• Title/Summary/Keyword: nucleotides and related compounds

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Studies on the Processing of Low Salt Fermented Sea Foods 9. Processing Conditions of Low Salt Fermented Small Shrimp and Its Flavor Components (저식염 수산발효식품의 가공에 관한 연구 9. 저식염 새우젓의 제조 및 풍미성분)

  • LEE Eung-Ho;AHN Chang-Bum;OH Kwang-Soo;LEE Tae-Hun;CHA Yong-Jun;LEE Keun-Woo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.19 no.5
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    • pp.459-468
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    • 1986
  • This study was attempted to process low-sodium salt fermented small shrimp as substitutes for traditional high-sodium salt fermented one which has widely been favored and consumed in Korea. Low-salt fermented small shrimp was prepared with $4\%$ sodium chloride and $4\%$ potassium chloride, and various additives such as $0.5\%$ lactic acid, $6\%$ sorbitol and $4\%$ ethylalcohol extract of red pepper as preservatives and flavor enhancers. And the changes of taste compounds, volatile compounds and fatty acid composition in low-salt fermented small shrimp were analyzed and compared with those of conventional $20\%$ sodium salt fermented one during the fermentation of 120 days at $25{\pm}3^{\circ}C$. The most favorable taste for fermented small shrimp were reached at 60 days of fermentation. Judging from sensory evaluation, little difference of taste was detected between the low-salt fermented small shrimp and high-sodium salt fermented one. The principal taste compounds in fermented small shrimp were free amino acids, and betaine and nucleotides and their related compounds played an assistant role. The major amino acids in fermented small shrimp were glutamic acid, leucine, proline, glycine, lysine and aspartic acid. The major fatty acids in fermented small shrimp samples were 16:0, 20:5, 22:6, 16:1 and 18:1, and unsaturated fatty acids decreased slightly while saturated fatty acids increased during fermentation. At 60 days of fermentation 8 kinds of volatile fatty acids (acetic acid, propionic acid, isobutyric acid, butyric acid, isovaleric acid, valeric acid, isocarproic acid, carproic acid), 6 kinds of carbonyl compounds (ethanal, propanal, 2-methylpropanal, 3-methylbutanal, pentanal, 2-methylpentanal), and 3 kinds of volatile amines (methylamine, trimethylamine, isopropylamine) were identified.

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The Taste Compounds in Fermented Entrails of Clupanodon Osdeckii (전어 내장(內臟)젓 의 맛성분(成分))

  • Chung, Seung-Yong;Kim, Hee-Suk
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.9 no.1
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    • pp.23-32
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    • 1980
  • This study was attempted to establish the basic data for evaluating taste compounds in fermented entrails of Clupanodon Osdeckii. The changes of such compounds as amino acids, nucleotides and their related compounds, betaine, TMAO and TMA during fermentation were analyzed. IMP, AMP, ADP and ATP were decreased, while hypoxanthine was increased during the fermentation. The content of hypoxanthine in fermented entrails of Clupanodon Osdeckii after 50 days was increased to about 2 times of that in raw entrails. In the free amino acid composition of raw entrails, abundant amino acids were lysine, glutamic acid, valine, alanine, threonine, serine, leucine and glycine in order. Such amino acids as arginine, tyrosine and phenylalanine were lower than 2.0% of total free amino acid, and proline and cysteine were detected in trace amount. The changes in free amino acid composition of the extract in entrails of Clupanodon Osdeckii during fermentation were not observed. Such amino acids as lysine, glutamic acid, valine, serine and leucine were especially abundant in both raw and fermented products. The content of total free amino acids in fermented entrails of Clupanodon Osdeckii after 50 days were increased to about 12 times of that in raw. The content of betaine nitrogen were about 14.5 (moisture and salt free base) after 50 days of fermentation. TMAO nitrogen was decreased during the fermentation. It is believed that lysine, glutamic acid, valine, serine, leucine and hypoxanthine play an important role as taste compounds in fermented entrails of Clupanodon Oseckii.

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Screening Test(I) of Several Antipsychotic Agents on NO Formation (수종 정신병치료제들의 NO형성에 대한 검색(I))

  • Lee, Jong-Hwa;EI-fakahany, Esam E.
    • The Korean Journal of Pharmacology
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    • v.30 no.3
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    • pp.343-349
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    • 1994
  • A number of neurological syndromes(e.g. tardive dyskinesia) are developed as a consequence of chronic treatment with neuroleptics or antipsychotic agents. Despite the long and succesful use of phenothiazine derivatives and related agents in the treatment of certain states of mental disease, the mechanisms of these drugs are still poorly understood. One current hypothesis from extensive reviews is that these compounds might significantly interfere with the cyclic nucleotide system in brain (Levin and Weiss, 1977; Nowicki et al., 1991; Haley et al., 1992). Nitric oxide (NO), one of an interesting messenger molecule and aberrant transmitter, is believed to play a important role in biological functions of cyclic nucleotides in nervous system. It has been reported that calcium-dependent NO synthesis in endothelial cytosol is mediated by calmodulin which is supposed to be tightly related to pharmacological actions of antipsychotic agents. In the present study, the effect of several antipsychotic agents on the activity of NO synthesis and formation of cyclic GMP were investigated. These agents inhibited both the formation of $[^3H]L-citrulline$ and that of $[^3H]cyclic$ GMP by concentration-dependent manner, and their inhibiting patterns are so similar to that of calmodulin antagonist.

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The Components of the Sap from Birches, Bamboos and Darae (자작나무류, 대나무류 및 다래나무 수액의 성분조성)

  • 성낙주;정미자;이수정;신정혜;조종수
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.5
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    • pp.727-733
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    • 1995
  • This stduy was attempted to establish the basic data for evaluating chemical components in the sap from birches(Betula platyphylla Sukatschev, Betula costata Trautv, Betula davurica Pallas), bamboos(Phyllostachys pubescens, Phyllostachys bambusoides, Phyllostachys nigra), Darae(Actinidia arguta). Calcium and potassium in five kinds of mineral detected in the sap were dominant mineral, magnesium, sodium and iron in order and calcium, potassium and magnesium are abundant in the sap from bamboo more than the other sample and the contents were 242.0~422.1mg/L, 793.8~ 2504.1mg/L and 72.6~165.9mg/L, respectively. Free sugars of the sap determined were glucose, fructose and sucrose, but maltose was not detected. The contents of glucose and fructose of the sap from Betula platyphylla Sukatschev(#2) were the highest and 42.1g/L and 36.9g/L, respectively. The detectabel nucleotides and their related compounds were CMP, UMP, GMP, IMP, AMP and hypoxanthine. The total contents of composition amino acids detected from eighteen kinds of the sap were in the range of 2.4~30.4mg%. The major amino acids were taurine, glycine, lysine, alanine and threonine in the sap from birch(#1, #2), glutamic acid and lysine in the sap from Betula costata Trauty(#3) and Betula davurica Pallas(#4), lysine, valine, alanine, serine, tyrosine and glutamic acid in the sap from bamboos, and glutamic acid, leucine, alanine in the sap from Darae.

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Effects of Cooking and Drying Methods on the Taste Component and Microstructure of Shrimp (새우의 맛성분과 미세구조에 미치는 가열 및 건조방법의 영향)

  • Kim, Hyun-Ku;Chang, Young-Sang;Shin, Hyo-Sun
    • Applied Biological Chemistry
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    • v.32 no.3
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    • pp.278-285
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    • 1989
  • Effects of cooking and drying methods on the taste component and microstructure of shrimp, Metapenaeus joyneri, were investigated. The nucleotides and their related compounds of fresh shirmp such as ATP, ADP, AMP, IMP, inosine and hypoxanthine were detected. AMP was detected as a trace amount in fresh shrimp, however, it increased up to $23.5{\sim}45.7{\mu}$ moles with cooking and drying due to the decomposition of ATP and ADP to AMP during cooking and drying. The major component of the free amino acids of fresh shrimp was arginine followed by glycine, lysine, proline and alanine. These free amino acids contents were 70% of the total free amino acids. One hundred grams of fresh shrimp contained 1,198mg (dry basis) of the total free amino acids. However, for hot air and freeze dried cooked shrimps it was decreased down to 342mg (dry basis) and 503mg (dry basis), respectively. It might be due to the dissolution of soluble amino acids during cooking. Hot air-and freeze-dried fresh shrimps was higher in hardness and brittleness but lower in cohesiveness and gumminess than hot air-and freeze-dried ones with boiling and microwave heating. Freeze dried shrimp had softer myofibril texture than hot air dried one. At the same time, more dense and multiporous structure in the tissue could be obtained from the hot air and freeze drying, respectively, after microwave heating of shrimps.

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The Development of Squid(Todarodes pacificus) Sik-hae in Kang-Nung District -1. The Effects of Fermentation Temperatures and Periods on the Properties of Squid Sik-hae- (강릉지방의 오징어 식해 개발에 관한 연구 -1. 숙성온도 및 기간에 따른 성분변화-)

  • KIM Sang-Moo;JEONG In-Hak;CHO Young-Je
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.27 no.3
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    • pp.215-222
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    • 1994
  • Kang-Nung sik-hae is a traditional Korean fermented fish product which has remained in existence in Kang-Nung district. In order to preserve the traditional culture of Kang-Nung sik-hae and develop it as a commercial product, the property changes of sik-hae were investigated at different fermentation temperatures and periods. The chemical changes during the fermentation of squid(Todarodes pacificus) sik-hae were studied at different fermentation temperatures and periods. The amounts of proximate compositions and salinity did not change significantly at all fermentation temperatures and periods. The value of pH decreased with increasing storage period at all fermentation temperatures except at $5^{\circ}C$, whereas that of lactic acid at all fermentation temperatures increased. The amount of total arginine increased slightly up to 10-day of storage and decreased after that. The amount of $NH_2-N$ increased rapidly up to 15-day of storage at all temperatures and increased slightly after that. The amount of TMAO decreased significantly at $15^{\circ}C\;and\;20^{\circ}C$ and slightly at $5^{\circ}C\;and\;10^{\circ}C$, whereas that of TMA increased significantly at $20^{\circ}C$ up to 5-day of storage and decreased slightly after that. At all experimental temperatures except $5^{\circ}C$, the amount of TMA increased or fluctuated in proportion to the increase in fermentation periods. Inosine and hypoxanthine were the main components of nucleotides and their related compounds during the fermentation of sik-hae. Summarizing the above results, the optimum fermentation period of sik-hae was concluded to be 15-days at all experimental temperatures except $5^{\circ}C$.

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Savoury Material Production by Fermentation of Alaska Pollack Flesh (명태육의 발효에 의한 천연 풍미물질의 생성)

  • Shin, Dong-Hwa;Lee, Byung-Wan
    • Korean Journal of Food Science and Technology
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    • v.22 no.7
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    • pp.786-792
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    • 1990
  • In order to study the possibility of savoury material production from fish flesh(Alaska pollack), as a substrate of fermentation, three strains of Aspergillus oryzae were applied to the flesh solely or with soybean. The fermented flesh were analyzed their amino acid compositions, nucleotide contents and their sensory acceptability. All strains tested were grown vigorously on both substrates. When fish flesh solely used, amino nitrogen($NH_2-N$) and soluble solid (S.S.) contents were $8{\sim}14\;and\;2{\sim}3$ times higher than those of raw flesh, respectively after 7 days fermentation. In case of fish flesh with 10% soybean used, their $NH_{2}-N$ and S.S. contents were $4{\sim}6\;and\;2.6{\sim}3$ times higher than those of raw flesh respectively. It was belived that increment of $NH_2-N$ and S.S. contents were resulted from degradation of fish flesh protein. On the other hand, the nucleotides and their related compounds of both fermented flesh and with 10% soybean were increased comparing with raw flesh. The content of free amino acids of flesh solely and with 10% soybean were $1,435{\sim}4,326mg%(DB)\;and\;5,563{\sim}6,362mg%(DB)$, which increased to between $4.6{\sim}13.9\;and\;11.6{\sim}13.2$ times, respectively after 7 days fermentation. The four amino acids- glutamic acid, histidine, aspartic acid and lysine were major in both flesh solely and flesh with 10% soybean. In sensory evaluation, fermented flesh extracts was more acceptable than anchovy extract. In review of all results, Aspergillus oryzae KFCC 32343 could be successfully used for production of savoury material from Alaska pollack.

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Studies on the Food of Fresh Water Fish ( I ) - The Chemical Composition of Carp Muscle, Cyprinus Carpio - (담수어(淡水魚)의 식품학적(食品學的) 연구(硏究) (I) - 잉어 육(肉)의 화학성분(化學成分) -)

  • Sung, Nak-Ju;Shim, Ki-Hwan;Lee, Jong-Ho;Lee, Jong-Mi
    • Journal of Nutrition and Health
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    • v.13 no.1
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    • pp.59-64
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    • 1980
  • Carp, Cypinus carpio, has been esteemed as one of the most tasty fresh water fishes in Korea. But little study on its food has been reported. The composition of fatty acids, amino acids, nucleotides and their related compounds as chemical component of carp muscle were analyzed by gas-liauid chromatography, amino acid autoanalyzer and high speed liauid chromatography. The fatty acids of the carp muscle lipid consisted of the large amount of $C_{18}\;:\;2,$ $C_{18}\;:\;1,$ $C_{18}\;:\;3,$ $C_{16}\;:\;0,$ $C_{16}\;:\;1,$ acids, small amount of $C_{16}\;:\;2,$ $C_{18}\;:\;0,$ $C_{18}\;:\;4,$ $C_{14}\;:\;0,$ $C_{14}\;:\;1,$ $C_{12}\;:\;0,$ acids, and $C_{13}\;:\;1,$ $C_{13}\;:\;0,$ $C_{20}\;:\;1,$ $C_{17}\;:\;0,$ $C_{15}\;:\;1,$ $C_{17}\;:\;1,$ $C_{22}\;:\;1$ acids were smaller. In fresh carp, the results showed that inosine $17.25{\mu}mole/g$, hypoxanthine $10.06{\mu}mole/g$ were dominant and the content of GMP, IMP, AMP, UMP, CMP were 1.56, 1.36, 0.92, 0.49, $0.34\:{\mu}mole/g$ on dry base, respectively. Histidine and lysine were dominant amino acids in carp extract, having 49.4% (214.6mg%), 33.9% (147.1mg%) of total free amino acid contents, respectively, but the content of glycine, serine, alanine and glutamic acid were low, and arginine, aspartic acid, threonine, proline, valine, methionine, isoleucine, phenylalanine were detected in trace amount. The content of amino acid composition showed that glutamic acid, aspartic acid, lysine, leucine, alanine, valine and arginine were the most abundant amino acids, while such amino acids as glycine, isoleucine, phenylalanine, threonine, histidine, methionine, serine and tyrosine were low, and proline was detected in trace amount.

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Quality Characteristics, Shelf-life, and Bioactivities of the Low Salt Squid Jeot-gal with Natural Plant Extracts (천연식물추출물을 첨가한 저염 오징어젓갈의 품질특성, 유통기한 및 생리활성)

  • Hong, Won Jun;Kim, Sang Moo
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.42 no.5
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    • pp.721-729
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    • 2013
  • To improve the quality and functionality of the low salt squid Jeot-gal, extracts from three types of medicinal and edible plants (bay leaf, green tea, pine needle) were added. The quality characteristics, bioactivities, and shelf-lives of these preparations were determined at three different fermentation temperatures. The pH decreased more rapidly at higher temperatures, while the amount of volatile basic nitrogen (VBN), total viable cells, and amino nitrogen ($NH_2$-N) increased. The shelf-lives of Jeot-gal with natural plant extracts at $10^{\circ}C$ were 34~35 days, similar to the control. The major free and compositional amino acids of Jeot-gal were glutamic acid, proline, and alanine, while the major nucleotides (and related compounds) were hypoxanthine and inosine. In bioactivity assays, samples supplemented with plant extracts showed higher bioactivities than the control. The DPPH radical scavenging activity of ethanol extracts from Jeot-gal were stronger than the water extracts; in contrast, the water extracts were stronger for hydrogen peroxide scavenging activity. However, superoxide dismutase (SOD)-like activity and ${\beta}$-glucuronidase inhibitory activity were moderately low at 20 mg/mL. Based on sensory evaluation results, the quality of low salt squid Jeot-gal with natural plant extracts is similar to the control. Therefore, low salt squid Jeot-gal with natural plant extracts can be commercialized as a functional fermented food.

Processing and Taste Compounds of the Fish Sauce from Skipjack Scrap (가다랑어잔사를 이용한 어간장 제조 및 대미성분)

  • LEE Eung-Ho;LEE Tae-Hun;KIM Jin-Soo;AHN Chang-Bum
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.22 no.1
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    • pp.25-35
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    • 1989
  • To prepare a new type of fish sauce from skipjack scrap, it was examined the effect of koji on the sauce flavor, conditions of low salt fish sauce processing and the changes of taste com-pounds during its fermentation. To prepare the skipjack scrap sauce, chopped skipjack head paste was mixed with $6.6\%$ skipjack viscera, $26.9\%$ koji, $71\%$ of $25\%$ brine, $13.3\%$ salt and $7.6\%$ glucose, and fermented at $25\pm4^{\circ}C$ for 90 days. The same process was also carried out to prepare the low salt skipjack scrap sauce adding $7.6\%$ sorbitol, $0.3\%$ lactic acid and $9.8\%$ ethyl alcohol instead of $13.3\%$ salt. The major free amino acids in the products were glutamic acid, Iysine, valine, phenylalanine, alanine, leucine and isoleucine at 90 days of fermentation. And the contents of total free amino acids in both products were 3,307mg/00m1, 3,637.1mg/100m1 at 90 days of fermentation. The predominating non-volatile organic acids showed in the products were lactic acid, succinic acid, pyroglutamic acid, which were $90\%$ over contents of the total non-volatile organic acids. Total non-volatile organic acid contents in both products were 1,002.1mg/100ml, 1,312.9mg/100m1 at 90 days of fermentation. During fermentation of sauce, ADP, AMP and IMP were decreased, while inosine and hypoxanthine were increased. The major taste compounds of the products were rove진ed free amino acids and non-volatile organic acids. The nucleotides and their related compounds, total creatinine, betaine, TAMO and sugar were seemed to be having an auxiliary role in taste of those products. Fishy odor in skipjack scrap sauce can be improved by adding koji. And the low salt skipjack scrap sauce ($9.12\%$ of salt contents) can be prepared by the replacement of a part of salt with sorbitol, lactic acid and ethyl alcohol. From the results of sensory evaluation and chemical experiments, the skipjack scrap sauce products supposed to be at least equal to the sold soy sauce on the market in quality.

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