• Title/Summary/Keyword: free acid

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시판 쌈장의 품질 특성 (The Study on the Characteristics of Commercial Samjangs)

  • 서정숙;이택수;신동빈
    • 한국식품영양과학회지
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    • 제30권3호
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    • pp.382-387
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    • 2001
  • Characteristics of six commercial samjangs were analyzed such as proximate composition, free amino acids, organic acids and free sugars. Also color, taste and odor were evaluated by 36 panelists. They were composed of moisture content 41.4-48.4%, crude protein 9.2-10.4%, crude fat 2.2-3.4%, pH 5.3-5.7, amino nitrogen 194.0%-375.6 mg% and sodium chloride 7.7-9.1%. Total free amino acids of samjangs were 975.89-2304.98 mg%. Glutamic acid was the highest amino acid among free amino acids as 231.7-788.01 mg%. Proline, arginine, alanine and lysine were higher than other free amino acids while histidine, cystine and methionine were lower than other. Eleven free amino acids including glutamic acid were the highest in samjang (B) which contained more doenjang than any other makers did. Total organic acids were 401.01-640.27 mg%. 69.65-269.07 mg% of succinic acid was the highest among organic acids. Lactic acid was the highest in samjang (F) which was home made. Total free sugars was the highest in samjang (A) which contained more wheat flour than any other makers did it. Glucose was 9.30-23.99% and fructose was nd-2.69%. The result of proximate composition showed a different pattern comparing with that sensory evaluation. Samjang (A) which contained less salt showed the highest overall acceptability while samjang (F) which contained more dark color, more salt was the lowest one among the samples.

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발효단백질의 유리아미노산 정량 (Conditions of Quantitative Analysis for free Amino Acid in Fermented Proteins)

  • 류홍수;문정혜;이강호
    • 한국식품영양과학회지
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    • 제17권2호
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    • pp.136-143
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    • 1988
  • 발효단백질 중의 유리아미노산을 효과적으로 정량하기 위하여 정량방법(추출조건, 제단백(除蛋白) 및 발색법)에 따른 영향을 검토하였다. 낙농발효품의 수용성 유리아미노산은 $75^{\circ}C$, 40분, 대두발효품은 $40^{\circ}C$, 3시간에서 효과적으로 추출되었다. 여러 침전방법(95% ethanol 처리, $100^{\circ}C$, 3분 가열 및 1% picric acid phthaldialdehyde로 발색시켜 D.L.-lysine을 표준아미노산으로 삼아 정량, 계산하였을 때가 아미노산자동분석기에 의한 결과에 가장 접근하였으나 ethanol로 침전시킨 뒤 OPDA로 발색시킨 결과도 이와 유사하였다. TNBS(2,4,6-trinitrobenzensulfonic acid)에 의한 발색정량에는 ethanol 침전처리가 가장 효과적이었으나 종래의 동감법(銅監法)(copper salt method, Spies and Chamber, 1958.)에 의한 결과는 다른 비색정량 및 아미노산자동분석기에 의한 결과에 비하여 시료에 따른 과소의 차이가 심하였고 재현성이 결여되었다.

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Chemical and Textural Properties in Commercial Fermented Soybean Curds of Sufu

  • Kim, Joo-Shin;Lu, Ying;Chung, Hau-Yin
    • Preventive Nutrition and Food Science
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    • 제16권1호
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    • pp.55-61
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    • 2011
  • A survey aiming to find out the chemical and textural properties of commercial fermented soy bean curd called sufu was conducted. Sixteen brands of plain sufu produced in the Northern or the Southern part of China were collected and examined for their crude protein, crude fat, texture profiles, free amino acids, and free fatty acid contents. Twenty-one free amino acids were extracted and derivatized using a commercial kit followed by separation and analyzed by the gas chromatography-mass spectrometry (GC-MS). Similarly, ten free fatty acids were extracted using alumina, eluted, separated and analyzed. The content ranges of crude fat and protein were 22~36% and 31~38%, respectively. In texture profile analysis, ranges of the texture parameters were 131~493 g (hardness), 0.4~0.5 (cohesiveness), -137 to -50 gs (adhesiveness), 0.6~1 (springiness), 47~220 g (gumminess) and 32~177 g (chewiness). Twenty-one different free amino acids, especially alanine, glycine, $\alpha$-aminobutyric acid, valine, leucine, allo-isoleucine, aspartic acid, glutamic acid and lysine in large amount, as well as ten fatty acids in total, notably linoleic acid (9-octadecanoic acid), oleic acid (9,12-octadecadienoic acid), linolenic acid (9,12,15-octadecadienoic acid), hexadecanoic acid and octadecanoic acid were found. This information provides important quality reference ranges for product developers and manufacturers to optimize and produce the plain sufu.

미생물의 세포생리에 미치는 전이방사선의 영향에 관한 연구(제 3보) - 효모균의 단백질함량 및 Free Amino acid Pool 에 대한 $\gamma$-ray 의 영향 (Studies on the Cellular Metabolism in Microorganisms as Influenced by Gamma-irradiation.(III) On the Changes of Protein content and Free Amino acid Pool in Yeast cells irradiated by $\gamma$-ray.)

  • 김종협
    • 미생물학회지
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    • 제5권2호
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    • pp.79-85
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    • 1967
  • Kim, Jong Hyup., (Div. of Biology, Atomic Energy Research Institute,Korea.;) Studies on the Cellulor Metabolism in Microorganisms as influenced by Gamma-irradiation(III): On the Changes of Free Amino acid Pool and content of Protein in Yeast clls irradiated by .gamma.-ray. 1. The strain of Saccharomyces cerevisiae had been cultured synchronously in aerobic condition and irradiatel by gamma-ray from the source of cobalt-60. Drying in vacuum oven at $90^{\circ}C$ C over 12 hours, then changes of protein content (Kjeldahl) and free amino acid pool have been assayed with use of spectrophotometer. Results obtained were compared with those of unirradiated normal cells. 2. It is proved that amount of protein content in the irradiated cells increases to seven percent more than those of normal cells in the same weight of dried samples. It seems like carbohydrate breakown had been stimulated by irradiation and that relative contents of protein shows higher values than those of normal in the same weight of samples. 3. The amount of free amino acid pool in the irradiated cells shows less value about ten percent than those of normal cells, and rate of decreasing is also weak than those of standard reagent solution of amino acid. We may assume that free amino acid pool would be protected against radiation damage in living cells and more stable than in vitro. 4. The component of free amino acid pool have been assayed on second dimensional paper chromatogram, and the identified amino acids are as follows; aspartic acid, serine, glutamic acid, cystine, lysine, glycine, threonine, histidine, arginine, tyrosine, phenylalanine, valine and leucine. 5. Distributional presence of free amino acids are identical to that of normal cells except arginine, it is cosumable that radiation effect is univerlsal to all amino acid. However it is obvious that there are differences in radiolabilities of amino acids in irradiated cells.

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소나무 수피(樹皮)의 총합적(總合的) 이용(利用)(II) -Mg- 및 Na-base 산성(酸性) 아황산염(亞黃酸鹽) 증해(蒸解) 특성(特性)- (Utilization of Pine Bark(II) -Characterization of Mg- and Na-base Acid Sulfite Cooking-)

  • 문성필;김재필
    • Journal of the Korean Wood Science and Technology
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    • 제22권1호
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    • pp.34-39
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    • 1994
  • Effects of Mg-base acid sulfite and Mg- or Na-base bisulfite on pine bark cooking were examined. In the presence of 75 % free acid at 145 $^{\circ}C$, the rate of cooking and delignification was improved with the increase of total acid. However, the delignification could not be achieved by 50 % or more under these cooking conditions. When cooked with 50~65 % free acid and at 155~165 $^{\circ}C$, the rate of cooking and delignification was remarkably improved. Thus, the bark was delignified up to 73 % when cooked for 2 hours in the presence of 50 % free acid and 24 % total acid. Na-base bisulfite was slightly more effective than Mg-base bisulfite for cooking, giving 76 % delignification of pine bark. However, there was no significant difference in selectivity of delignification between Na- and Mg-base bisulfite cooking.

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고수의 향미성분에 관한 연구 (A Study on the flavor constituents of the Coriander(Coriandrum sativum L))

  • 김경자;최옥자;김용두;강성구;황금희
    • 한국식품조리과학회지
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    • 제17권1호
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    • pp.80-90
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    • 2001
  • This study was carried out to investigate to proximate compositions, free sugars, organic acids, amino acids, and volatiles from the fresh leaf, root and seed of coriander. The research results are as follows: Moisture was 79.93% in the leaf, 81.89% in the root. Crude protein, crude lipid and crude ash were the highest in the seed. Ascorbic acid was 65.4mg% in the leaf and 37.83mg% in the root. Glucose, fructose and sucrose were the major free sugars. Glucose was 7.92mg% and fructose 7.51mg% in the leaf. Sucrose was 17.34mg% in the root, highest level. Among organic acids, malic acid was 354.55mg% in the leaf, the highest level. The content rate of organic acids was high in the order of leaf, seed and root. The content rate of total amino acid was high in the order of seed, root and leaf. Glutamic acid and aspartic acid were high in the leaf and root. Glutamic acid and proline were high in the seed. The content rate of free amino acid is the same as that of total amino acid. Glutamic acid and serine were high in the leaf and seed. Glutamic acid and treonine were high in the root. The contents of total amino acid in each parts of the coriander was higher than that of free amino acid, The composition of amino acid in the total amino acid and free amino acid was different. The volatile constituents were extracted by steam distillation method and analyzed by GC-Mass. The content of the volatile constituents was 45.31mg% in the leaf, (E)-2-decenal was the highest, followed by decanal, 2-dodecenal, (E)-2-decen-1-ol in order, aldehyde and alcohol was major constituents. The content of the volatile constituents was 36.01mg% in the root and 54.37mg% in the seed. linalool was the highest in the root and seed. it was 22.27 %, 53.67% in root and seed.

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식이내의 타우린 또는 글라이신 보강이 흰쥐의 혈장과 간의 유리아미노산 농도 및 패턴에 미치는 영향 (Effect of Dietary Taurine or Glycine Supplementation on Plasma and Liver Free Amino Acid Concentrations in Rats)

  • 박정은
    • Journal of Nutrition and Health
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    • 제31권2호
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    • pp.126-134
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    • 1998
  • Our previous study demonstrated that dietary taurine or glycine supplementation significantly lowered plasma and hepatic cholesterol and triglyceride concentrations in rats fed a cholesterol-free diet. In the present study, the effect of long term dietary taurine or glycine supplementation, for the purpose of preventing and/or treating of hyperlipidemia and other known biological functions, on plasma and hepatic free amino acid concentrations and profiles were evaluated in rats. Three groups of male rats(110-130g) were fed a control diet(CD), taurine-supplemented diets(TSD ; CD+ 1.5% taurine) or glycine-supplemented diet(GSD ; CD+1.5% glycine) for 5 weeks. Plasma and hepatic free amino acid concentrations were determined by an automated amino acid analyzer based on ion-exchange chormatography. The feeding of TSD for 5 weeks yielded a 444% higher plasma taurine concentration , and the feeding GSD for the same period resulted in a 143% higher plasma glycine level in rats compared to those fed DB. Hepatic taurine concentration was significantly higher in rats fed TSD(145% increase) compared to the control rats. However, hepatic glycine concentration was not influenced by dietary glycine supplementation , which implies that the massive dose of glycine entering the body was more rapidly metabolized or excreted than taurein. Dietary taurine or glycine supplementation resulted in similar changes in plasma free amino acid concentrations, except in levels of taurine and glycine. Plasma levels of histidine, lysine, phenylalanine , alanine, proline, hydroxypoline, $\alpha$-aminogutyric acid, cystathionine and ethanolamine were significantly higher in rats fed TSD or GSD than those fed GD. Glycine supplementation did not change hepatic free amino acid concentrations as compared to CD. Concentrations of most hepatic free amino acids were not influenced by dietary taurine supplementation with the exception of significantly higher levels of asparate and tyrosine(56-63% increase) and lower levels of histidine and glutamate(33-34% decrease) compared to the control rats. These results suggest long-term dietary taurine or glycine supplementation resulted in increases in most plasma free amino acid levels, but did not cause a characteristic change in plasma aminogram pattern compared to rats fed CD.

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혐기 또는 저온처리에 따른 보리 유식물체내 유리아미노산 및 유리산 함량의 변화 (Changes of Free Amino Acid and Free Sugar Contents in Barley Seedlings in Response to Anaerobic or Cold Treatment)

  • 윤성중;유남희
    • 한국작물학회지
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    • 제41권2호
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    • pp.139-144
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    • 1996
  • 발아후 일주일간 생육한 보리 유식물체를 이용하여 혐기처리, 저온처리 및 기계적 상처에 대한 보리 식물체의 반응양상을 유리아미노산과 유리당 함량의 변화를 분석하여 조사하였다. 혐기적처리에 반응하여 함량의 변화가 뚜렸하게 나타나는 아미노산은 alanine, GABA, glutamic acid였다. Alanlne과 GABA함량은 10시간까지의 혐기처리에 의해 급속히 증가하였으나 glutamic acid 함량은 크게 감소하는 경향을 나타내었다. 상처에 의한 alanine, GABA, glutamic acid반응 양상은 혐기처리와 유사하였으나, 함량변화 정도는 혐기처리에서 보다 훨씬 낮았다. 저온처리에 의하여 지상부와 뿌리 중의 GABA 함량이 증가하였다. 혐기적 처리에 의하여 지상부의 유리당함량이 변화하였으며, glucose나 fructose보다는 sucrose의 함량변화가 상대적으로 크게 나타났다

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HPLC에 의한 증제와 볶음 녹차 중의 유리 아미노산과 유리당의 정량 (Quantitative Analysis of Free Amino Acids and Free Sugars in Steamed and Roasted Green Tea by HPLC)

  • 고영수;이인숙
    • 한국식품영양과학회지
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    • 제14권3호
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    • pp.301-304
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    • 1985
  • 녹차의 맛을 내는데 주요 성분인 유리아미노산과 유리당을 HPLC로 분석한 결과를 요약하면 다음과 같다. 1. 16종의 유리아미노산이 검출되었다. 즉, aspartic acid, threonine, serine, glutamic acid, proline, glycine, alanine, valine, methionine, isoleucine, leucine, tyrosine, phenylalanine, histidine, lysine, arginine이 그것이었다. 2. 증제차가 볶음차보다 유리아미노산의 함량이 많았고, 녹차중에는 특히 threonine과 aspartic acid, lysine의 함량이 많았다. 3. Fructose, glucose, sucrose, raffinose등 4종의 유리당이 검출되었다. 4. 유리당은 가열시간 증가에 따라 각 성분의 함량이 현저히 감소하였다.

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천연산과 양식산 꼬막의 유리아미노산 및 지방산 조성에 관한 비교 연구 (Comparison Free Amino Acid and Fatty Acid Composition Between Wild Cockle Clam and Cultured One)

  • 주은정
    • Journal of Nutrition and Health
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    • 제20권6호
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    • pp.456-462
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    • 1987
  • Chemical composition, free amino acid and fatty acid composition of wild and cultured cockle clam were studied. 1. The content of crude protein was higher in Anadara suberenata thanthat ini Anadara granosa. The contents of crude protein and ash increased after boiling. 2 Free amino acid composition of Anadara granosa was similar to that of Anadara suberenata. Both glutamic acid and aspartic acid among free amino acid were the most abundant in cockle clam. Next, leucine, arginine and lysine were abundant in order. They all composed of approximately 50%^ of total amino acid content. Whereas the contents of cystine and methionine were poor. 3. In cockle clam the major fatty acids consisted of C16 :0, C18: 0, C18 ;1 and C18:3 in order. The level of C16 :0 was the highest in lipids. The levels of C18 : 0 and C14 :0 were higher in Anadara granosa than those in Anadara suberenata, while the levels of C16 :0, C18 :3 and C16 : 1 were higher in Amadara suberenata than those in Anadara granosa.

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