• Title/Summary/Keyword: fermented fisheries products

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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.

Evaluation of Microbiological Safety of Commercially Salt-fermented Fishery Products by Raw Materials (젓갈류의 원료에 따른 세균학적 안전성 평가)

  • Shim, Kil Bo;Park, Kunbawui;Yoon, Na-Young;An, Byoung Kyu;In, Jung Jin;Han, Hyeong Gu;Lee, Woo Jin
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.54 no.6
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    • pp.1045-1051
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    • 2021
  • Eighty-nine different types of commercially salt-fermented fishery products comprising various raw materials were analyzed for total aerobic bacteria, number of coliform bacteria, fecal coliform, and Escherichia coli. The food-poisoning bacterial content of the samples was investigated using next-generation sequencing. The mean mass of total aerobic bacteria in Jeotgal was 6-1.8×109 CFU/g, and that in Aekjeot and Sikhae was 4-2.2×105 CFU/mL and 1.9×105-8.4×108 CFU/g, respectively. Coliform bacteria were detected in 9 (28.1%) of 32 Jeotgal samples; 15 (46.8%) of 32 seasonal Jeotgal samples; and in 5 (55.5%) of 9 Sikhae samples. Fecal coliform and E. coli were not detected in 86 of the 89 samples. Yersinia enterocolitica was detected only in Galchi jeot (salt-fermented hairtail) (1 type) and not in other Jeotgal samples. These results contribute to our knowledge regarding the bacterial stability of salt-fermented fishery products.

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.

Quality Evaluation of Low-Salt Fermented Seafoods (저염젓갈류의 품질평가 방법에 관한 연구)

  • KIM Young-Man;KANG Min-Cheol;HONG Jeong-Hwa
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.3
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    • pp.301-308
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    • 1995
  • To establish the quality criteria of low-salt fermented seafoods in terms of consumer acceptability, sensory assessment and physicochemical analysis were undertaken using commercial products. In case of low-salt fermented Alaska pollack (Theragra chalcogramma) roe, Brix over $47.6\%$ for unseasoned products and $41.2\%$ for seasoned ones were considered as acceptable products. In spite of some variations between manufacturers, increase in whiteness was observed as consumer acceptability was decreased. In contrast, whiteness was not suitable criteria for low-salt fermented squid (Sepiella maindroni). Brix can be used as good criteria as long as its relationship was established to acceptability of different products; pH also showed the same tendency as Brix. In case of low-salt fermented Alaska pollack tripe, Brix was likely to be the best criteria; whiteness, in addition, could be used as quality criteria.

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Comparison of the Physiochemical Compositions and Biogenic Amine Contents of Salt-fermented Fishery Products fromy Different Raw Materials (원료에 따른 젓갈류의 이화학적 성분 및 Biogenic Amine류의 함량 비교)

  • Shim, Kil Bo;Han, Hyeong Gu;An, Byoung Kyu;Lee, Woo Jin;In, Jung Jin;Song, Ho-Su
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.54 no.6
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    • pp.835-840
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    • 2021
  • This study was conducted to understand the quality characteristics of 89 types of commercial salt-fermented fishery products by measuring their physiochemical compositions and biogenic amine contents. All samples had the following measurements; 41.59-89.20 g/100 g of moisture, 1.71-25.70 g/100 g of salinity, 3.21-7.05 of pH, 0.80-2.93 g/100 g of total nitrogen, 87.02-1,296.78 mg/100 g of amino nitrogen, and 7.30-926.34 mg/100 g of volatile basic nitrogen. The physicochemical components differed extensively between samples from different raw materials, including, fish, shellfish, and others. Histamine (0 to 1,072.2 mg/kg), putrescine (0 to 2,536.4 mg/kg), cadaverine (0 to 545.2 mg/kg of cadaverine), tryptamine (0 to 1,287.9 mg/kg), and tyramine (11.3 to 563.3 mg/kg) were the major biogenic amines detected in the samples. These findings suggest that salt-fermented fishery products meet the domestic criteria but have different ingredient compositions and most had high biogenic amine contents. The results suggest that it is necessary to establish criteria for evaluating the quality characteristics using the ingredient composition and biogenic amine contents of commercial salt-fermented fishery products.

Characteristics of salt-tolerant pretense purified from the fermented anchovy sauce

  • Kim, Woo-Jae;Kim, Sang-Moo
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2001.10a
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    • pp.91-92
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    • 2001
  • Enzymes have been used as processing aids in the manufacture of food products to improve their quality, solubility and stability for centuries. About 50% of the enzymes used as industrial processing aids are protein hydrolases which have been used in a number of industrial application including laundry detergents, feed, leather treatment, silk degumming, cheese making, chill proofing, meat tenderzing, fermented sauces, and pharmaceuticals. (omitted)

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Changes of Chemical Components during Pre-salting in the Preparation of Salted Anchovy

  • Cho, Young-Je;Shim, Kil-Bo;Kim, Tae-Jin;Ju, Jung-Mi;Park, Young-Jun
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.10a
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    • pp.103-104
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    • 2000
  • Salted anchovy, generally favored in Europe, is one of the traditional fermented fish products in southern European countries and raw anchovy are aged in 20∼30% NaCl solution for 6 months (Ishida et al., 1994). They are then steeped in oil in glass jar or can, and marketed. The salt-fermented fish sauce, such as anchovy sauce and shrimp sauce are tropical fermented seafood from fish in Korea. (omitted)

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Volatile Constituents of Fermented Big Eyed Herring and Slimy (밴댕이 및 주둥치젓의 휘발성성분)

  • Lee, Eung-Ho;Koo, Jae-Keun;Cha, Yong-Jun;Ahn, Chang-Bum;Oh, Kwang-Soo
    • Korean Journal of Food Science and Technology
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    • v.17 no.6
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    • pp.437-441
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    • 1985
  • In order to elucidate the flavor compounds of fermented big eyed herring, Harengula zunasi (BLEEKER), and slimy, Leiognathus nuchalis (TEMMINCK et SCHEGEL), the volatile constituents of products were analysed by GLC. In the volatile compounds of fermented big eyed herring, eight kinds of volatile fatty acids, nine kinds of volatile carbonyls, and five kinds of volatile amines were identified. While in the fermented slimy, seven kinds of volatile fatty acids, six kinds volatile carbonyls, and five kinds of volatile amines were also identified. In the volatile fatty acids and volatile amines, n-butyric acid and trimethylamine were the most dominant component in both fermented products. In the fermented big eyed herring 2-methylpropanal, ethanal, and propanal were abundant holding 36.2%, 28.5%, and 16.2%, while in the fermented slimy ethanal, 2-methylpropanal, and propanal were abundant holding 44.7%, 24.1%, and 14.4% of total volatile carbonyls, respectively. From the experimental results, it was concluded that n-butyric acid, trimethylamine and volatile carbonyls such as 2-methylpropanal, ethanal and propanal played an important role in the flavor of the fermented big eyed herring and slimy.

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Studies on the Processing of Low Salt Fermented Sea Foods 1, Processing Conditions of Low Salt Fermented Sardine (저염수산발효식품의 가공에 관한 연구 1. 저염정어리젓의 가공조건)

  • LEE Eung-Ho;CHA Yong-Jun;LEE Jong-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.16 no.2
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    • pp.133-139
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    • 1983
  • As a method of utilization of sardine, sardinops melanosticta, proper processing conditions for a low salt fermented sardine were investigated. And changes of chemical components during fermentation and the effects of additives to improve the quality of the product were also discussed. A low salt fermented sardine was prepared with 8 or $10\%$ of salt and various contents of additives such as lactic acid, sorbitol, glycerin and ethanol as preservatives and flavor enhancers, and fermented for 80 days at $29\pm3^{\circ}C$. Judging from the changes in pH, amino-nitrogen and volatile basic nitrogen during fermentation of low salted sardine and the organoleptic evaluation on their flavor, the products of sardine meat containing 8 or $10\%$ of table salt, $0.5\%$ of lactic acid, $6\%$ of sorbitol and $6\%$ of ethanol as additives were most desirable when fermented for 60 days.

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Characteristics of Angiotensin-I Converting Enzyme Inhibitors Derived from Fermented Fish Product -1. Characteristics of Angiotensin-I Converting Enzyme Inhibitors Derived from Salted and Fermented Anchovy- (수산발효식품 중의 Angiotensin-I 전환효소 저해제의 특성 -1. 멸치젓갈 중의 Angiotensin-I 전환효소 저해제의 특성-)

  • KIM Seon-Bong;LEE Tae-Gee;PARK Yeung-Beom;YEUM Dong-Min;KIM Oi-Kyung;BYUN Han-Seok;PARK Young-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.26 no.4
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    • pp.321-329
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    • 1993
  • The present study was conducted to elucidate the body modulating function of fermented seafood products. Angiotensin converting enzyme (ACE) acts in blood pressure regulation, converting angiotensin I to the potent vasoconstrictor angiotensin II and inactivating the vasodilator bradykinin to raise blood pressure. Salted and fermented anchovy which is one of the traditional fermented seafood in Korea was tested for inhibitory activity against ACE. ACE inhibitory activity of salted anchovy during the period of fermentation was increased with the elapse of fermentation days until fermentation of 60 days, but thereafter decreased inversely. When the fermented product was extracted with $50\%$ ethanol, the ACE inhibitory activity was the highest. And the ACE inhibitory activity was proportion to the content of $50\%$ ethanol soluble peptide-nitrogen of the fermented product. From the profiles of gel permeation chromatography on a Bio-Gel P-2 of $50\%$ ethanol soluble fraction obtained from salted and fermented anchovy fermented for 60 days at an ambient temperature, the higher activity fractions were C'($IC_{50}=97{\mu}g\;protein/ml$) and D'($IC_{50}=65{\mu}g\;protein/ml$). Amino acid analysis showed that the large quantify of threonine, glutamic acid, lysine for C' and serine, proline for D', respectively.

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