• Title/Summary/Keyword: Capsicum oleoresin

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Studies on Oleoresin Product from Spices 1. Extraction of Red Pepper Oleoresin (향신재료를 이용한 Oleoresin 제조에 관한 연구 1. 고추 Oleoresin의 추출)

  • 배태진;최옥수;박재림;김무남;한봉호
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.20 no.6
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    • pp.603-608
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    • 1991
  • To improve the utilization of red pepper, the extracting conditions of oleoresin, such as kind of solvents, particle sizes of a sample, sample to solvent ratios, extraction temperatures and times, were studied. Among eight solvents used for oleoresin extraction from red pepper, the optimal solvent was acetone. The most appropriate particle size of red pepper powder, extracting temperature and mixing ratio of red pepper to acetone were 100 mesh, $25^{\circ}C$ and 1 to 3(w/w), respectively. The basis of yield in oleoresin extraction, optimum extracting time was about 5 hours. The yield of oleoresin under the above-mentioned conditions was 18.7%.

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Emulsification Stability of Oleoresing Red Pepper Changes in Antioxidant Activity during Thermal Cooking (고추 Oleoresin의 유화안정성 및 가열 조리중의 항산화활성 변화)

  • 최옥수
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.1
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    • pp.104-109
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    • 1996
  • 고추의 효능을 높이기 위한 방법의 하나로 향신성 분을 보유하면서 자기저자이 가능한 oleoresin을 추출하여 유화제로 수용성을 부여시킨 후, 이때의 유화안 정성과 고온에서 조리를 하였을 때 고추 oleoresin의 항산화 활성을 검토하였다. 100mesh로 분쇄한 고추에 증류수에 가하여 감압증류시켜 정유성분을 추출하고, 잔사에 에틸 알코올을 가하여 $25^{\circ}C에서$ 3시간 진탕 추출한 후 여과, 농축시켜 정유성분과 합하였다. 여기에 물과 유화제 (PGDR)를 첨가, 유화시켜 고추 oleoresin으로 하였다. $60^{\circ}C에서$ 24시간 방치했을때의 enulsion 생성율은 PGDR을 4% 첨가한 경우가 94.5%로 가장 높았고, 또한 100분간 원심분리(200$\times$g) 시킨 후에도 emulsion 잔존율은 80%정도로서 유화안전성이 가장 좋았다. 고추 oleoresin의 항산화 활성은 가열조리 온도 100$\times$의 경우 BHA의 효과 만큼은 미치지 못하나 상당한 항상화성을 나타내었고, 온도 $150^{\circ}C의$ 경우는 BHA 첨가와 마찬가지로 항산화성 효과를 인정하기 어려웠다.

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Development of the Seasoning Oil for Replacing Red Pepper Seed Oil : Manufacturing of Red Pepper Seasoning Oil (고추씨기름 대체 향미유 개발에 관한 연구 : 제2보. 고추향미유의 제조)

  • 구본순;김덕숙
    • Food Science and Preservation
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    • v.11 no.2
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    • pp.142-147
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    • 2004
  • To develop the red pepper seasoning oil(RPSO), corn oil was used as the base oil. For generating hot taste and color, oleoresin capsicum and oleoresin paprika were mixed to base oil (SSO1). Then, for generating black red color, natural black pigment that is extracted from gardenia and kaoliang was added SSO1 to prepare SSO2. To magnify the hot taste, extract of red pepper, phosphoric salt and emulsifier (monogly 20) were. then added to SSO2 to prepare SSO3. This SSO3 was very similar to real red pepper seed oil as a color and taste, but its hot flavor was not enough. To resolve this problem, we mixed about 5% of another oil(SSO4), which was mingled and roasted red pepper powder with corn oil, to SSO3. In terms of above experiment, RPSO was obtained.

Effects of Surfactants on the Formation and Stability of Capsaicinloaded Nanoemulsions

  • Choi, Ae-Jin;Kim, Chul-Jin;Cho, Yong-Jin;Hwang, Jae-Kwan;Kim, Chong-Tai
    • Food Science and Biotechnology
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    • v.18 no.5
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    • pp.1161-1172
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    • 2009
  • Food nanoemulsion systems consisting of water and oleoresin capsicum (OC), polyoxythylene sorbitan esters (Tween 20, 40, 60, and 80), propylene glycol (PG), sucrose monostearate (SM), and their corresponding mixtures were formulated to use as food vehicles. Tween 80 produced OC nanoemulsions with stable dispersions as one-phase systems, and the dertermined emulsification efficiencies clearly distinguished the ability of the various surfactants to emulsify OC. The nanoemulsions were prepared by both ultrasonication and self-assembly, and the nanoemulsion areas were determined using phase diagrams by measuring the sizes of the emulsions. One-phase nanoemulsions were presented, with a multiple cloudy region and phase separation that were dependent on the particle size of the emulsion. The OC nanoemulsions prepared by ultrasonication using systems of OC/Tween 80/water, OC/Tween 80/water+PG, and OC/Tween 80/water+SM, resulted in particle sizes ranging from 15 to 100 nm. Finally, the nanoemulsions maintained their initial sizes during storage, ranging from 65 to 92 nm.

Addition of Capsicum oleoresin, Carvacrol, Cinnamaldehyde and their mixtures to the broiler diet II: Effects on meat quality

  • Ipcak, Hasan Huseyin;Alcicek, Ahmet
    • Journal of Animal Science and Technology
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    • v.60 no.4
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    • pp.9.1-9.11
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    • 2018
  • Background: In recent years, with the prohibition of antibiotics used as growth stimulants in the nutrition of farm animals, researchers have searched for alternative natural and reliable products in order to be able to sustain the developments experienced during the use of antibiotics and to overcome the possible inconveniences. In this context, studies on evaluation of essential oils in poultry nutrition have been reported to improve the utilization of feed, stimulate the release of digestive enzymes, increase absorption in the stomach and intestines, antimicrobial and anti-parasitic effects and thus, can be an alternative to antibiotics and improve meat quality as well. Indeed, this study has been carried out to explore the effects of the addition of 150 mg/kg capsicum oleoresin (CAP), carvacrol (CAR), cinnamaldehyde (CIN) or their mixture (CAP+CAR+CIN) into the broilers' ration over sensory, physical and chemical properties in breast meat and leg meat. Methods: Experiments were conducted over 400 male and female broiler chicks (Ross-308) in 5 groups (1 control group and 4 treatment groups), each composed of 80 chicks. The control group was fed without feed additives while the second, third, fourth and the fifth groups were fed with 150 mg CAP/kg feed, 150 mg CAR/kg feed, 150 mg CIN/kg feed, and 150 mg CAP+CAR+CIN/kg feed, respectively. Results: Addition of CAP, CAR, CIN or CAP+CAR+CIN had effects on the sensory (of taste, tenderness, juiciness and overall acceptability); physical properties (of $L^*$ value and toughness), the chemical properties (of DM, CF, CP, linoleic, EPA, behenic, MUFA, PUFA and ${\Sigma}n-6$ of the leg meat), the physical characteristics (of toughness and firmness), and the chemical properties (of CF, CP, linoleic, ecosenic, EPA, lignoseric, MUFA and ${\Sigma}n-3$) of the breast meat in comparison to control group. Furthermore, while the treatments had positive impacts on thawing loss, cooking loss and water holding capacity in both breast and leg meat; no effect was observed on pH value and lipid oxidation on day 1, day 4 and day 8. Conclusion: The results strongly suggested that the addition of CAP, CAR, CIN or CAP+CAR+CIN to the rations of the broiler chicks changed the sensory, physical and chemical properties of breast and leg meat. It was also observed that these compounds were more effective when they were added to the ratio as a mixture rather than adding them individually.

A New Method for Analysis of Capsaicinoids Content in Microcapsule. (미세캡슐내의 캡사이시노이드의 새로운 분석법)

  • Jung, Jong-Min;Kang, Sung-Tae
    • Korean Journal of Food Science and Technology
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    • v.32 no.1
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    • pp.42-49
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    • 2000
  • A new method for the quantitative determination of capsaicinoids in microcapsule has been developed. Among seventeen solvents tested for solubilizing wall material (gum arabic and modified starch) of microcapsule, dimethyl sulfoxide (DMSO) was selected as an optimal solvent. The most appropriate mixing ratio of microcapsule to DMSO for solubilizing wall material was 1 to 10(w/v). Appropriate carriersolubilizing temperature and time were $55^{\circ}C$ and 30 min, respectively. Also conditions for extracting oleoresin from the solubilized microcapsule were studied. The mixing ratio of ethanol to DMSO was optimal at 8 to 1(v/v). Optimized vortexing time was 5 min at 40㎐. Pecipitant was obtained by centrifugation at 21000 rpm for 15 min. The precipitant was reextracted with ethanol. The extracted supernatants were combined and adjusted to final volume of 25 ml. Extracted solutions were analyzed for quantitation of total capsaicinoids by employing HPLC and for quantitation of total carotenoids by spectrophotometric method. This method can be used to monitor changes of capsacinoid during manufacturing or storage of red pepper oleoresin microcapsule powder.

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Studies on the Taste Sensitivity and Eating Habits of Koreans (한국인(韓國人)의 맛에 대한 감도(感度)와 식습관(食習慣)에 대한 연구(硏究))

  • Chung, Byung-Sun;Kang, Kun-Og;Lee, Jung-Kun
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.13 no.1
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    • pp.86-96
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    • 1984
  • In order to provide basic data for food processors and to improve eating habits and healthy diets, four primary tastes and hot taste threshold of Koreans, physio-chemical properties of foods and food preference were investigated. The results of this study were as follows; 1. The recognition threshold concentration of four primary tastes was 0.016 % of salt, 0.245${\sim}$0.249 % of sweet, 0.004${\sim}$0.008 % of sour and 0.008${\sim}$0.012 % of bitter. Threshold concentration of hot taste was 170,000${\sim}$600,000 Scoville Heat Unit(S.H.U.) 2. The most acceptable tastes were 0.3 % saltiness in 0.375 % broth(at $60^{\circ}C$), 6 % sweetness in 2 % instant coffee(at $60^{\circ}C$) and 19.3 sugar-acid ratio(16.8 brix/0.8736 % citric acid) in 100 % valencia orange juice(at $20^{\circ}C$). 3. The salt concentrations of soup were 1.127 % in average. S. H. U. (scale of hot taste) of soybean sprout soup and spinach bean paste soup ranged between 12,500 and 47,500 equivalent to oleoresin capsicum content of 1.990${\sim}$5.911 (mg %). 4. 'Jigae' (Korean style stew) was the most favorable food and it was revealed that the father influences the formation of his children's eating habits.

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Preparation and Stability of Capsaicin-loaded Nanoemulsions by Microfluidazion (미세유동화법으로 제조한 캡사이신 함유 나노에멀션의 안정성)

  • Kim, Min-Ji;Lee, Soo-Jeong;Kim, Chong-Tai
    • The Korean Journal of Food And Nutrition
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    • v.29 no.6
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    • pp.985-997
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    • 2016
  • The objectives of this study, which filled gaps in previous studies, were: (1) to find the optimal mixing condition of nanoemulsions containing oleoresin capsicum (OC), Tween 80, propylene glycol (PG), and sucrose monostearate (SES) by microfluidization; (2) to investigate their properties and stability depending on such factors as pH, temperature, and heating time; (3) to measure the effect of adding ascorbic acid. In order to test these objectives, the following three experiments were conducted: Firstly, in order to find the optimal mixing ratio, nanoemulsions containing OC - the mean diameter of which is smaller than 100 nm - were prepared through the process of microfluidization; and their mean particle size, zeta potential, and capsaicinoids were measured. The test results indicated that the mixing ratio at OC : Tween 80 : PG + water(1:2) = 1 : 0.2 : 5 was optimal. Secondly, the properties and stability of nanoemulsions were investigated with varying parameters. The test results illustrated that single-layer nanoemulsions and double-layer nanoemulsions coated with alginate were stable, irrespective of all the parameters other than/except for pH 3. Thirdly, the properties of nanoemulsions were then analyzed according to the addition of ascorbic acid. The results demonstrated that the properties of single-layer nanoemulsions were not affected by addition of ascorbic acid. In case of alginate double-layer nanoemulsions, the particle size was reduced, and zeta potential increased with the addition of ascorbic acid. In conclusion, the demonstrated stability of various nanoemulsions under the different conditions in the present study suggests that these findings may constitute a basis in manufacturing various food-grade products which use nanoemulsions-and indicate that food nanoemulsions, if adopted in the food industry, have the potential to satisfy both the functionality and acceptability requirements necessary to produce commercially marketable food-grade products.