• Title/Summary/Keyword: diglyceride

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Changes in the Lipid Components of Edible Oil (Sunflower Seed Oil) under Storage Conditions (식용유(食用油)(해바라기)의 저장후건(貯藏候件)에 따른 지질성분(脂質成分)의 변화(變化))

  • Hwang, Joo-Ho;Yoon, Hyung-Sik
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.10 no.1
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    • pp.17-25
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    • 1981
  • The purpose of this study was to determine effects of thermal oxidation according to heating time and temperature, using sunflower oil from seed grown in Korea. To investigate these effects, the lipid components, fatty acid compositions, and chemical characteristics of crude oil from sunflower seed were determined. The content of nonpolar and polar in total lipids was 94.1% and 5.9%, respectively. The fatty acid compositions in the total lipids showed 6.21% palmitic, 4.50% stearic, 59.84% oleci and 29.48% linoleic acid. The concent of linoleic acid decreased during heating. However, the concent of oleic, palmitic and stearic acid increased during heating. The components of neutral lipid were found 6 fractions, including triglyceride, diglyceride and free fatty acid. The content of triglyceride decreased but diglyceride and monoglyceride increased during heating. The content of free fatty acid increased during the continuous heating period for 32 hours at $100^{\circ}C$, whereas decreased in 16 hours at $180^{\circ}C$. Iodine value decreased during heating, and peroxide value increased during the continuous heating period for 32 hours at $100^{\circ}C$, whereas decreased in 16 hours at $180^{\circ}C$.

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Features of Waste Water form By-Product Silk Treatment and Composition of Extracted Lipid (부잠폐수의 성상과 유출 유지의 성분)

  • 남영락;설대석
    • Journal of Sericultural and Entomological Science
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    • v.33 no.2
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    • pp.100-102
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    • 1991
  • The features of waste water from by-product silk treatment of silk reeling process were investigated and the lipid extracted from waste water was analysed. The COD of waste water from by-product silk treatment was at the level of 605 mgO/$\ell$ Total Dissolved Solid Particles 2,335mg/$\ell$and Total Suspended Solid Particles 2,123mg/$\ell$. The lipid extracted from the waste water from by-product silk treatment was composed of triglyceride 76.8%, free fatty acids 12.5%, diglyceride 5.7% and free sterol 5.0%. In fatty acid composition of lipid, the content of loeic acid, linoleic and linolenic acid was 64.93%, whereas that of palmitic acid was 29.39% and stearic acid 4.93%.

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Studies on the Lipid Components of Fresh Ginseng, Red Ginseng and White Ginseng (수삼(水蔘), 홍삼(紅蔘) 및 백삼(白蔘)의 지방질성분(脂肪質成分)에 관한 연구(硏究))

  • Choi, Kang-Ju;Kim, Dong-Hoon
    • Korean Journal of Pharmacognosy
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    • v.16 no.3
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    • pp.141-150
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    • 1985
  • Lipid and fatty acid compositions of free lipids and bound lipids from fresh ginseng, red ginseng and white ginseng were studied by means of silicic acid column chromatography, thin-layer chromatography and gas-liquid chromatography. Free lipid and bound lipid contents in those three samples were 1.21 to 1.45% and 0.32 to 0.45%. Neutral lipid fractions in free lipids from the samples were 76.6 to 79.7%, while glycolipid and phospholipid fractions were 11.6 to 14.7% and 8.5 to 8.7%, respectively. The major lipids were triglycerides, sterol esters and hydrocarbons, diglycerides and free sterols in neutral lipids, sterol glucoside, monogalactosyl diglyceride, esterified steryl glycoside, digalactosyl diglyceride in glycolipids and phosphatidyl ethanolamine, phosphatidyl glycerol, phosphatidyl choline and phosphatidyl inositol in phospholipids. Fourteen kinds of even numbered and four kinds of odd numbered fatty acids were identified in the four lipid fractions (TL, NL, GL and PL) by GLC, and the main fatty acids were linoleic acid, palmitic acid, oleic acid and linolenic acid.

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Fish Oil Variation during Enzymatic Ethanolysis (어유의 효소적 에탄올화 반응 특성)

  • Shin, Sang-Kyu;Yoo, Hong-Suk;Pack, Hyun-Duk;Chun, Byung-Soo
    • Journal of Marine Bioscience and Biotechnology
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    • v.1 no.4
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    • pp.311-316
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    • 2006
  • Enzymatic ethanolysis of fish oil with immobilized lipase was investigated for reducing the free fatty acid contents and enhancing the function of fish oil. Ethanolysis reactions were carried out in erlenmeyer flask (25ml) containing a mixture of squid viscera oil and 99.9% ethanol using 1% (based on w/w squid viscera oil) immobilized lipase. The reaction mixtures were incubated at $50^{\circ}C$ and shaken at 100rpm. Ethanol was added into the mixture by stepwise addition method of Shinmada[9]. Measurement of free fatty acid molar amounts was studied by Acid Value. Tendency of oil variation during transesterification was studied by TLC method. Enzymatic ethanolysis composed diglyceride, monoglyceride and fatty acid ethyl ester with reducing free fatty acid contents. Also, selective ethanolysis by Lipozyme TL-IM and Lipozyme RM-IM mostly did not react at the sn-2 position of squid viscera oil. Lipozyme RM-IM was more suitable enzyme to reduce the free fatty acid contents by ethanolysis than Lipozyme TL-IM. Squid viscera oil was transformed into suitable properties (5 in Acid Value) for functional fish oil production.

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Changes in Chemical Component and Lipid in Tomato Fruits Under the Treatment of Sub-Atmospheric Pressure (감압처리(減壓處理)에 따른 토마토과실(果實)의 주요성분(主要成分) 및 함유지질(含有脂質)의 변화(變化))

  • Kim, Sung-Dal
    • Applied Biological Chemistry
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    • v.23 no.1
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    • pp.31-44
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    • 1980
  • Climacteric phenomon in fruits was delayed ten days on the sub-atmospheric treatment than the normal atmospheric one. Average lipid content in tomatoes sampled was composed of neutral lipid (49%), phospholipid(31%) and glycolipid (13%). Seven constituents each from neutral and phospholipid were seperated through thin-lyaer chromatography. Changes on lipid content during treatments were associated with the climacteric pattern and the advance of maturity; At the climacteric on-set, the fruit color was light pink, and the content of neutral lipid was reduced to minimum. After this stage, this content was reversely increased. The maturity was related with diglyceride and sterol ester in neutral lipid, and phosphatidyl choline and phosphatidyl ethanolamine in phospholipid. The changes of two constituents each on both neutral and phospholipid were reversed each other. It was concluded that changes of lipid content in tomato fruits were closely associated with the advance of fruit maturity and climacteric pattern.

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Changes' of glycolipids and phospholipids during maturation of perilla seed(Perilla frutescens) (들깨종자의 성숙과정중 당지방질과 인지방질의 변화)

  • Min, Young-Kyoo;Kim, Ze-Uook
    • Applied Biological Chemistry
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    • v.35 no.3
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    • pp.146-151
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    • 1992
  • To investigate changes in fatty acid and lipid composition of maturing perilla (Perilla frutescens var. japonica Hara) seeds, Suweon 10 and Jeju varieties were subjected to lipid analysis. The results were summarized as follows; As perilla seeds matured, content of glycolipid and phospholipid decreased. Glycolipid and phospholipid of mature seed were 25.4% and 4.5% of total lipids in Suweon 10 and those from Jeju were 44.5%, 4.0%, respectively. Cerebroside, galatosyl diglyceride and monogalatosyl diglyceride were major constitutents of ether-extractable glycolipids in developing perilla seeds. Monogalatosyl diglyceride, the richest constitutent in the early stage of seed development, decreased rapidly as seeds matured. In ether-extractable glycolipid of mature Suweon 10 seeds, content of linolenic acid was 51.1% which was higher than 19.4% of oleic acid of total acids. However, in Jeju variety, content of oleic acid was 31% which was higher than 18.6% of linolenic acid. Phosphatidyl choline, phosphatidyl ethanolamine, phosphatidyl glycerol and lysophosphatidyl inositol were major constituents of phospholipids. Content of phosphatidyl glycerol in developing seeds showed irregular changes in Jeju but in Suweon 10, it decreased after rapid increase in the early stage of seed development. Olieic acid ranges $28.7{\sim}35.2%$, linolenic acid $8.2{\sim}11.2%$, linoleic acid $16.4{\sim}32.5%$ and Palmitic acid $22.7{\sim}29.9%$ of total fatty acids in methanol-ertractible phospholipid of mature perilla seeds.

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The Micronucleus Test of the Diglyceride Preparation with Conjugated Linoleic Acid by Using Mice (마우스를 이용한 공액리놀레산 함유 디글리세라이드 조성물에 대한 소핵시험)

  • Hong, Soon-Gi;Chung, Shin-Gyo;Hyun, Sun-Hee
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.37 no.7
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    • pp.853-857
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    • 2008
  • To assess the clastogenic effects of the diglyceride preparation containing conjugated linoleic acid (DG+CLA) in vivo micronucleus test was performed using ICR mice. Each of the groups consisted of three doses of DG+CLA (500, 1,000 and 2,000 mg/kg, p.o.), Mitomycin C (positive control, 2 mg/kg, i.p.) and negative control (olive oil, 10 mL/kg, p.o.). A slide preparation was made at 24 hours after 1st treatment with DG+CLA. As a result of counting the icronucleated polychromatic erythrocyte (MNPCE) of 2,000 polychromatic erythrocyte (PCE), the number of aberrant cells was not increased in any of the three doses of DG+CLA orally administered. There was no clinical sign connected with administration of DG+CLA. These results indicate that DG+CLA is not capable of inducing micronuclei in vivo mice cells and thus has no genotoxicity in micronucleus.

Synthesis of Diglyceride Containing Caprylic acid by Immobilized Lipase Catalyzed Esterification of Monoglyceride in a Solvent Free System (모노글리세리드와 카프릴산으로부터 고정화 리파제를 사용한 디글리세리드 생산)

  • Lee, Jang-Woon;Kang, Sung-Tae
    • Microbiology and Biotechnology Letters
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    • v.37 no.4
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    • pp.365-370
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    • 2009
  • For the production of diglyceride (DG) containing medium chain fatty acid, which could be utilized as a substrate to structured lipid production, monoglyceride (MG) and caprylic acid were reacted in the presence of lipase. The reaction system was well mixed homogeneously without using any organic solvent. Among the lipases investigated, Lipozyme RM IM and Novozym 435 were selected on the basis of equilibrium DG yields from the medium chain fatty acid and MG. And reaction conditions such as addition of molecular sieve, water content of immobilized lipase, reaction temperature, and mole ratio of MG/caprylic acid are optimized to increase DG production by using Lipozyme RM IM. DG content of reaction mixture showed 8% increase by adding molecular sieve to reaction mixture. Removal of water from the immobilized lipase could affect seriously equilibrium content of DG. More than 2.8%(w/w) removal of water from the support could make 44% of DG. Optimum temperature was found to $60^{\circ}C$. Temperature shift from $60^{\circ}C$ to $25^{\circ}C$ resulted in increase of free fatty acid (FFA) content. The equilibrium DG yield was not seriously affected by on MG/caprylic acid molar ratio. However, at the stoichiometric ratio of 1:1 the highest DG yield was obtained. Increasing MG/caprylic acid ratio from 0.3 to 1.8 decreased FFA content from 34% to 13%, while MG content increased from 27% to 50%.

Lipid Contents and Fatty Acid Composition of Three Lipid Classes in Korean Pinenut (잣지질 성분의 분획정량 및 각 획분의 지방산 조성)

  • Kim, Myung;Rhee, Sook-Hee;Cheigh, Hong-Sik
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.13 no.4
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    • pp.406-412
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    • 1984
  • Total lipids (TL) from Korean pinenut (Pinuskoraiensis S & Z) were extracted, purified and fractionated into three lipid classes (neutral lipid: NL, glycolipid; GL, phospholipid; PL). Lipid contents(constituent components) and fatty acid composition of three lipid classes were determined by thin layer chromatography and gas chromatography. TL ranged from 69.0% to 69.8% in fresh pinenut and consisted of 95.9% to 96.7% NL, 3.2% to2.5% GL and 0.9% to 0.8% PL. In the NL, triglycerides were predominant (80.8%) with the smaller amounts of sterol, diglycerides, free fatty acids, sterol esters and hydrocarbons. Monogalactosyl diglycerides and esterified steryl glycosides (23.5%) were the major components of GL, but cerebrosides, steryl glycosides and digalactosyl diglycerides were also found as minor components. Of the PL, phosphatidyl choline (40.2%) and phosphatidyl ethanolamine (19.4%) were the major components, comprising over 60% of this class. Phosphatidyl inositol, lysophosphatidyl choline were also present in the PL. The major fatty acids in the NL were linoleic acid (48.6%), oleic acid (28.8%) and arachidic acid(14.4%), The fatty acid composition in the GL was similar to the pattern in the NL, but PL contained a higher percentage of palmitic acid (17.7%) and stearic acid (6.0%) than other lipid classes.

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Effects of Diglyceride-Conjugated Linoleic Acid on Proliferation and Differentiation of 3T3-L1 Cells

  • Jeong, Jae-Hwang;Lee, Sang-Hwa;Hue, Jin-Joo;Lee, Yea-Eun;Lee, Young-Ho;Hong, Soon-Ki;Jeong, Seong-Woon;Nam, Sang-Yoon;Yun, Young-Won;Lee, Beom-Jun
    • Toxicological Research
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    • v.23 no.3
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    • pp.223-229
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    • 2007
  • Conjugated linoleic acid (CLA) has been recently reported to have an anti-obesity effect in animals and humans. The objective of this study was to investigate effects of diglyceride (DG)-CLA on proliferation and differentiation of 3T3-L1 preadipocytes. Cell proliferation was determined using WST-8 analysis and cell differentiation was determined by glycerol-3-phosphate dehydrogenase (GPDH) activity. Lipid accumulation in differentiating 3T3-L1 cells was determined by Oil red O staining. There were four experimental groups including vehicle control (DMSO), CLA, triglyceride (TG)-CLA, and DG-CLA. Treatments of CLA, TG-CLA, and DG-CLA at the concentrations of $10{\sim}1000{\mu}g/ml$ reduced proliferation of preconfluent 3T3-L1 cells in a dose-dependent manner. Among them CLA was the most effective in the proliferation inhibition of preconfluent 3T3-L1 cells with increasing concentrations. Treatments of CLA and DG-CLA at the concentration of $100{\mu}g/ml$ significantly inhibited differentiation of postconfluent 3T3-L1 cells as measured by GPOH activity (p<0.05). In addition, treatments of CLA, TG-CLA, and DG-CLA effectively inhibited lipid accumulation during differentiation of 3T3-L 1 cells. OG-CLA had the most inhibitory effect on the differentiation and lipid accumulation. These results suggest that the compounds including CLA have a respectable anti-obesity effect and that consumption of DG-CLA as a dietary oil may give a benefit for controlling overweight in humans.