• Title/Summary/Keyword: sesame protein concentrate

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Functional Properties of Sesame Protein Concentrates Produced by Ultrafiltration (한외여과에 의해 제조된 참깨박 농축단백질의 기능적 특성)

  • 전정례;박정룡
    • Journal of the East Asian Society of Dietary Life
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    • v.10 no.5
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    • pp.394-403
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    • 2000
  • The functional properties of sesame protein concentrate(SPC) using different size of ultrafiltration(UF) membranes were examined and compared with those of conventional acid-precipitated sesame protein concentrate. The protein contents of SPC by UF with molecular size of 10K, 30K and look dalton membranes were 84.2%, 82.7%, and 76.4%, respectively, and that of acid-precipitated SPC was 88.7%. The nitrogen solubility of SPC by UF was higher than that of conventional SPC at various pH levels. Especially, it showed three-fold increase at near isoelectric point. However, water absorption capacity and fat absorption capacity of SPC by UF were decreased. For emulsion and foam properties, there were no significant differences between SPC by acid precipitation and SPC by UF method. At various pH levels, SPC by membrane with pore size of 30K dalton showed the highest emulsion properties. The SPC by UF had slightly higher viscosity than defatted sesame flour and SPC by acid precipitation.

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functional Properties of Sesame Protein Concentrate as Degree of Hydrolysis by Enzyme Treatments (효소처리한 참깨박 농축단백질의 가수분해정도에 따른 기능성)

  • 윤시혜;박정륭;전정례
    • Journal of the East Asian Society of Dietary Life
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    • v.4 no.3
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    • pp.87-96
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    • 1994
  • This study was carried out to investigate the effect of hydrolysis by proteolytic enzymes on the functional properties of sesame protein concentrate. Sesame protein concentrate was hydrolyzed with papain, pepsin and trypsin to obtain 10% and 20% degree of hydrolysis. The nirogen solubility in water was increased with increasing the degree of hydrolysis. Bulk density was increased by enzymatic hydrolysis but water absorption capacity was increased only in the case of pepsin-hydrolyzed SPC. Higher fat absorption capacity was found in SPC with 10% DH than SPC with 20% DH. Emulsifying activity was also increased by enzymatic hydrolysis except SPC with 10% DH by papain.

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Effect of Reduction of Phytate and Phenol Compound on the Functional Properties of Sesame Protein Concetrate (참깨박에 함유된 Phytate와 Phenol 화합물의 제거가 단백질의 기능성에 미치는 영향)

  • Kim, Jin;Park, Jyung-Rewng
    • Journal of the East Asian Society of Dietary Life
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    • v.3 no.2
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    • pp.129-137
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    • 1993
  • This study was attempted to determine the effect of reduction of phytate and phenol compound on the functional properties of sesame protein concentrate. The concentrates were prepared by using dist-water, HCI and butanol. The content of phytate and phenol compound in defatted sesame meal were 4.55% and 3.42% respectively. Considerable amount of phytate was reduced by using HCI, and butanol was effective in removing phenol compounds, Higher bulk density and fat absorption were found in sesame protein concentrate prepared by butanol but higher water absorption was found in the concentrate prepared by dist-water. Also, emulsifying and foaming properties were improved by butanol treatment.

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Effect of Sodium Hexametaphosphate on the Extractability of Sesame Meal Protein and Amino Acid Composition and Color of Its Protein Concentrate (Sodium Hexametaphosphate처리가 참깨박 단백질의 추출성과 농축단백질의 색도 및 아미노산 조성에 미치는 영향)

  • 이정수;박정륭
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.6
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    • pp.758-762
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    • 1993
  • The effect of sodium hexametaphosphate(SHMP) on the extraction of defatted sesame meal protein and the color and amino acid composition of protein concentrate have been studied. The highest amount of protein could be extracted with 1.5% SHMP and the extraction was effective at pH 12.0. The extraction rate tended to increase with increasing the flour to solvent ratio and about 60% of protein was obtained when adjusted the ratio to 1 : 40. Color of sesame protein concentrate was slightly improved by SHMP treatment. Lysine and methionine content were decreased in SHMP-treated protein concentrate but valine and leucine content were increased.

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Effect of Ultrafiltration on the Components of Sesame Protein Concentrates (한외여과가 참깨박 농축단백질의 성분에 미치는 영향)

  • Jeon, Jeong-Ryae;Park, Jyung-Rewng;Kim, Jin;Yoon, See-Hye
    • Journal of the East Asian Society of Dietary Life
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    • v.5 no.2
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    • pp.63-71
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    • 1995
  • Defatted sesame flour is the by-products obtained after oil extracting process. Although this flour has high quality and quantity of protein its use is limited only for animal feed and fertilization. Sesame seeds contain antinutrients such as oxalate, phytate and phenol compounds and these compounds lower their nutritive value. recently, ultrafiltration(UF) has been used to concentrate protein from various food sources. This study was carried out to examine the effects of UF with different membrane pore size on the components of sesame protein concentrates including antinutrients and to compare with that of conventional acid-precipitated sesame protein isolate. The protein contents of sesame protein concentrates prepared by JF using 10K, 30K, 100K were 84.2%, 82.7%, 76.4% and the protein yields were 36.44%, 34.69, 31.43% and the protein contents was 88.7% Alkali extraction process at pH 9.0 followed by UF technique reduced oxalate and phytate content. There were 85% and 94% reduction of oxalate and phytate content by UF with membrane pore size of 100K daltons, respectively. However, the content of total phenol compounds was not reduced by this method. About 99% of calcium and 50% of zinc were removed by UF with membrane of 100K daltons. total essential amino acid contents of sesame protein concentrates prepared by UF were decreased slightly when compared with acid-precipitated sesame protein concentrate.

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The Effect of Protein Extraction pH on the Functional Properteis of Seasame Protein Concentrates (단백질 추출 pH가 참깨 농축단백질의 기능적 특성에 미치는 영향)

  • 박정륭;김은정
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.4
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    • pp.619-624
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    • 1995
  • Sesame protein concentrate(SPC) was prepared from defatted sesame flour(DSF) at several different pH(2.0, 7.0, 9.0, 11.0) for protein extraction. Some of their functional properties were determined in order to compare the effects of pH during preparation of concentrates. Compared with DSF, nitrogen solubility was markedly improved in all SPC, and SPC extracted at pH 11.0 showed the highest solubility at all pH leaves examined. Fatabsorption was increased in all SPC prepared, but water absorption was decreased as the extraction pH of protein increased. The emulsifying properteis and foaming properties of SPC were remarkably higher than DSF. As the extraction pH of protein was increased, the emulsion activity was also increased, but emulsion stability was decreased. SPC extracted at pH 7.0 showed the highest foaming capacity on the other hand, the highest foaming stability was shown in SPC extracted at pH 2.0. As the protein extraction pH increased, the viscosity of the protein solution was increased. SPC extracted at pH 11.0 showed highest viscosity at all protein concentrations tested.

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The Effect of Protein Extraction pH on the Components of Sesame Protein Concentrates (단백질 추출 pH가 참깨 농축단백질의 성분에 미치는 영향)

  • 박정륭;김은정
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.4
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    • pp.613-618
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    • 1995
  • This study was carried out to investigate the effect of extracting pH on the components and color of seasame protein concentrate(SPC). The protein contents of SPC by extracted at pH 2.0, 7.0, 9.0 and 11.0 were 60.57, 67.72, 79.50 and 83.44%, respectively. Most of the phytates were removed in SPC extracted at pH 7.0, 9.0 and 11.0, but the phytate content of SPC extracted at pH 2.0 was about the same as that of defatted sesame flour. The highest decrease of phytate was found in SPC extracted at pH 11.0(94.80%). SPC extracted at pH 2.0 contained the highest amount of Ca, Mg, Fe and Zn than those in other SPC prepared, while highest amount of Cu was found in SPC extracted at pH 11.0. Sodium content was similar among all the SPC prepared. SPC extracted at pH 7.0 resulted in brighter clor, but SPC extracted at pH 11.0 showed a little darker in appearance.

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THE USE OF MULTINUTRIENT BLOCK SUPPLEMENTED TO UREA TREATED RICE STRAW BASE DIET FOR DAIRY HEIFERS

  • Cheva-Isarakul, B.;Promma, S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.8 no.2
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    • pp.113-118
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    • 1995
  • Eighteen Holstein Friesian ${\times}$ Native heifers with an average live weight of $175.4{\pm}27.8kg$ were allotted to 3 dietary groups. All animals were kept individually in a stanchion barn with free access to water and urea-treated rice straw (UTS). The supplemented feeds were as follows: Group (Gr) 1 - concentrate mixture (15% CP) at 1% body weight (BW), Gr 2 - concentrate mixture at 0.7% BW + free licking of multinutrient block (MNB), Gr 3 - as Gr 2 + 0.3% BW ground com. Multinutrient block composed of 20% mineral mixture, 10% urea, 18% molasses, 20% soybean meal, 22% sesame meal, 10% cement, 0.15 million IU and 50 IU/kg MNB of vitamin A and E. The experimental period lasted 12 weeks. The result revealed that MNB enhanced intake of UTS and total dry matter intake. Animals in Gr 3 consumed a higher amount of feed than the other 2 groups, thus resulting in the highest live weight gain and tended to possess the best feed conversion ratio. Heifers in Gr 2 also performed better than Gr 1 although the difference was not significant. Average MNB intake found to be 0.65 kg/day. Feed cost per kg gain was not significantly different amon groups. However if the cost of MNB could be lower, it would benefit the production cost of animals. The advantage of MNB is the safety of using a high level of urea. Although it was supplemented to UTS which also contained non-protein nitrogen (NPN), no toxic sign was shown. The results indicated that MNB could be partially substituted to concentrate mixture and it was even better when used incombination with soluble carbohydrate feed.

STUDIES ON THE UTILIZATION OF ANTARCTIC KRILL 2. Processing of Paste Food, Protein Concentrate, Seasoned Dried Product, Powdered Seasoning, Meat Ball, and Snack (남대양산 크릴의 이용에 관한 연구)

  • PARK Yeung-Ho;LEE Eung-Ho;LEE Kang-Ho;PYEUN Jae-Hyeung;KIM Se-Kweun;KIM Dong-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.13 no.2
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    • pp.65-80
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    • 1980
  • Processing conditions of the krill products such as paste food, krill protein concentrate, seasoned dried krill, powdered seasoning, meat ball, and snack have been examined and the quality was evaluated chemically and organoleptically. In the processing of paste food, krill juice was yielded $71\%$ and krill scrap $29\%$. The yields of paste and broth from the krill juice showed $53\%$ and $43\%$, respectively. In amino acid composition of the krill paste, proline, glutamic acid, aspartic acid, lysine, and leucine were abundant, while histidine, methionine, tyrosine, serine and threonine were poor. The optimum condition for solvent extraction in the processing of krill protein concentrate was the 5 times repetitive extraction using isopropyl alcohol at $80^{\circ}C$ for 5 mins. The yield of krill protein concentrate when used fresh frozen materials was $10.2\%$ in isopropyl alcohol solvent and $8.8\% in ethyl alcohol, and when used preboiled frozen materials, the yield was $13.0\%$ in isopropyl alcohol and $11.8\%$ in ethyl alcohol. Amino acid composition of krill protein concentrate showed a resemblance to that of fresh frozen krill meat. In quality comparison of the seasoned dried krill, hot air dried krill was excellent as raw materials and sun dried krill was slightly inferior to hot air dried krill, but preboiled frozen krill showed the poorest quality. The result of quality evaluation for seasoning made by combination of dried powdered krill, parched powdered sesame, salt, powdered beef extract, monosodium glutamate, powdered red pepper and ground pepper showed that the hot air dried krill was good in color and sundried krill was favorable in flavor. When krill meat ball was prepared using wheat flour, monosodium glutamate and salt as side materials, the quality of the products added up to $52\%$ of krill meat was good and the difference in quality upon the results of the organoleptic test for raw materials was not recognizable between fresh frozen and preboiled frozen krill. In the experiment for determining the proper amount of materials such as dried Powdered krill, $\alpha-starch$, sweet potato starch, sugar, salt, monosodium glutamate, glycine, potassium tartarate, ammonium bicarbonate, and sodium bicarbonate in processing krill snack, sample B(containing $7.7\%$ of dried powdered krill) and sampleC (containing $10.8\%$ of dried powdered krill) showed the most palatable taste from the view point of organoleptic test. Sweet potato starch in testing side materials was good in the comparison of suitability for processing krill snack. Corn starch and kudzu starch were slightly inferior to sweet potato starch, while wheat flour was not proper for processing the snack. In the experiment on frying method, oil frying showed better effect than salt frying and the suitable range of frying temperature was $210-215^{\circ}C$.

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