• Title/Summary/Keyword: salted and fermented seafood

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Studies on the Shelf-life Extension of Jeotkal, Salted and Fermented Seafood (젓갈류의 유통기한 연장을 위한 연구)

  • Cho, Hak-Rae;Park, Uk-Yeon;Chang, Dong-Suck
    • Korean Journal of Food Science and Technology
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    • v.34 no.4
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    • pp.652-660
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    • 2002
  • To develop natural food preservatives for extending the shelf-life of jeotkal (salted and fermented seafood), antimicrobial substances were extracted from 32 types of medicinal herbs and edible plants using 95% ethanol. Among the extracts, Glycyrrhizae radix, Curcumae domestica, Galla rhois, and Resina pini showed relatively high inhibitory effects on the growth of the microorganisms isolated from the deteriorated jeotkal. We selected and tested the extract from Recina pini as a natural jeotkal preservative. This ethanol extract was purified partially by adding equal quantity of water, through which 77% of insoluble materials were removed as impurities. In manufacturing modified jeotkal using squid, sucrose and starch syrup were substituted with sorbitol, $glucono-{\delta}-lactone$ was added instead of vitamin C and lactic acid, and sterilized hot pepper was used instead of natural one. The shelf-life of modified jeotkal was prolonged by 4 days compared with the control jeotkal when stored at $20^{\circ}C$, while that of modified jeotkal containing 1.0% partially purified Recina pini extract was prolonged by 6 days compared to the control. The same tests were conducted for the changran (stomach and intestine of Alaska pollack) jeotkal preservation. The shelf-life of the control jeotkal was 24 days, whereas the modified jeotkal and the Resina pini extract-containing modified jeotkal maintained their qualities without changes in microbial and chemical characteristics for 90 days at $20^{\circ}C$ storage.

Quality characteristics of Weissella confusa strain having gluten degradation activity from salted seafood (젓갈로부터 분리된 글루텐 분해능을 가지는 Weissella confusa 균주와 특성)

  • Yoon, Jong Young;Hwang, Kwontack
    • Food Science and Preservation
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    • v.23 no.6
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    • pp.883-889
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    • 2016
  • A new lactic acid bacteria with gluten-degrading activity which was isolated from salted sea foods (traditional Korea fermented food), identified as Weissella confusa (99%) by use of API kit and 16S rRNA sequencing, and designated as W. confusa. When the W. confusa cultured for 48 hours at $30^{\circ}C$ in a MRS medium containing 1% gluten, 45% of gluten was founded to be degraded. W. confusa showed 85% of survival rate at pH 3, and 94% tolerance at 0.1% oxgall, which indicates that W. confusa would survive in stomach of human. Experiments on the thermostability was confirmed that it has a stability of 70% in $50^{\circ}C$. W. confusa inhibited the growth of some pathogen, except for S. aureus. Results in this study suggest that using W. confusa for fermentation of grain flour containing gluten would be desirable to prepare the gluten-free foods needed for those who suffer from celia disease and gluten allergy.

Peptide Properties of Rapid Salted and Fermented Anchovy Sauce Using Various Pretenses 2. Characterization of Hydrolytic Peptides from Anchovy Sauce and Actomyosin (단백질 분해효소를 이용하여 제조한 속성 멸치 액젓의 펩티드 특성 2. 멸치 액젓 및 Actomyosin의 가수분해 펩티드의 특성)

  • CHOI Yeung-Joon;KIM In-Soo;CHO Young-Je;SEO Duck-Hoon;LEE Tae-Gee;PARK Yeung-Beom;PARK Jae-Woon
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.32 no.4
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    • pp.488-494
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    • 1999
  • Hydrolytic peptides of salted and fermented anchovy sauce, and anchovy actomyosin for the development of a rapid fermentation method with conventional tastes and flavors were studied. The optimal temperatures of crude enzymes isolated from anchor, liver and viscera of squid were 55, 40$\~$45 and $45\~60^{\circ}C$, respectively. Crude enzyme isolated from anchovy was more effective on hydrolysis of anchovy actomyosin than that from squid liver and viscera. But the crude enzyme from squid liver was less effective on NaCl than that from anchovy. Three peptides occurred in anchovy actomyosin hydrolyzed with crude enzymes from anchovy and squid liver for 30 min. Their molecular weight were determined by Superdex 200 gel chromatography as 10,800, 5,800 and 2,600 dalton. When anchovy sauce was hydrolyzed with crude enzymes of anchovy, squid liver and viscera, and Protamex during 70 days, ranges of their low molecular weight of hydrolyzed peptides were 300$\~$1,000dalton detected by Sephadex G-50 and their major amino acid compositions were glutamic acid, glycine and alanine, which was related with conventional tastes. Those amino acid compositions were similar to those of anchovy sauce hydrolyzed with squid liver, In the case of Protamex treatment, hydrolyzed peptides had high levels of isoleucine and leucine, being associated with the bitter, but a low level of glutamic acid.

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Peptide Properties of Rapid Salted and Fermented Anchovy Sauce Using Various Pretenses 1. Hydrolysis of Anchovy Sauce and Actomyosin by Various Pretenses (단백질 분해효소를 이용하여 제조한 속성 멸치 액젓의 펩티드 특성 1. 단백질 분해효소에 의한 멸치 액젓 및 Actomyosin의 가수분해)

  • KIM In-Soo;CHOI Young-Joon;HEU Min-Soo;CHO Young-Je;IM Yeong-Sun;GU Yeun-Suk;YEO Saeng-Gyu;PARK Jae-Woon
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.32 no.4
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    • pp.481-487
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    • 1999
  • The optimal conditions of enzymatic hydrolysis for preparation of rapid salted and fermented anchovy sauce (SFAS) using various pretenses such as trypsin, chymotrypsin, crude enzyme from squid liver and viscera, Alcalase, Neutrase and Protamex were studied. SFAS prepared with squid viscera had higher level of VBN (173.6 mg/100 g) when stored for 70 days than other samples, and peroxide values were almost equal among all samples during fermentation period. Total amino acids and nonprotein nitrogenous compounds remarkably increased as SFAS treated with Alcalase or Protamex which exhibited higher the hydrolysis rate of $57\%$ at 60 day than others. The optimal pHs of trypsin, chymotryosin, Alcalase, Neutrase and Protamex on anchovy actomyosin were 7.5, 6.5, 6.5, 7.0 and 5.0, respectively. Optimal temperatures of trypsin, chymotryosin, Alcalase and Neutrase were 55, 45, 60 and $55^{\circ}C$, respectively. Otherwise, Protamex activity increased as temperature increased from 20 to $70^{\circ}C$. Protamex had higher $K_m$ (3.545) and $V_{max}$ value (2.688) than others. Protamex affected less by NaCl had $52.5\%$ activity at the fermentation condition of $20^{\circ}C$ and $25\%$ NaCl. Protamex appeared to be very effective for the hydrolysis of crude actomyosin from ancnovy.

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Preparation of Whelk Internal Organ Jeotgal with the Addition of Commercial Proteolytic Enzymes (상업용 단백질 가수분해 효소를 첨가한 골뱅이 내장 젓갈의 제조)

  • Oh, Jeong-Hoon;Koo, Myung-O;Lee, Kyung-Eun;Lee, Seung-Cheol
    • Korean Journal of Food Science and Technology
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    • v.34 no.4
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    • pp.570-576
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    • 2002
  • For the utilization of the by-products of whelk processing, whelk internal organ with the addition of commercial proteolytic enzymes - Flavourzyme, Neutrase, Protease NP, Prozyme - were used to make jeotgal, Korean traditional salted and fermented seafood sauce. The products were prepared at salt concentration of 25% with enzyme contents 0.05 and 0.1%. The samples were stored at $10^{\circ}C$ and the chemical properties were evaluated for 6 months. The pH in all samples were decreased from near 6.8 in the beginning stage to 6.1-6.4 in the final stage of incubation. Amino nitrogen of jeotgal increased with enzyme concentration and showed maximum value, 646 mg%, at 0.1% of Flavourzyme. Total nitrogen content was increased till four months, but rapidly decreased after that. Protein degradations of whelk internal organ during maturation of jeotgals were investigated by SDS-PAGE. The patterns of degradation were different with added enzymes.