• Title/Summary/Keyword: sesame Oil

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Oxidative Stability of Peanut (Arachis hypogaea L.) Oil and Quality Characteristics of the Roasted Peanuts (볶음땅콩의 품질특성과 땅콩기름의 산화안정성)

  • Park, Bock-Hee;Lee, Jung-Hee;Kim, Sun-Hee;Cho, Hee-Sook
    • Journal of the Korean Society of Food Culture
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    • v.32 no.2
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    • pp.128-134
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    • 2017
  • The purpose of this study was to investigate the quality characteristics of roasted peanuts and the antioxidative effect of peanut oil added with sesame oil. Saltiness of roasted peanut increased with increasing salt content. In terms of color value, L and b values decreased as increasing concentration increased, whereas a value increased with increasing salt content. Overall, sensory evaluations proved that roasted peanuts with 15% added salt was preferred over other samples. For peanut oil added with sesame oil, acid values increased during the storage period, whereas samples made with sesame oil had lower values than the control group. Peroxide values increased rapidly for 21 days and then decreased. The acid and peroxide values were lower in peanut oil added with 50% sesame oil compared to peanut oil added with 30%, 10%, and 70% sesame oil, as well as the control. The TBA values of peanut oil made with 50% and 30% sesame oil were lower than those of the control and 70% and 10% sesame oil. According to the Rancimat method, PS-50% (524 min) and PS-30% (453 min) demonstrated longer induction periods as compared to the control (280 min), PS-70% (445 min), and PS-10% (291 min) samples.

Quality Characteristics of Baked Yackwa with Different Types and Amounts of Oils (기름의 종류 및 첨가량을 달리한 구운 약과의 품질특성 연구)

  • Jang, So Young;Park, Mi Jung;Lee, Sook Young
    • Journal of the Korean Society of Food Culture
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    • v.28 no.5
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    • pp.525-532
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    • 2013
  • This study aimed to find oils that can replace high-priced sesame oil. The quality of baked Yackwa containing different types of oils (rice bran, olive, or sesame oils) and amount of oils (30, 35, 40%) were investigated. The hardness of the baked Yackwa depended on the amount of oil, as more oil led to a softer texture of baked Yackwa. According to sensory evaluations, baked Yackwa with rice bran oil received the highest score in taste quality, with sesame oil receiving the second highest score. The flavor of baked Yackwa containing the rice bran oil was also better than other samples. In contrast, there were no significant differences in taste between other samples, including baked Yackwa containing all ingredients, 40% sesame oil, and 40% olive oil. The overall acceptance showed the highest score in baked Yackwa with rice bran oil (35%). In conclusion, rice bran oil (35%) is recommended as an oil ingredient for baked Yackwa.

Improvement of Chlorophyll-photosensitized Oxidation of Fish Oil-enriched Emulsion by Sesame Oil Addition and Antioxidant Content Changes (참기름 첨가에 의한 어유 보강 에멀젼의 클로로필에 의한 광산화 개선 효과와 산화 방지제 함량 변화)

  • An, Sojin;Lee, Edwald;Choe, Eunok
    • Korean Journal of Food Science and Technology
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    • v.46 no.2
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    • pp.127-134
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    • 2014
  • This study was performed to evaluate the effects of sesame oil addition to a tuna oil-enriched emulsion during chlorophyll-photosensitized oxidation. The emulsion principally consisted of tocopherol-stripped canola and tuna oil with or without sesame oil, acetic acid, phospholipids, and xanthan gum. Chlorophyll b was added to promote the production of singlet oxygen upon exposure to light. The oxidation of oil in the emulsion was evaluated by determining the peroxide value (POV) and conjugated dienoic acid (CDA) contents. Concentrations of minor compounds in the emulsion were monitored. Increasing POV and CDA contents in the emulsion were paralleled with decreased docosahexaenoic acid during oxidation, and oxidation was inhibited by the addition of sesame oil. Chlorophyll, polyphenols, tocopherol, and phospholipids were degraded during oxidation of the emulsion; however, their degradation was slowed down by the addition of sesame oil. Lignans in the emulsions containing added sesame oil were barely changed, suggesting that they quenched singlet oxygen physically. Polyphenols were the most effective in improving the stability of tuna oil-enriched emulsions during chlorophyll-photosensitized oxidation.

Antioxidant Activity of Lignan Compounds Extracted from Roasted Sesame Oil on the Oxidation of Sunflower Oil

  • Lee, Jin-Young;Kim, Moon-Jung;Choe, Eun-Ok
    • Food Science and Biotechnology
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    • v.16 no.6
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    • pp.981-987
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    • 2007
  • Effects of lignan compounds (sesamol, sesamin, and sesamolin) extracted from roasted sesame oil on the autoxidation at $60^{\circ}C$ for 7 days and thermal oxidation at $180^{\circ}C$ for 10 hr of sunflower oil were studied by determining conjugated dienoic acid (CDA) contents, p-anisidine values (PAV), and fatty acid composition. Contents of lignan compounds during the oxidations were also monitored. ${\alpha}$-Tocopherol was used as a reference antioxidant. Addition of lignan compounds decreased CDA contents and PAY of the oils during oxidation at $60^{\circ}C$ or heating at $180^{\circ}C$, which indicated that sesame oil lignans lowered the autoxidation and thermal oxidation of sunflower oil. Sesamol was the most effective in decreasing CDA formation and hydroperoxide decomposition in the auto- and thermo-oxidation of oil, and its antioxidant activity was significantly higher than that of ${\alpha}$-tocopherol. Sesamol, sesamin, and sesamolin added to sunflower oil were degraded during the oxidations of oils, with the fastest degradation of sesamol. Degradation of sesamin and sesamolin during the oxidations of the oil were lower than that of ${\alpha}$-tocopherol. The results strongly indicate that the oxidative stability of sunflower oil can be improved by the addition of sesamol, sesamin, or sesamolin extracted from roasted sesame oil.

Studies on the Contents of Special Components and Estimation of Purity of Sesame Oil II (참기름의 특이 성분 함량과 순도 결정에 관한 연구(제2보))

  • 노일협;임미애
    • YAKHAK HOEJI
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    • v.27 no.2
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    • pp.169-176
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    • 1983
  • The verification of genuine sesame oil can be examined by determination of the ratio of fatty acid. Fatty acids were extracted from the saponifiable substance of sesame oils. Fatty acids were methylated with the 14% boron trifluoride methanol solution and injected into a gas chromatograph with Unisole 3000 column and finally determined the molecular weight by mass spectrometry. The fatty acids in laboratory prepared sesame oils were composed mainly of oleic acid 36.7-42.8% and linoleic acid 39.0-46.6%, including palmitic acid 7.9-9.l%, stearic acid 4.1-5.6%, linoleic acid 0.1-3.0%, arachidic acid 0.5-1.0% and eicosenoic acid 0.1-0.5%. The above results allow the estimation of genuine sesame oil, mixed with rape seed oil, soybean oil, perilla oil, etc. In 53 samples, 14 samples were estimated as genuine and it was found that erucic acid was contained in 31 samples, linoeic acid was highly contained in 14, high quantity of linolenic acid was in 7 and palmitic and oleic acid were highly involved in 3.

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Studies on Quality Evaluation of Current Sesame Oils Sold in Markets (시중 유통참기름의 품질평가에 관한 연구)

  • 박재홍;김순천;조성완;김은선;최경철;김영국;임태곤
    • Journal of Food Hygiene and Safety
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    • v.6 no.1
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    • pp.57-66
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    • 1991
  • In the present study, an attempt was made to use FV (Fatty acid ratio & Villavecchia reaction) value determination as a reliable method for the detection and analysis of the adulteration of sesame oils. FV value was defined as fatty acid ratio, C18 : I + C18 : 2/C16 : ${\times}C18$ : 3, times modified Villavecchia-Suarez test value. Seventy-four sesame oils collected from markets were evaluated using this method. Only II among 74 collected sesame oils were found to be pure sesame oil by FV value determination. In 63 adulterated sesame oils, it was revealed 23 samples were adulterated soybean oil, to with rice bran oil, 10 with sesame dregs extract oil, 8 with perilla seed oil, 7 with corn oil, 3 with cotton seed oil, and 2 with rape seed oil.

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The effects of sesame oil and different doses of estradiol on testicular structure, sperm parameters, and chromatin integrity in old mice

  • Mohammadzadeh, Masoomeh;Pourentezari, Majid;Zare-Zardini, Hadi;Nabi, Ali;Esmailabad, Saeed Ghasemi;Khodadadian, Ali;Talebi, Ali Reza
    • Clinical and Experimental Reproductive Medicine
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    • v.48 no.1
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    • pp.34-42
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    • 2021
  • Objective: Studies of the effects of estrogens on the male reproductive system have emphasized the role of these hormones in male fertility. Sesame oil has many phytoestrogenic compounds and may improve male fertility. This study investigated the effects of sesame oil and different concentrations of estrogen on sperm parameters and DNA integrity in male mice. Methods: Twenty old NMRI (The Naval Medical Research Institute) male mice (40 weeks; weight, 30-35 g) were treated with sesame oil or different concentrations of estrogen (estradiol, 1 and 10 μL/kg/day) or received no treatment (controls). After 35 days, sperm parameters and DNA integrity were assessed and analyzed. Results: Sperm count, progressive motility, and morphology were decreased in the group that received 10 μL/kg of estradiol. A remarkably lower percentage of DNA fragmentation and protamine deficiency were detected in the group that received 1 μL/kg of estradiol. In the groups that received sesame oil and 1 μL/kg of estradiol, the numbers of spermatogonia and Leydig cells were higher than in controls. The combination of sesame oil and 1 μL/kg of estradiol led to improved sperm parameters and chromatin and testicular structure. Conclusion: Based on this study, consumption of sesame oil and a low concentration of estradiol may improve testicular function in older mice.

Detection of Adulteration of Sesame Oil (II). Chromatographic Determination of Rapeseed Oil in Sesame Oil (참기름의 진위판정에 관하여(II) 참기름중의 채종유의 검출)

  • 천석조;임영희;송인상;노정배
    • Journal of Food Hygiene and Safety
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    • v.3 no.3
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    • pp.105-109
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    • 1988
  • To develop a method for detecting and e&timating the quantity of adulterant rapeseed oil in sesame oil, five kinds of sesame oils and three kinds of rapeseed oils collected from different sources were fractionated by TLC (thin layer chromatography) and separated on the basis of PN (partition number) by HPLC (high performance liquid chromatography). These obsenations indicate that the proportion of adulterant rapeseed oil when mixed minimum 4% with sesame oil can be detected.

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Influence of Lipids on Blood Cholesterol Level of Chicks and Ducks (닭과 오리의 Blood Cholesterol Level에 미치는 지방의 영향)

  • Chung, Yung-Tai;Nam, Hyun-Keun
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.7 no.2
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    • pp.29-34
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    • 1978
  • It was conducted to find out that the influence of lipids on blood cholesterol level of chicks and ducks. In this experiments, a comparative study was carried out using chicks and ducks divided into four groups with various diet for the period of four weeks. The results were as follows: 1. The mean value of hematocrit was significantly lower for the chicks fed sesame oil and soybean oil than the chicks fed duck meat. The value of hematocrit was higher for the ducks fed sesame oil, soybean oil and duck meat than for the control group. 2. Blood glucose level was higher for the ducks group than the chicks group. It was lower blood glucose level for the chicks and ducks fed duck meat than any other groups. 3. Blood cholesterol level was lower for the chicks fed sesame oil, soybean oil, and duck meat than for those fed the basal diet(control group). In the ducks group, blood cholesterol level was high. But in the liver organ, it was lower blood cholesterol level for the chicks and ducks fed sesame oil, soybean oil and duck meat, respectively than for those fed the basal diet(control group). 4. Phospholipid of the chicks which were control groups was lower value than for those fed sesame oil and duck meat fed, the value of phospholipid was higher value.

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Benzo(a)pyrene Reduction in Sesame Oil Using Microwaving Method (Microwaving을 이용한 참기름의 Benzo(a)pyrene 저감화)

  • Oh, Sung-Cheon
    • Journal of the Korean Applied Science and Technology
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    • v.29 no.2
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    • pp.323-329
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    • 2012
  • Sesame oil has superior oxidation stability and unique roasting flavor. Accordingly, this has been used for edible oil as well as a seasoning material for a long time in Korea. But sesame oil is a simple pressed oil, unrefined. During manufacturing process of roasting-expression, benzo(a)pyrene[B(a)P] formed as a strong carcinogenic substance causes a social problem. Detection of B(a)P in sesame oil was due to residual content in raw-sesame seeds and formation in roasting-expressing process. Especially, maximal forming process was roasting. Accordingly, in this study applied the traditional roasting method by roaster and microwaving method as a new type. Best roasting time by microwaving was for 5~10 min, B(a)P content in sesame oil was 0.53~0.79 ${\mu}g/kg$. These B(a)P contents showed 1/2 level than direct roasting method by roaster. As a result, B(a)P contents in sesame oil appeared the difference of more than 2 times according to roasting condition of sesame seed. For minimizing of B(a)P content in sesame oil is demanded roasting of sesame by microwaving than direct roasting by roaster.