• Title/Summary/Keyword: salt-fermented fish

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Fish Fermentation Technology (수산발효기술)

  • Lee Cherl-Ho
    • Microbiology and Biotechnology Letters
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    • v.17 no.6
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    • pp.645-654
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    • 1989
  • The historical background of fish fermentation in Asia and other regions of the world is reviewed. The classification of fermented fish products in different regions is attempted with respect to the technology involved. The fermented fish products are largely divided into three groups; (1) high-salt, (2) low-salt, and (3) non-salt fermented. High-salt fermented products contain over 20% of salt and are represented by fish sauce, cured fish and fish paste. Low-salt fermented products contain 6-18% salt and are subdivided into lactic fermented products with added carbohydrate and acid pickling associated with low temperature. Non-salt fermented products are represented by the solid state bonito fermentation and some alkaline fermentation of flat fishes. The local names of the products in different regions are compared and classified accordingly. The microbial and biochemical changes during fish fermentation are considered in relation to the quality of the products, and their wholesomeness is reviewed.

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Quality Characteristics of Kimchi made with South-East Asian Fish Sauce (동남아산 피시소스를 이용하여 제조한 김치의 품질 특성)

  • Kim, Kuem-Jung;Lee, Kyung-Hee
    • Journal of the East Asian Society of Dietary Life
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    • v.24 no.6
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    • pp.862-874
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    • 2014
  • Salt-fermented fish and fish sauce are very important materials to make Kimchi. They provide good taste and plenty of nutrition to Kimchi during fermentation. However, it is difficult to purchase Korean salt-fermented fish or fish sauce out of Korea. Therefore, to generalize Kimchi for other countries, this research carefully compared the quality differences between Kimchi made with South East Asian fish sauce, which is fairly similar to traditional Korean salt-fermented anchovy extract (Aekjeot) in terms of taste and ingredients, and that made with traditional Korean salt-fermented anchovy extract. To determine quality differences among traditional Korean Kimchies made with different sauces, Korean-made salt-fermented shrimp, salt-fermented shrimp extract, salt-fermented anchovy and salt-fermented anchovy extract were used. Of the four Kimchis, the one made with salt-fermented anchovy extract was chosen as a control sample and compared with those made with three different South-East Asian fish sauces. In the sensory evaluation for acceptance of fish sauces, characteristics of taste, texture and overall acceptance showed significant differences. In the sensory evaluation for differences, characteristics of fish odor and crunchiness showed visible differences. For umami taste, all fish sauces received higher points than Korean salt-fermented anchovy extract (control sample), although the difference was not significant. Sensory evaluation and research results show that Kimchi can become a highly likable food overseas and Kimchi can substitute easily bought South-East Asian fish sauces for Korean salt-fermented fish sauces (Jeotkal).

Comparison of Determination Methods of Amino Nitrogen in Salt-Fermented Anchovy Sauce

  • Cho Young-Je;Kim Tae-Jin;Choi Yeung-Joon
    • Fisheries and Aquatic Sciences
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    • v.4 no.3
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    • pp.144-149
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    • 2001
  • In other to establish the exact determination method of amino nitrogen (AN) in salt-fermented fish sauces, we determined the AN in fish sauces according to the measuring methods and also investigated the main factors influencing on determination method of AN. AN in salt-fermented anchovy sauce increased linearly as fermentation progressed, and was shown the highest amount measuring by the Formol method, followed by the trinitrobenzene sulfonic acid (TNBS) method and the Copper-salt method. AN concentration in anchovy sauces fermented for 12 months was $88.2\%$ and $77.6\%$ for the TNBS method and the Copper-salt method, respectively, on the basis of Formol method. The ratio of AN/total nitrogen (TN) in anchovy sauce fermented for 12 months was higher than that in commercial anchovy sauces. The determination of AN in anchovy sauce by the TNBS method was not affected by salt concentration, and slightly affected by heating. The effect of MSG on AN contents by Copper-salt method was shown higher than those by the Formol method and the TNBS method. The TNBS method was adaptable to measure the content of AN in fish sauce by this study.

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The history of the fermented fisheries industry (수산 발효식품 산업 발전)

  • Song, Ho-Su;Kim, Sang Moo
    • Food Science and Industry
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    • v.55 no.3
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    • pp.284-300
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    • 2022
  • Indigenous fermented foods have played a vital role in human history, and continue to offer a multitude of diverse sensory characteristics. According to earthenware relic, the fermented fisheries products might be consumed in Korean peninsula from Paleolithic period. The traditional Korean fermented fish products are classified into four groups; Jeot-gal (sik-hae), Aek-jeot, Seasoned Jeot-gal, and Seasoned Aek-jeot. Jeot-gal is a fermented fishery with salt. Aek-jeot is a liquid part of Jeot-gal. Sik-hae is manufactured by fementing fishery with salt, cereal, malt powder, etc. Seasoned Jeot-gal is a salt-seasoned fish with red pepper powder, garlic, onion, etc. Seasoned Aek-jeot is a seasoned product by adding "salt-water" or "condiment" to Aek-jeot. The fermented fisheries industry has traditionally been succeeded mainly in a cottage scale to the middle of 20th century. Thereafter, together with the development of pelagic fishery, the fermented fisheries industry also developed constantly to an enterprise size.

Comparison of the Chemical Compositions and Biogenic Amine Contents of Salt-fermented Fish Sauces Produced in Korea to Evaluate the Quality Characteristics (시판멸치액젓 및 까나리액젓의 품질특성 평가를 위한 이화학적 성분 및 Biogenic amine 함량 비교)

  • Kim, Bo-Kyoung;Kim, Yong-Hoon;Lee, Hong-Hee;Cho, Young-Je;Kim, Dae-Sik;Oh, Sang-Min;Shim, Kil-Bo
    • Journal of Fisheries and Marine Sciences Education
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    • v.23 no.4
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    • pp.607-614
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    • 2011
  • This study was conducted to understand the quality characteristics of 20 kinds of commercial salt-fermented anchovy & sand lance sauces by measuring their the chemical compositions and 9 biogenic amines (tryptamine, 2-phenylethylamine, putrescin, cadaverine, histamine, tyramine, serotonin, noradrenaline, spermine) contents. The commercial salt-fermented anchovy sauces contained $65.84{\pm}0.11{\sim}70.60{\pm}0.21%$ of moisture, $20.50{\pm}0.41{\sim}25.60{\pm}0.42%$ of salinity, $0.98{\pm}0.01{\sim}2.05{\pm}0.05%$ total nitrogen, and $1,011.77{\pm}0.00{\sim}1,724.56{\pm}9.72mg/100mL$ of amino nitrogen. Histamine was the major amine detected in salt-fermented fish sauces and it was varied from 421.27 to 1,507.18 mg/kg in salt-fermented anchovy sauces, whereas commercial salt-fermented sand lance sauces contained $67.87{\pm}0.28{\sim}69.63{\pm}0.17%$ moisture, $22.46{\pm}0.28{\sim}26.11{\pm}0.00%$ salinity, $0.92{\pm}0.01{\sim}1.71{\pm}0.05%$ total nitrogen, $878.20{\pm}0.00{\sim}1430.09{\pm}9.77mg/100mL$ amino nitrogen and 419.10~1,025.50 mg/kg histamine, respectively. These findings suggest that the products of salt-fermented fish sauces have pretty much the same in ingredient composition and meet domestic criteria but most those had high biogenic amine contents. Therefore, ingredient composition and biogenic amine content of commercial salt-fermented fish sauce products were practicable evaluation of the quality characteristics.

Studios on the Processing of Low Salt Fermented Sea Foods 6. Taste Compounds of Low Salt Fermented Anchovy and Yellow Corvenia (저식염 수산발효식품의 가공에 관한 연구 6. 저식염 멸치젓 및 조기젓의 정미성분)

  • CHA Yong-Jun;LEE Eung-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.18 no.4
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    • pp.325-332
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    • 1985
  • As a series of study for processing low salt fermented fish, this work was undertaken to investigate taste compounds of low sodium salt fermented anchovy and yellow corvenia comparing with conventional fermented fish ($20\%$ of salt contents) during the fermentation of 120 days at $25{\pm}3^{\circ}C$. The major amino acids in fermented anchovy at 60 day fermentation were lysine, alanine, leucine, valine, isoleucine, histidine, threonine and glycine, while those in fermented yellow corvenia at 90 day fermentation were lysine, leucine, alanine, valine, threonine, isoleucine, glutamic acid and methionine. These amino acids held $57\%$ of the total extractive nitrogen content for fermented anchovy and $41\%$ for fermented yellow corvenia, respectively. It was supposed from the results that principal taste compounds both for fermented anchovy and fermented yellow corvenia were free amino acids, and that nucleotides and their related compounds as well as total creatinine also played an assistant role. And also there was little difference between taste compounds of low salt fermented fish and those of conventional fermented fish irrespective of fish species.

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Studies on the Isolation of the Cholesterol Degrading Enzyme Producing Microorganism from Traditional Fermented Foods and the Culture Condition for the Production of the Enzyme (전통발효식품에서 Cholesterol Oxidase를 생산하는 미생물의 분리 및 효소생산에 관한 연구)

  • 박상현;권익부;함영태;신동훈;전억한
    • KSBB Journal
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    • v.13 no.4
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    • pp.343-351
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    • 1998
  • About 75 strains which utilize cholesterol as sole carbon and energy source were isolated from 10 samples of Kimchi and 18 samples of fermented fish food (2 Ojingo-jeots, salt-fermented squid ; 5 Changran-jeots, salt-fermented pollack tripe ; 5 Myungran-jeots, salt-fermented Alaska pollack roe ; 3 Gajami-sikhae-jeots, fermented flat fish ; 2 Gul-jeots, salt-fermented oyster ; a Juneo-jeots, salt-fermented shad). Among them tested, the 3T6-5Mj strain isolated from Changran-jeot showed the highest activity on cholesterol degradation. The optimal composition of medium for the producing cholesterol degradation enzyme by 3T6-5Mj strain was 1.0 g/L NH4NO3, 1.0 g/L K2HPO4, 0.1 g/L MgSO4.7H2O, 1.0 g/L FeSO4.7H2O, 1 g/L NaCl, 5 g/L Trypton, 1 g/L Cholesterol, and 5 g/L Maltose at 30$^{\circ}C$, pH 7.5, and the enzyme production reached a maximum level at 140 hours of cultivation.

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The present condition and development prospect of the fermented fishery products (젓갈산업의 현황 및 발전 방향)

  • Kim, Sang Moo
    • Food Science and Industry
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    • v.53 no.2
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    • pp.200-214
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    • 2020
  • The traditional Korean fermented fish products are classified into mainly three groups; Jeot-gal, Aek-jeot, and Sik-hae. Jeot-gal is a salt-fermented fish. Aek-jeot (Eoganjang) is actually a liquid part of Jeot-gal. Sik-hae is a salt-fermented whole or part fisheries with adjuncts. The production of jeot-gal products has been increased constantly. However, there is not enough fishery for raw materials. Recently, consumers have been preferred low-salted foods because they have become aware that high levels of salt cause adult diseases such as hypertension or gastric cancers. The main consumers of jeot-gal are adults above 40~50 years old. Young generation and school nutrition teachers dislike fishery products because of distinct fish smell, small bone, as well as food safety. Therefore, in order to increase the consumption of jeot-gal and extend its industry, jeot-gal should be developed to match the preference of new generation with good safety, health-oriented, and new concept.

Anticancer Effect of Extracts from the Marine and Salted Fish Products. (수산물 및 수산 발효식품의 암세포 억제효과)

  • 임현수;김수현;유은정;강동수;최명락;송상호
    • Journal of Life Science
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    • v.11 no.1
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    • pp.48-53
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    • 2001
  • This study was performed to observe the cytotoxic effect of the various salted fish extracts against cancer cell line, human hepatocellular carcinoma (HepG2) using MTT (3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyl tetrazolium bromide) method. Urechis unicinctus was the strongest cytotoxic effects among any other traditional salted fish products. The growth inhibition ratio of Urechis unicinctus hot-water extracts was 94.5% at the concentration of 1000$\mu\textrm{g}$/$m\ell$. On the other hand, in case of salted fish methanol extracts, salt-fermented shad gizzard was showed the strongest cytotoxic effects. The growth inhibition ratio of salt-fermented shad gizzard methanol extracts was investigated 90% at the concentration of 1000$\mu\textrm{g}$/.$m\ell$.

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Isolation and Identification of Staphylococcus sp. from Korean Fermented Fish Products

  • Um, Mi-Na;Lee, Cherl-Ho
    • Journal of Microbiology and Biotechnology
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    • v.6 no.5
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    • pp.340-346
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    • 1996
  • In order to find out if staphylococci occur in significant numbers in Korean fermented fish products, a total of 40 different fermented fish products were collected from different markets in Korea and analyzed for their physico-chemical and microbiological states. The pH, salt concentration and water activity of the products were measured and the total viable cell count and the number of Staphylococcus grown on mannitol salt agar were determined. The identification of the strains of Staphylococcus were made by API Staph Strip and MIS identification kits, and the physiological properties of the identified strains were further characterized by different conventional methods. The pH, salt content and water activity of fermented fish samples varied widely from 4.8 to 7.1, 7.4-28.7$%$ and 0.77-0.84, repectively, depending on the type of product. The total viable cell count varied from $10^4-10^9$ cfu/ml, and most of the samples had $10^5-10^6$ cfu/ml No correlation was found between the viable cell count and the pH, NaCl concentration and water activity of the samples. Among the 35 colonies identified as Staphylococcus strains by the identification kits, S. xylosus was the most frequently occurring strain marking 17, and S. warneri was 8, S. epidermidis 4 and S. cohnii 2. S. hominis, S. saprophyticus, S. haemolyticus and S. aureus were also identified once each. In some samples (K-3, P-6, K-8, G-5 and G-10), 2-3 different species of Staphylococcus were found. Considering the region of sampling, among the 10 samples from Kunsan 5 were identified as S. warneri, while in the other regions S. xylosus was predominant. Although the physiological characteristics of the identified strains were generally consistent with those in Bergey's Manual, some discrepances were also observed. All the strains were highly salt tolerant, growing in the media containing over 18$%$ NaCl. All the strains except S. aureus (G-11) showed negative in hemolysis activity, plasma coagulation and DNase tests. All the strains including S. aureus (G-11) showed negative in enterotoxin test.

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