• Title/Summary/Keyword: Seed Oil

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Antibacterial Effect of Eucalyptus Oil, Tea Tree Oil, Grapefruit Seed Extract, Potassium Sorbate, and Lactic Acid for the development of Feminine Cleansers

  • Yuk, Young Sam
    • International Journal of Internet, Broadcasting and Communication
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    • v.13 no.2
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    • pp.82-92
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    • 2021
  • Purpose: It has been reported that the diversity and abundance of microbes in the vagina decrease due to the use of antimicrobial agents, and the high recurrence rate of female vaginitis due to this suggests that a new treatment is needed. Methods: In the experiment, we detected that 10% potassium sorbate solution, 1% eucalyptus oil solution, 1% tea tree oil solution, 400 µL/10 mL grapefruit seed extract solution, 100% lactic acid, 10% acetic acid solution, and 10% lactic acid solution were prepared and used. After adjusting the pH to 4, 5, and 6 with lactic acid and acetic acid in the mixed culture medium, each bacterium was inoculated into the medium and incubated for 72 h at 35℃. Incubate and 0 h each. 24 h. 48 h. The number of bacteria was measured after 72 h. Results: In the mixed culture test between lactic acid bacteria and pathogenic microorganisms, lactic acid bacteria showed good results at pH 5-5.5. Potassium sorbate, which has varying antibacterial activity based on the pH, killed pathogenic bacteria and allowed lactic acid bacteria to survive at pH 5.5. Conclusion: The formulation ratio obtained through this study could be used for the development of a feminine cleanser that can be used as a substitute for antibacterial agents. Further, the findings of this study may be able to solve the problem of antimicrobial resistance in the future.

Evaluation of Nigella sativa Seed Constituents for Their in vivo Toxicity in Mice

  • EI-Hadiyah, T.M.;Raza, M.;Mohammed, O.Y.;Abdallah, A.A.
    • Natural Product Sciences
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    • v.9 no.1
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    • pp.22-27
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    • 2003
  • This study was designed to investigate the effects of main constituents of Nigella sativa (NS) seed on the survival and CNS responses in experimental animals. The toxicological investigations were conducted for the determination of median lethal doses $(LD_{50})$ of NS seed constituents [i.e. aqueous extract (AE), fixed oil (FO), volatile oil (VO)] and main components of its VO [i.e. thymoquinone (TQ), ${\alpha}-pinene$ (AP) and p-cymene (PC)]. A part of this study includes evaluation NS constituents in the induction of minimal neurological deficit (MND) as a parameter for neurotoxicity using chimney test. In this study, the i.p. $LD_{50}$ values of AE, FO, VO, TQ (suspended In 0.5%CMC), TQ (dissolved in corn oil), AP and PC, were 3020, 3371, 1853, 616.6, 90.3, 1726 and 1523 mg/kg, respectively. All the NS constituents can be considered moderately toxic ($LD_{50}$ ranged from 616.6 to 3371 mg/kg), except the oily solution of TQ, which was very toxic ($LD_{50}$ was 90.3 mg/kg). It appeared that the toxicity of the whole VO is mainly due to its content of TQ and to some extent PC. All the NS constituents induced different degrees of MND at certain dose levels. The median neurotoxic (or sedating) doses $(TD_{50})$ of AE, FO, VO, TQ (suspended in CMC) and AP and PC, were 950, 1403, 306, 88.1, >173 and 368 mg/kg, respectively. TQ was the most potent component in inducing MND, whereas the FO and AE were the least. Neurotoxicity induced by the VO in the chimney test may refer basically to its contents of TQ and to some extent PC and AP.

Studies on the Lipid Components of Torreya nucifera Seed -I. Physico-Chemical Properties of the Seed Oil- (비자(榧子)의 지방질(脂肪質) 성분(成分)에 관한 연구(硏究) -제 1 보(濟 1 報) : 비자유(榧子油)의 물리화학적(物理化學的) 특성(特性)-)

  • Im, Hee-Soo;Yoon, Kwang-Ro;Chung, Dong-Hyo
    • Korean Journal of Food Science and Technology
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    • v.12 no.4
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    • pp.324-327
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    • 1980
  • The seeds of Torreya nucifera, which were shown to contain high level of oil, were characterized to evaluate their possible utilization as oil source. Oil was extracted by compression from the seeds and its physico-chemical properties and, total fatty acid composition were determined. The results are summarized as follows: 1. Proximate components of the seeds were shown to be: moisture, 12.3% ; crude protein, 9.46%; crude fat, 54.29 %; fiber, 5.28 %; ash, 2.13%. 2. Physico-chemical characteristics of the seed oil were determined as follows: specific gravity 0.92, refractive index 1.470, iodine value 127, saponification value 182.2, acid value 9.5, ester value 172.7. 3. The major fatty acids of the total lipids were linoleic (46.77%), oleic (31.68%) and palmitic acid (6.92%).

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Studies on the Composition of Sapindus Mukurossi Seeds (무환자(無患子)나무 종자(種字)의 성분(成分)에 관(關)한 연구(硏究))

  • Kim, Myung-Chan;Jeong, Tae-Myoung;Yang, Min-Suk
    • Korean Journal of Food Science and Technology
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    • v.9 no.1
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    • pp.41-46
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    • 1977
  • The composition of fatty acids and sterols from Sapindus Mukurossi oil were analyzed by gas liquid chromatography and amino acids from Sapindus Mukurossi seed oil cake were determined by amino acid autoanalyzer. The results obtained were summarized as follows; 1. Oil content (45.7%) was higher in Sapindus Mukurossi seed than in other plant seeds such as soybean, sesame and peanut. 2. From the analysis of fatty acids, it was found that oleic acid(61.6%) and gadoleic acid(20.4%) were major fatty acid and that high monoenoic acid content(82%) could be a characteristic of sample seed oil. 3. Glutamic acid contained the most amounts among all amino acids determined, and isoleucine, leucine, lysine, phenylalanine, threonine and valine were relative high amounts compared with content of other amino acids. 4. The sterol compositions of 4-desmethyl sterol, 4-monomethyl sterol and 4,4-dimethyl sterol fraction were found to be similar to those of higher plant oil, but 4-monomethyl sterol fraction was characterized by containing the unknown sterol (31.5%) with RRT 1.27.

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Studies on Processing and Analysis of Red Pepper Seed Oil (고추씨 기름의 정제와 분석에 관한 연구)

  • Kim, Jae-Cherl;Rhee, Joon-S.
    • Korean Journal of Food Science and Technology
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    • v.12 no.2
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    • pp.126-132
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    • 1980
  • An attempt was made to remove red color and capsaicin which were contaminated in crude oil extracted from red pepper seeds with n-hexane. Both clay bleachidg and deodorization were responsible for the removal of red color. Clay bleaching was also the most effective for the removal of capsaicin, which was removed completely with 4 % clay. Capsaicin in oil was adsorbed onto the clay particles exponentially and it followed Freundlich equation : ${\frac{x}{m}}=1.1\;c^{0.31}$, where x is amount of capsaicin adsorbed (mg/ml), m is amount of clay used in bleaching (%) and c is amount of residual capsaicin (mg/ml). Neutral lipid of the seed oil consisted of 95.8 % triglyceride, 1.55 % sterol ester, 1.45 % monoglyceride, 0.78 % free fatty acids, 0.2 % diglycerides and 0.15 % sterol. Major components of fatty acids in the red pepper seed oil were linoleic acid (78.79 %), palmitic acid (15.27 %) and linolenic acid content was only 0.63 % by high performance liquid chromatography.

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Antioxidant Activity of Grape Seed Ethanol Extract (포도종실 에탄올 추출물의 항산화 활성)

  • 정하열;윤수정
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.31 no.5
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    • pp.893-898
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    • 2002
  • To examine the antioxidant activity of grape seed ethanol extract, the antioxidative index (AI) by the active oxygen method (AOM) and peroxide value (POV) of linoleic acids containing the extract at levels of 100, 500, 1000 ppm was measured during storage at 6$0^{\circ}C$ for 12 days. When comparing with BHT, the extract at levels of 500 ppm showed similar or better antioxidant activity (AI: 2.25, POV: 57 meq/kg oil) than that (AI: 1.21, POV:58 meq/kg oil ) of BHT at 200 ppm level. The mixture of 500 ppm of the extract and 500 ppm of ascorbic acid showed intense synergistic antioxidant activity (AI: 6.21, POV: 14 meq/kg oil) compared with using 1000 ppm of the extract only (AI: 3.39, POV 43 meq/kg oil). Also to determine the feasibility of using the extract for natural antioxidant, the oxidative stability of roasted peanut and Ramyon was investigated by measuring the POV of crude oils from the samples stored at 60"C for 18 days. The oxidative stability of roasted peanut and Ramyon seemed to be enhanced by treatment with the extract at level of 1000 ppm, especially with the 1 : 1 mixture of extract and ascorbic acid. This study suggested that grape seed ethanol extract could be used as the natural antioxidant for the improvement of overall oxidation stability of fat containing foods.oods.

Elicitors for the Regulation of baccatin III Biosynthesis in Plant Cell Culture System (Elicitor에 의한 baccatin III의 세포내 생합성 조절연구)

  • Shin, Seung-Won;Kim, You-Sun;Lim, Sook
    • YAKHAK HOEJI
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    • v.44 no.1
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    • pp.60-65
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    • 2000
  • The yeast extract, coconut water, safflower seed oil, arachidonic acid, linolenic acid, jasmonic acid and methyl jasmonate were added to Gamborg's B$_{5}$ medium. The changes on productivity of baccatin III were estimated every 30 minutes and the results were compared using the selected high yielding cell culture system of Taxus cuspidata. In most cases, the peaks of baccatin III productivity occured at 90~120 min after addition of elicitors. Among the compound elicitors, safflower seed oil showed the highest productivity of baccatin III. Also arachidonic acid and linolenic acid increased the baccatin III production.

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Isolation of Pure $\alpha$-Linolenic Acid from Perilla Seed Oil (들깨유로부터 $\alpha$-Linolenic Acid의 순수분리)

  • 정보영;류수노;허한순
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.26 no.6
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    • pp.1028-1032
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    • 1997
  • Low-temperature crystallization method silver nitrate-impregnated silicic acid column chromatography were applied for the isolation of pure $\alpha$-linolenic acid(ALA) from perilla seed oil. ALA or 78% in purity(HALA; yield, 83%) was obtained from the fatty acid mixture(ALA, 65.7%) derived from perilla oil by the low-temperature crystallization method, when the mixture was frozen at -8$0^{\circ}C$ for 210min. ALA over 90% in purity(yield, 71%) was also obtained from HALA ethyl esters(ALA, 78%) by the silver nitrate-impregnated silicic acid column(100cm$\times$10cm, i.d.) chromatography. In addition, the silver nitrate-impregnated silicic acid could be semipermanently used for isolation of ALA, because $Ag^{+}$ ion was not dissociated from the stationary phase.

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Monitoring of Residual Pesticides in Pepper Seed Oil Products Sold on the Market (고추씨 기름의 잔류농약 모니터링)

  • Mi-Hui Son;Jae-Kwan Kim;You-Jin Lee;Ji-Eun Kim;Eun-Jin Baek;Byeong-Tae Kim;Myoung-Ki Park;Yong-Bae Park
    • Journal of Food Hygiene and Safety
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    • v.38 no.6
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    • pp.483-488
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    • 2023
  • The status of residual pesticides was investigated in four pepper seed oil samples and 36 pepper-flavored oil samples oil distributed on the market from August to December 2022. A total of 179 pesticides were monitored in 40 samples, and 14 pesticides were detected in 39 of the samples, with a detection range of 0.01-2.16 mg/kg. In chili seed oil, 10 pesticides were detected 27 times with a range of 0.11-2.16 mg/kg, and in pepper-flavored oil, 9 pesticides were detected 94 times with a range of 0.01-0.80 mg/kg. The most frequently detected pesticides were tebuconazole, ethion, and difenoconazole, with ethion being detected in large concentrations in products using Chinese raw materials. Ethion, an unregistered pesticide in the Republic of Korea, has not been detected in the Gyeonggi-do area in the past 10 years. It is thought that the detection of ethion can be utilized as an indicator of products made in China. Peppers are a representative agricultural product for which many pesticides are used, and if the pesticides transferred to pepper seeds are not removed, the probability of detecting various types of pesticides in pepper seed oil is very high. Therefore, continuous research is needed to ensure the safety of pepper seed oil.

A Study on the Performance of Small Diesel Engine Using Blend Fuel Oil ( 3 ) - Rape Seed Oil 20 % and Diesel Oil 80 % - (혼합 연료를 사용한 소형 디이젤 기관의 성능에 관한 연구 ( 3 ) - 유연기름 20 % 와 디이젤유 80 % -)

  • 고장권
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.20 no.2
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    • pp.127-132
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    • 1984
  • Performance tests of small diesel engine were carried out, using the blend fuel oil as the substitute fuel oil and the following results were obtained. (1) The character at the blend oil as substitute fuel for small diesel engine was examined. (2) In the case of operating small diesel engine with blend oil, the exhaust gas volume increases at 8% in comparison with diesel oil. (3) In the case of operating small diesel engine with blend oil, the fuel consumption Increases at 3% in comparison with diesel oil. (4) In the brake thermal efficiency, blend oil is similar to diesel oil.

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