in White Rice, Brown Rice, and Germinated Brown Rice

Анализ фенольных соединений в белом рисе, коричневом рисе и проращенном коричневом рисе
Kozo Nakamura, Su Tian, Hiroshi Kayahara
2004-07-01

6'-O-(E)-feruloylsucrose6'-O-(E)-sinapoylsucroseHPLC analysisgerminated brown ricesoluble and insoluble phenolic compounds
Two hydroxycinnamate sucrose esters, 6'-O-(E)-feruloylsucrose and 6'-O-(E)-sinapoylsucrose, were isolated from methanol extracts of rice bran. Soluble and insoluble phenolic compounds as well as 6'-O-(E)-feruloylsucrose and 6'-O-(E)-sinapoylsucrose from white rice, brown rice, and germinated brown rice were analyzed using HPLC. The results demonstrated that the content of insoluble phenolic compounds was significantly higher than that of soluble phenolics in rice, whereas almost all compounds identified in germinated brown rice and brown rice were more abundant than those in white rice. 6'-O-(E)-Feruloylsucrose (1.09 mg/100 g of flour) and 6'-O-(E)-sinapoylsucrose (0.41 mg/100 g of flour) were found to be the major soluble phenolic compounds in brown rice. During germination, an approximately 70% decrease was observed in the content of the two hydroxycinnamate sucrose esters, whereas free phenolic acid content increased significantly; the ferulic acid content of brown rice (0.32 mg/100 g of flour) increased to 0.48 mg/100 g of flour and became the most abundant phenolic compound in germinated brown rice. The content of sinapinic acid increased to 0.21 mg/100 g of flour, which is nearly 10 times as much as that in brown rice (0.02 mg/100 g of flour). In addition, the total content of insoluble phenolic compounds increased from 18.47 mg/100 g of flour in brown rice to 24.78 mg/100 g of flour in germinated brown rice. These data suggest that appropriate germination of brown rice may be a method to improve health-related benefits.
1
Brown rice contains higher levels of identified phenolics than white rice; 6'-O-(E)-feruloylsucrose (1.09 mg/100 g) and 6'-O-(E)-sinapoylsucrose (0.41 mg/100 g) are major soluble phenolics in brown rice.
2
Germination causes ~70% decrease in the two hydroxycinnamate sucrose esters and a significant increase in free phenolic acids, with ferulic acid rising from 0.32 to 0.48 mg/100 g and becoming the most abundant in germinated brown rice.
3
Insoluble phenolic compound content in rice is significantly higher than soluble phenolics.
4
Sinapinic acid increases to 0.21 mg/100 g in germinated brown rice (nearly 10-fold vs brown rice), and total insoluble phenolics rise from 18.47 to 24.78 mg/100 g after germination, suggesting germination may improve health-related benefits.
5
Two hydroxycinnamate sucrose esters, 6'-O-(E)-feruloylsucrose and 6'-O-(E)-sinapoylsucrose, were isolated from rice bran methanol extracts.

Phenolic compounds in white rice, brown rice, and germinated brown rice

Composition and quantitative changes of soluble and insoluble phenolic compounds (including 6'-O-(E)-feruloylsucrose, 6'-O-(E)-sinapoylsucrose, ferulic acid, and sinapinic acid) across white, brown, and germinated brown rice and the effect of germination on their levels

Publication Details
Publication Date
2004-07-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Kozo Nakamura
Su Tian
Hiroshi Kayahara
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%