• Title/Summary/Keyword: wheat germ lipid

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Effects of Seven Dietary Oils on Blood Serum Lipid Patterns in Rats

  • Jin, Young-Hee
    • Nutritional Sciences
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    • v.6 no.2
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    • pp.78-84
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    • 2003
  • The objective of this study was to examine the effects of seven dietary oils on the serum lipid patterns of rats. Seventy weanling Wistar Kyoto rats were divided into seven groups of ten rats each. Walnut oil (rich in PUFA), wheat germ oil (rich in PUFA), corn oil (rich in PUFA), canola oil (rich in monounsaturated fatty acids), fish oil (rich in PUFA), primrose oil (rich in PUFA), and palm oil (rich in saturated fatty acids) were employed for 21 days. Serum total cholesterol concentrations for rats fed palm oil, walnut oil, and wheat germ oil were significantly higher than were concentrations for rats receiving corn oil. fish oil, and primrose oil. The mean serum LDL cholesterol values for rats fed fish oil, primrose oil, and corn oil were significantly lower than those for rats fed walnut oil, wheat germ oil, canola oil, and palm oil. HDL cholesterol concentrations were the highest when wheat germ oil was fed and the lowest when fish oil was fed. The feeding of wheat germ oil and palm oil to rats resulted in considerably higher serum triglyceride levels than did all other treatments. The feeding of wheat germ oil to rats resulted in considerably higher serum phospholipid levels. Serum phospholipid concentrations were significantly lower in rats fed the canola oil, fish oil, ,and primrose oil diets, when compared to concentrations achieved with the feeding of walnut oil, wheat germ oil, corn oil, and palm oil. Palm oil, which has a high ratio of saturated to polyunsaturated fatty acids, resulted in the highest serum total cholesterol and highest LDL cholesterol levels, while fish oil, primrose oil, and corn oil produced the lowest total cholesterol and LDL cholesterol. Wheat germ oil produced the highest values for HDL cholesterol, triglycerides, and phospholipids. In general, feeding oils rich in polyunsaturated fatty acids produced more favorable responses than feeding oils containing large amounts of monounsaturated or saturated fatty acids.

Anti-Oxidant and Anti-Adipogenic Effects of Ethanol Extracts from Wheat Germ and Wheat Germ Fermented with Aspergillus oryzae

  • Park, Euna;Kim, Hae Ok;Kim, Gyo-Nam;Song, Ji-Hye
    • Preventive Nutrition and Food Science
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    • v.20 no.1
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    • pp.29-37
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    • 2015
  • Most of the wheat germ in cereal grains is removed during the milling process. Various physiological effects have been reported for bioactive substances in wheat germ such as phenolic acids and flavonoids. In this study, the antioxidant and anti-adipogenic effects of ethanol extracts from wheat germ (WGE) and wheat germ fermented with Aspergillus oryzae (F-WGE) were investigated in HepG2 and 3T3-L1 cells. The anti-oxidant activity of F-WGE was demonstrated by a dose-dependent increase in the enhanced scavenging capacity of hydroxyl radicals and $Cu^{2+}$-chelating activity compared to WGE. WGE and F-WGE treatment at doses between 10 and $400{\mu}g/mL$ did not affect the viability of HepG2 and 3T3-L1 cells. Intracellular ROS levels from $Cu^{2+}$-induced oxidative stress were significantly decreased by F-WGE treatment in HepG2 cells compared to WGE. Lipid accumulation was increased in 3T3-L1 adipocytes by $100{\mu}M$ $Fe^{2+}$ treatment, but the accumulation was strongly inhibited by $100{\mu}g/mL$ of WGE and F-WGE treatment. These results suggest that changes in bioactive substances during the fermentation of wheat germ can potentiate scavenging activities against transition metal-induced oxidative stress and lipid accumulation in 3T3-L1 adipocytes. Therefore, we propose that F-WGE is a novel food materials and provided scientific evidences for its efficacy in the development of functional foods.

Utilization of Wheat Germ Meal As a Protein Source of Formulated Diet for Juvenile Abalone (Haliotis discus hannai) (참전복 치패용 배합사료의 단백질원로서의 밀배아박 첨가효소)

  • 이상민;이종관;이종하;임영수
    • Journal of Aquaculture
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    • v.12 no.4
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    • pp.317-322
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    • 1999
  • A growth trial was conducted to investigate the utilization of wheat germ meal as a protein source of formulated diet for juvenile abalone (Haliotis discus hannai). Four replicate groups of the abalone average weighing 150mg were fed one of four isonitrogenous (33%) and isolipidic (6%) diets containing 0%, 10%, 20%, or 30% wheat germ meal for 18 weeks. In addition, these formulated diets were compared with commercial diet. Survival rate, weight gain, soft body weight , and shell growth of abalone fed diets containing 0%, 10%, 20%, or 30% wheat germ meal were not different (P>0.05) from those of abalonn fed the control diet and commercial diet. There were no significant differences (P>0.05) in soft body composition of moisture, protein and lipid. It si concluded that wheat germ meal were be used as a partial protein source of formulated diet for juvenile abalone.

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Oxidative Stability of Wheat germ Lipid and Changes in the Concentration of Carotenoid and Tocopherol during Oxidation (밀배아 지방질의 산화 안정성과 카로티노이드 및 토코페롤의 변화)

  • Kim, Hae-Gyoung;Cheigh, Hong-Sik
    • Korean Journal of Food Science and Technology
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    • v.27 no.4
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    • pp.478-482
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    • 1995
  • The changes of the lipid composition and of the contents of carotenoid and tocopherol in wheat germ were studied during the storage at $30^{\circ}C$. The contents of triglyceride and free fatty acid were changed from 66% and 7% to 49% and 24% respectively after 30 days. The predominant free fatty acids were lauric acid (29%), palmitic acid (21%) and linoleic acid (20%), however, linoleic acid increased to 30%, lauric acid reduced to 21% after storage of 30 days. The carotenoids in the wheat germ were ${\beta}-carotene,\;{\alpha}-carotene$, lutein and taraxanthin, and the contents of these were 306, 59, 383 and 356 ng/g wheat germ, respectively. Their contents, however, were reduced to 36, 4, 203 and 149 ng respectively after 20 storage days. Especially, degradation rate of ${\beta}-carotene$ was 22.5 ng/day. The tocopherol isomers in wheat germ were ${\alpha}-,\;{\beta}-\;and\;{\gamma}-tocopherol$, and they reduced from $55,\;48\;and\;38\;{\mu}g/g$ wheat germ to 35, 32 and $32\;{\mu}g$ respectively after 20 storage days. The ${\alpha}-tocopherol$ was degraded by $1.26\;{\mu}g/day$ at this storage condition.

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Classification of 31 Korean Wheat (Triticum aestivum L.) Cultivars Based on the Chemical Compositions

  • Choi, Induck;Kang, Chon-Sik;Lee, Choon-Kee;Kim, Sun-Lim
    • Preventive Nutrition and Food Science
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    • v.21 no.4
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    • pp.393-397
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    • 2016
  • Whole grain wheat flour (WGWF) is the entire grain (bran, endosperm, and germ) milled to make flour. The WGWF of 31 Korean wheat (Triticum aestivum L.) cultivars were analyzed for the chemical compositions, and classified into groups by hierarchical cluster analysis (HCL). The average composition values showed a substantial variation among wheat varieties due to different wheat varieties. Wheat cv. Shinmichal1 (waxy wheat) had the highest ash, lipid, and total dietary fiber contents of 1.76, 3.14, and 15.49 g/100 g, respectively. Using HCL efficiently classified wheat cultivars into 7 clusters. Namhae, Sukang, Gobun, and Joeun contained higher protein values (12.88%) and dietary fiber (13.74 %). Regarding multi-trait crop breeding, the variation in chemical compositions found between the clusters might be attributed to wheat genotypes, which was an important factor in accumulating those chemicals in wheat grains. Thus, once wheat cultivars with agronomic characteristics were identified, those properties might be included in the breeding process to develop a new variety of wheat with the trait.

The Chemical Components of Korean Rice Germ (국산 쌀배아의 이화학적 성분)

  • Choi, One-Kyun;Yun, Seung-Kil;Hwang, Seong-Yun
    • Journal of the Korean Society of Food Culture
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    • v.15 no.4
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    • pp.253-258
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    • 2000
  • The chemical components of Korean rice germ were analyzed. Proximate compositions of rice germ were as follows; crude lipid 21.18%, crude protein 16.50%, crude fiber 2.95%, crude ash 6.23% and carbohydrate 44.45%. Free sugar compositions were as follows; fructose 50.20mg/100g, glucose 68.80mg/100g, maltose 569.00mg/100g. Major amino acids of rice germ are glutamic acid (1920.9mg/100g), arginine (1503.7mg/100g), aspartic acid(1208.7mg/100g) and leucine (1039.7mg/100g). Fatty acid compositions of rice germ lipid extracted by chloroform-methanol (2:1) were palmitic (22.2%), linoleic acid (38.9%), oleic acid (24.7%) and palmitic acid (22.2%). Mineral elements were phosphorus (1766.22mg/100g) and potassium (1217.80mg/100g). Vitamins were composed of Vit E (11.96mg/100g) Vit B1 (5.69mg/100g) and niacin (2.96mg/100g). 16 flavonoids and 9 phenolic acids in rice germ were not detected. Above the chemical components of rice germ were compared with that of rice endosperm and wheat germ.

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