• Title/Summary/Keyword: sesame oils

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The Changes of Body Fat Accumulation, Serum Lipids and Platelet Functions in Rat Fed the Diet Containing Different Common Oils in Korea: Sesame oil, Perilla oil, Rice Bran oil and Mixed oil (급원이 다른 식이 지방이 흰쥐의 지방대사와 혈소판 성상에 미치는 영향 -참깨유, 들깨유, 미강유 중심으로-)

  • 김숙희
    • Journal of Nutrition and Health
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    • v.26 no.5
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    • pp.513-523
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    • 1993
  • In this experiment, we investigated the hypolipidemic and antithrombotic effects of rats fed diets with different common oils in Korea for different feeding periods(4 weeks or 12 weeks), using Korean sesame oil, perilla oil, rice bran oil and mixed oil. W-3/w-6 ratio of each group was 0.001, 1.44, 0.03 and 0.112, respectively. P/S ratio of each group was 9.64, 10.49, 5.58 and 1.68, respectively. The result were as follows: 1) According to the age, body fat accumulation was increased. 2) Perilla oil(w-3 rich) decreased total lipid, triglyceride and total cholesterol, and increased HDL/total cholesterol ratio. 3) With regard to the compositono of platelet fatty acids, Perilla oil increased w-3/w-6 ratio of the platelet. Perilla oil lengthened bleeding time and decreased MDA(MalonDAdehyde) formation which determined in place of Thromboxane A2(TXA2) in platelet. This result can suggest that linoleic acid of perrilla oil seem to supress the conversion of linoleic acid to arachidonic acid(AA 20:4, w-6) and eicosapentaenoic acid(EPA, 20:5, w-3) trannnsformed from linolenic acid to suppress the conversion of arachidonic acid to TXA2. Since TXA2 is platelet-aggregating and vasoconstricting agent, the reduction of TXA2 tgeneration by platelet with increased linolenic acid intakes shows prologed bleeding time. In conclusion, w-3 rich perilla oil has strong hypolipidemic and antithrombotic effects by changing fatty acid profiles of the platelet.

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Identification of Vegetable Oil-added Sesame Oil by a Mass Spectrometer-based Electronic Nose (Mass Spectrometer를 바탕으로 한 전자코를 이용한 식물성 유지가 혼합된 참기름의 판별 분석)

  • Son, Hee-Jin;Hong, Eun-Jeung;Ko, Sanghoon;Choi, Jin Young;Noh, Bong-Soo
    • Food Engineering Progress
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    • v.13 no.4
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    • pp.275-281
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    • 2009
  • Sesame oils are partially mixed with other vegetable oils due to high price in a Korean market. To find out authentic sesame oil, a mass spectrometer-based electronic nose (MS-based E-nose) was used. Sesame oil (Se) was blended with soybean oil (So) or corn oil (Co) at the ratio (Se:So, Se:Co) of 97:3, 94:6, 91:9, 88:12 and 85:15, respectively. Intensities of each fragment from sesame oil by MS-based E-nose were completely different from those of soybean oil or corn oil. The obtained results were used for discriminant function analysis (DFA). Volatile organic components (VOC) of soybean oil or corn oil were similar to those of fresh air and DFA plot indicated a significant separation of pure sesame oil and pure other oil. The group of the mixed oil was seperated with that of sesame oil in DFA plot and the added amount of soybean oil to sesame oil was correlated with discriminant function first score (DF1). MS based E-nose system could be used as an efficient method to investigate the purity of sesame oil.

The Traditional Method for Preparing Korean Vegetable Dishes - Especially about Na mul.Seng chae.Ssam - (채소의 전통 조리법 - 나물.생채.쌈을 중심으로 -)

  • 조후종
    • Korean journal of food and cookery science
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    • v.14 no.4
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    • pp.339-347
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    • 1998
  • Korean vegetable dishes-Na mul are indigenous and popular foods for a long time, and have been eaten by not only the common people but also the royale people in the ordinary meal and customary affairs. Grains are principal item of diet for Koreans and additions of Na mul in diet provide the nutritional minerals and vitamins. Especially vegetable oils in seasoning played the important role in nutrition balance. This manuscript historically investigate the Korean vegetable dishes-especially Na mul, Seng chae, Ssam, and the vegetables, additional ingredients and seasonings. 1. Foreign vegetable were introduced very actively. As the result of it, the more variety of vegetables are available. 2. Vegetable oils such as sesame oil, perilla oil, roasted sesame seed and pine nuts, etc were widely used for seasonings. 3. Seng chae dishes had been prepared with more than two different kinds of vegetables. Seasonings are used from the various sources, and combination of ingredients and development of condiments are expected to research further. 4. Ssam foods basically used uncooked vegetables, but steaming and boiling are also common methods.

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The Changes of Erythrocyte Feature and Ca Concentration in Rat Fed the Diet Containing Different Common Oils in Korea : Sesame Oil, Perilla Oil, Rice Bran Oil and Mixed Oil (급원이 다른 식이 지방이 흰쥐의 적혈구 성상 및 Ca 함량에 미치는 영향 -참깨유, 들깨유, 미강유 중심으로-)

  • 김숙희
    • Journal of Nutrition and Health
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    • v.26 no.5
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    • pp.524-531
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    • 1993
  • In this experiment, we investigated the changes of erythrocyte feature and Ca concentration in rat fed the diet containing different common oils in Korea for different feeding periods(4 weeks or 12 weeks), using Korea sesame oil, perilla oil, rice bran oil and mixed oil. W-3/w-6 ratio of each group was 0.001, 1.44, 0.03 and 0.112, respectively. P/S ratio of each group was 9.64, 10.49, 5.58 and 1.68, respectively. Perilla oil(w-3 rich) increased w-3/w-6 ratio of erythrocyte membrane, decreased the amount of trapped Ca and inhibited the decrease of cell volume. These results indicate that in maybe increase erythroyte fluidity and deformability, and affect erythrocyte function. In conclusion, w-3 rich perilla oil affects erythrocyte feature.

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Studies on the Contents of Special Components and Estimation of Purity in Sesame oil -I : Contents of Sesamin and Sterols- (참기름의 특이성분함량(特異成分含量)과 순도결정(純度決定)에 관(關)한 연구(硏究) (제(第) 1 보(報)) -Sesamin 및 관련(關聯)Sterol를 중심(中心)으로-)

  • Ro, Ihl-Hyeob;Lee, Moon-Sun
    • Journal of Nutrition and Health
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    • v.16 no.2
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    • pp.107-114
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    • 1983
  • There has been no specific test available for identifying the sesame oil among common edible oils. As the contents of sesamin and the ratio of sterols allowed the estimation for the genuine sesame oil, the author investigated to establish some instrumental methods for verification of genuine sesame oil and its distribution in the market. The sesame oil was saponified and the sesamin and sterols were isolated from the unsaponiable fraction by Florisil column chromatography. The individual components were determined by gas- chromatography and sesamin standard (purified sesamin) was obtained by silicagel column chromatography. The gas- chromatographic condition using Flame Ionization Detector supported on 10% OV-101 with di-(2-ethylhexyl) sebacate as an internal standard was suitable, and quantitation of sesamin and sterols, including campesterol, stigmasterol and ${\beta}-sitosterol$ was carried out. The results of this study showed that contents of sesamin in genuine sesame oil were 0.3-0.5% and the ratio of stigmasterol to compesterol was 0.3-0.6 and ${\beta}-sitosterol$ to campesterol 3.0-3.8. The 50 samples from the markets in Seoul were composed of 70% genuine sesame oil, and others were mixed with palm oil, rape seed oil and soybean oil.

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Studies on the Constituents of Korean Edible Oils and Fats - Part 6 : A Study on the Natural Antioxidants of sesame and perilla seeds - (한국산 식물식용유지의 성분에 관한 연구 - 제 6 보 : 참깨와 들깨종자유 중의 천연산화방지제에 관한 연구 -)

  • Hwang, Sung-Za;Ko, Young-Soo
    • Journal of Nutrition and Health
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    • v.15 no.1
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    • pp.30-38
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    • 1982
  • Experiments were carried out in order to compare the natural antioxidants in the acetonitril extracts of raw and baked seeds of Korean sesame and perilla by thin layer and gas chromatography. The sample was dissolved in n-pentane and extracted with acetonitril and the acetonitril extract was separated by thin layer chromatography using silica gel. The spots were detected by spraying with 2, 6 -dichloroquinone -4-chlorimide, phosphomolybdic acid and dimethylamine as chromogenic reagents. Natural antioxidant, such as ${\delta}-tocopherol$ detected in raw and baked sesame and perilla seed oil by TLC and sesamol was detected only in raw and baked sesame seed oil by GC.

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Studies on the Antioxidant Action of Antioxidant of Oils and Fats (유지의 항산화제의 항산화능력에 대하여)

  • 강신주
    • Journal of the Korean Home Economics Association
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    • v.5 no.1
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    • pp.815-825
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    • 1966
  • Many synthetic antioxidants are now used to prevent the oxidation of oils and fats. Among the synthetic and tioxidants, it was known that those of HQ(Hydroquinone), BHA(Butyl hydroxyanisole), IG(isoamyl gallate), and NDGA(Nordihydro guaiaretic acid) are most efficient as the antioxidizing agent. In this work, Degree of antioxidation was investigated on the some such antioxidans BHA, CI(citric acid), AA(Ascoric acid) for several kinds of oils and fats which are most available in Korea by determining Acid value and Iodine Value. The results of experiments were as follows 1. The decreasing order of antioxidizing action by acid value is BHA, AA, CA. 2. The order of antioxidizing action by Iodine value is almost same as the case of Acid Value. 3. It is effective to add the antioxidants to kep oils and fat. 4. Oxidation is accelerated by standing oils and fats after boiling in the from fry pan. 5. Sesame oil is little oxidized without antioxidant.

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Analysis of Major Phytosterol Contents for 10 Kind of Vegetable Oils (식물성 유지 10종에 대한 주요 Phytosterol 함량 분석)

  • Cho, Sang-Hun;Lee, Myung-Jin;Kim, Ki-Yu;Park, Geon-Yeong;Kang, Suk-Ho;Um, Kyoung-Suk;Kang, Hyo-Jeong;Park, Yong-Bae;Yoon, Mi-Hye
    • The Korean Journal of Food And Nutrition
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    • v.34 no.2
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    • pp.217-223
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    • 2021
  • Vegetable oils are a rich source of bioactive substances. Phytosterols in those have been known for many years for their properties for reducing blood cholesterol levels, as well as their other beneficial health effects. Phytosterols are triterpenes that are important structural components of plant cell membranes just as cholesterol does in animal cell membranes. The aim of this study was to provide consumers with information about phytosterol contents in vegetable oils in Korea market. The contents of major phytosterols (campesterol, stigmasterol, β-sitosterol) in 50 vegetable oils of 10 kinds (perilla oil, peanut oil, avocado oil, olive oil, pine nut oil, sesame oil, canola oil, coconut oil, grape seed oil, and sunflower oil) were analyzed by gas chromatography with flame ionization detector. The average contents of vegetable oils containing 5 or more samples were in the order of sesame oil (334.43 mg/100 g), perilla oil (262.16 mg/100 g), grape seed oil (183.71 mg/100 g), and olive oil (68.68 mg/100 g). Phytosterol content of sesame oil and perilla oil was high among vegetable oils.

A Study of the Efficacy to Control the Bacteria Colony of Scalp in Ayurvedic Oils on Clinical Testing

  • Choi, Jung-Myung
    • Journal of Fashion Business
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    • v.13 no.6
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    • pp.45-60
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    • 2009
  • This study examined the efficacy of restraining the increase of the bacteria colony of scalp according to the application of the Ayurvedic base oils and essential oils to scalp and hair. The result is as follows. The experiment illustrated that as the result of doing the paired sample t-test of a treated group and a control group according to constitutional oiling, the efficacy of the statistically significant decrease of the colony manifested in six tested groups except the group of Pitta constitution to which sesame and lavender were applied. Also, in a group that sesame was applied to Vata constitution and a group that coconut and lavender were applied to Pitta constitution, according to the passage of time, the result of being reduced the number of the colony was obtained and it showed that the oiling suitable for each constitution has the efficacy to decrease the colony of scalp. At the same time, regardless of the constitutions, the application of oils also showed the efficacy of restraining the increase of the bacteria colony of scalp. As the result of performing Paired Sample t-test for the subjective evaluation of the subjects in pre and post clinical testing, In the analysis of questionnaire that were obtained before and after the clinical testing, the results of all of the items except the item questioning a degree of inflammation appeared to be significant. That is to say, the subjects answered that a degree of keratin or a pain in scalp, an amount of sebum and a degree of hair damage were decreased after the application of oil more than before it. And in the question of a degree of hair damage, the application of oils were proved as having the efficacy to improve the hair damage.