• Title/Summary/Keyword: triglyceride molecular species

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Molecular Species of Triglycerides in Safflower Oil (홍화유의 triglyceride 분자종에 관한 연구)

  • Cheon, Seok-Jo;Park, Yeung-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.16 no.4
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    • pp.337-342
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    • 1987
  • Triglyceride molecular species of safflower oil was examined from the profiles of triglyceride composition and the fatty acid at ${\beta}-position$ of glycerol. From the results, triglycerides were found to be 26kinds in safflower oil. The major triglyceride molecular species in safflower oil were identified to be PLL; 10,4%, OLL; 22.3%, LLL; 31.95%. Triglyceride molecular species of safflower oil characterized that species occupied by unsaturated fatty acids at ${\beta}-position$ were more than 90%.

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Molecular Species of Triglycerides in Watermelon Seed Oil (수박씨 기름의 triglyceride 분자종에 관한 연구)

  • Chun, Seok-Jo;Park, Yeung-Ho
    • Korean Journal of Food Science and Technology
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    • v.19 no.4
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    • pp.377-381
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    • 1987
  • From the profiles of triglyceride composition and the fatty acid at ${\beta}-position$ of glycerol, triglyceride molecular species were found to be 26 kinds in watermelon seed oil. The major triglyceride molecular species in watermelon seed oil were $C_{18:1}{\cdot}C_{18:2}{\cdot}C_{18:1}$ OLO; 6.4%, $C_{18:0}{\cdot}C_{18:2}{\cdot}C_{18:2}$ SLL; 7.1%, $C_{18:1}{\cdot}C_{18:2}{\cdot}C_{18:2}$ OLL; 16.6%, $C_{16:0}{\cdot}C_{18:2}{\cdot}C_{18:2}$ PLL; 19.6% and $C_{18:2}{\cdot}C_{18:2}{\cdot}C_{18:2}$ LLL; 27.6%, Triglyceride molecular species of watermelon seed oil characterized that LLL species existed more than 27% of the total triglyceride molecular species.

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Molecular Species of Triglycerides in Sunflower Seed Oil (해바라기씨 기름의 triglyceride분자종에 관한 연구)

  • Cheon, Seok-Jo;Park, Yeung-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.16 no.4
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    • pp.311-316
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    • 1987
  • From the results of triglyceride composition and the fatty acid at ${\beta}-position$ of glycerol, triglyceride molecular species of sunflower seed oil were found to be 26 kinds. The major triglyceride molecular species in sunflower seed oil were identified to PLL; 10.4%, OLL; 22.3%, and characterized that LLL species existed more than 31% of the total triglyceride molecular specie.

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Oxidative Characteristics of Triglyceride Molecular Species in the Presence of Prooxidants (산화촉진제 공존하에서의 트리글리세리드 분자종의 산화특성)

  • Yoon, Hyeung-Sik;Kim, Seon-Bong;Park, Yeung-Ho
    • Korean Journal of Food Science and Technology
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    • v.22 no.1
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    • pp.7-12
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    • 1990
  • The effect of $Fe^{2+}$ and myoglobin on the oxidative stability of triglyceride molecular species was investigated at $25^{\circ}C$. The molecular species of soybean oil triglycerides were analyzed by capillary column gas chromatography and electron impact ionization mass spectrometry utilizing selected ion monitoring. When $Fe^{2+}$ and myoglobin were added to soybean oil triglycerides, the oxidative stability of each molecular species of triglycerides appeared to decrease in proportion to the increase in the number of double bonds present in the acyl residues, and it was affected by degree of unsaturation of fatty acid when the total degree of unsaturation of triglyceride was the same. But the length of the saturated acyl chain had no influence on the stabilization of unsaturated fatty acid present in the same glyceride when prooxidants were added.

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Autoxidative Stability of Triglyceride Molecular Species (트리글리세리드 분자종의 산화안정성에 관한 연구)

  • Yoon, Hyeung-Sik;Kim, Seon-Bong;Park, Yeung-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.18 no.2
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    • pp.205-210
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    • 1989
  • The influence of triglyceride molecular species on autoxidation was investigated by determining the residual molecular species after incubating soybean oil triglycerides. The molecular species of soybean oil triglycerides were analyzed by capillary column gas chromatography and electron impact ionization mass spectrometry utilizing selected ion monitoring. The autoxidative stability of each molecular species in soybean oil triglycerides appeared to decrease in proportion to the increase in the number of double bonds present in the acyl residues, and it was affected by degree of unsaturation of fatty acid when the number of double bonds in triglyceride were the same. And it appeared to be enhanced by a decreases in the length of the saturated acyl chain present in the glycerides.

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Molecular Species of Triglycerides in Walnut Oil (호도기름의 Triglyceride 분자종에 관한 연구)

  • Chun, Seok-Jo;Park, Yeung-Ho
    • Korean Journal of Food Science and Technology
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    • v.19 no.2
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    • pp.134-139
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    • 1987
  • The triglycerides of walnut oil were fractionated by high performance liquid chromatography (HPLC) on the basis of partition number (PN). Each triglyceride was finally fractionated on the basis of aryl carbon numbers (CN) by gas-liquid chromatography (GLC). The fatty acids of triglyceride for each PN group were analyzed by GLC. Also, the fatty acid at ${\beta}-position$ of glycerol in each PN fraction separated by HPLC was determined by enzymatic hydrolysis with pancreatic lipase. The major triglyceride molecular species of walnut oil were $C_{18:2}{\cdot}C_{18:2}{\cdot}C_{18:1}$(LLO; 10.9%), $C_{18:3}{\cdot}C_{18:2}{\cdot}C_{18:2}$(LnLL; 17.6%) and $C_{18:2}{\cdot}C_{18:2}{\cdot}C_{18:2}$(LLL; 37.3%). The triglyceride molecular species occupied by unsaturated fatty acid at ${\beta}-position$ were more than 90%.

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Analysis of Molecular Species of Vegetable Oil Triglycerides by Capillary Column GC-MS (Capillary Column GC-MS에 의한 식물유 트리글리세리드 분자종의 분석)

  • Yoon, Hyeung-Sik;Kim, Seon-Bong;Park, Yeung-Ho
    • Korean Journal of Food Science and Technology
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    • v.21 no.3
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    • pp.391-398
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    • 1989
  • Triglyceride molecular species In some vegetable oils were analyzed by capillary column gas chromatography and electron impact ionization mass spectrometry utilizing selected ion monitoring. Triglycerides were separated according to their molecular weights and their degrees of unsaturation on $25m{\times}0.25mm$ fused silica open tubular capillary column coated with a phenylmethylsilicone gum stationary phase and in an analysis time less than 13 min. Triglyceride molecular species were identified by analyzing the fragment ions having the same time on the selected ion monitoring profile . The major triglyceride molecular species in each oils were $C_{18:1}.\;C_{18:2}.\;C_{18:2}(OLL:18.3%),\;C_{18:2}.\;C_{18:2}.\;C_{18:2}(LLL;\;14.3%),\;C_{18:0}.\;C_{18:2}.\;C_{18:2}(SLL;\;14.1%),\;C_{16:0}.\;C_{18:2}.\;C_{18:2}(PLL;\;13.2%),\;C_{16:0}.\;C_{18:2}.\;C_{18:1}(PLO;\;11.6%)$ in corn oil, $C_{18:2}.\;C_{18:2}.\;C_{18:2}(LLL;\;18.0%),\;C_{18:1}.\;C_{18:2}.\;C_{18:2}(OLL;\;18.0%),\;C_{16:0}.\;C_{18:2}.\;C_{18:2}(PLL;\;17.1%)$ in safflower oil, $C_{16:0}.\;C_{18:2}.\;C_{18:2}(PLL;\;23.5%),\;C_{16:0}.\;C_{18:2}.\;C_{18:1}(PLO;\;13.8%),\;C_{18:0}.\;C_{18:1}.\;C_{18:1}(SOO;\;13.5%),\;C_{18:1}.\;C_{18:2}.\;C_{18:2}(OLL;\;10.6%)$ in cottonseed oil.

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A Study on the Lipid Components in Sporangiophores of Phycomyces sp. (Phycomyces sp. 포자낭병의 지질조성(脂質組成)에 관(關)한 연구(硏究))

  • Rhee, Hae-Ik;Lee, Sang-Young
    • Korean Journal of Food Science and Technology
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    • v.11 no.2
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    • pp.105-111
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    • 1979
  • Phycomyces sp. has been isolated from Meju and its lipid composition was investigated. The lipid content was 18.2 % of dry weight and composed of 69.2 % neutral lipids. 24.3 % glycolipids and 6.5 % phospholipids. It was possible to identify the presence of carotene, hydrocarbons, esterified sterols, fatty acid esters, triglycerides. free fatty acids and free sterols in the neutral lipid fraction. Major components in the neutral lipid fraction were free fatty acids and triglycerides. Twelve molecular species of triglycerides and 8 molecular species of diglycerides were fractionated by argentation TLC. The major fatty acids in total lipids were stearic, linoleic, arachidic and linolenic acids, and those in the free fatty acid fraction were stearic, linoleic and arachidic acids.

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Changes in the Physicochemical Characteristics and Triglyceride Molecular Species of Corn oil during Hydrogenation (수소첨가에 따른 옥수수유의 트리글리세리드 분자종 및 이화학적 특성의 변화)

  • Kim, Hyeon-Wee;Cha, Ik-Soo;Kim, Jin-Ho;Kim, Hyun-Suck;Park, Ki-Moon;Son, Se-Hyung
    • Korean Journal of Food Science and Technology
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    • v.25 no.6
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    • pp.637-642
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    • 1993
  • Changes in the physicochemical characteristics and triglyceride molecular species of corn oil under the following condition of hydrogenation; temperature $180^{\circ}C,\;H_{2}$, pressure $2.0{\pm}0.3bar$, the amount of Ni catalyst 0.048%(Ni/oil by wt.) and agitation speed 300 rpm. The rate of hydrogenation, expressed as the reduction rate of the iodine value with respect to time, is first order and high (K>0.01). When the reduction rate of the iodine value was 39.9%, hydrogenation time was 30 min, 18:1 was highest(77.06%), thereafter that was decreased and 18:0 increased. In the triglyceride composition, OLL, LLL were reduced markedly in 10 min, thereafter reduced slightly. And PLO, PLL, OLO were eliminated in first 30 min. On the other hand, POO, PLS(CN52) and OOO, SLO(CN54) were increased sharply, and then that showed little change. The melting point(MP) of hydrogenated corn oil were $27.8^{\circ}C\;and\;44.1^{\circ}C$ after 20 min and 60 min, respectively. Trans isomer content increased to 46.8% during 40 mins of hydrogenation and then decreased insignificantly. The solid fat content were linearly increased with hydrogenation time. Accordingly, it is confirmed that this condition of hydrogenation was selective, preferential elimination of polyunsaturated fatty acid went stepwise and trans isomer was formed promotedly. These results suggest that fat modification techniques can be used for practical application.

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Effect of Garlic on Serum Lipids Profiles and Leptin in Rats Fed High Fat Diet

  • Kang, Soon-Ah;Shin, Ho-Jung;Jang, Ki-Hyo;Choi, Sung-Eun;Yoon, Kyung-Ah;Kim, Jin-Sook;Chun, Hye-Kyung;Lim, Yoong-Ho
    • Preventive Nutrition and Food Science
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    • v.11 no.1
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    • pp.48-53
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    • 2006
  • Although garlic has been reported to have impressive effects in lowering serum lipids, there have been controversial evaluations on these effects. To find the potential fator causing the inconsistency in the previous studies, we examined the effects of two types of garlic according to the producing-area (hangihyung garlic, nangihyung garlic) on serum lipid profiles and leptin level. Thirthy six of 4 wk old Sprague Dawley male rats fed high fat diet (40% of calories as fat) for 6 wks to induce obesity, and subsequently fed 5% garlic powder supplemented (HF+H: hangihyung garlic powder, HF+N: nangihyung garlic powder) high fat diets (w/w) for further 5 wk. For the comparison, normal control group fed AIN-76A diet (11.7% of calories as fat). Supplementation with hangihyung and nangihyung garlic resulted in a significant reduction of high fat induced body weight gain, white fat (i.e., epididymal, visceral and peritoneal fat) development, adipocyte hypertrophy and the development of hyperinsulinemia and hyperliptinemia. Serum triglyceride and total cholesterol level was greatly reduced by hangihyung garlic supplementation (p<0.05). The HDL-cholesterol level was increased by dietary hangihyung and nangihyung garlic. There were slight non-significant decreases in triglyceride and total cholesterol of HF+N group as compared to those of HF group. Leptin level of HF+H group was found to be significantly lower than HF group (p<0.05). There was no significant difference among N group and HF+N group. These results suggest that hangihyung garlic may lead to the higher activity in improving lipid profiles than nangihyung garlic. Whether the hypolipidemic effect of garlic increases in a species-dependent has yet to be determined and awaits further research.