• Title/Summary/Keyword: Korean cabbage kimchi

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Quality Changes of Salted Chinese Cabbage and Kimchi during Freezing Storage (절임 배추 및 김치의 동결 저장에 따른 품질변화)

  • Koh, Ha-Young;Lee, Hyun;Yang, Hee-Cheon
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.1
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    • pp.62-67
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    • 1993
  • The effect of frozen storage on some physicochemical and sensory quality of salted Chinese cabbage and Kimchi were investigated. The texture of the fresh Chinese cabbage was preserved better by emersion quirk freezing or predrying than by air slow freezing or no predrying while no effect was measured on the salted Chinese cabbage. The salted cabbage had less frozen damages than the fresh one and had the similar texture characteristics of the fermented Kimchi. The frozen Kimchi had the similar overall quality to the unfrozen fermented Kimchi in spite of a little higher chewness values. The color of the salted Chinese cabbage was a little changed to pinkish after 3 months frozen storage but Kimchi was maintained the good quality after 6 months.

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Invitro Anticancer Effect of Chinese Cabbage Kimchi Fractions (배추김치 분획물의 in vitro 항암효과)

  • 박건영;조은주;이숙희;강갑석
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.6
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    • pp.1326-1331
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    • 1999
  • In vitro anticancer effect of Chinese cabbage kimchi fractions was investigated by using human cancer cells, AGS human gastric adenocarcinoma cells and HT 29 human colon adenocarcinoma cells. The Chinese cabbage kimchi(fermented for 4 days at 15oC) was fractionated into 7 groups, methanol extract, hexane fraction(fr.), methanol soluble fr., dichloromethane fr., ethylacetate fr., butanol fr. and aqueous fr.. Chinese cabbage kimchi fractions inhibited the growth of AGS and HT 29 cancer cells as dose dependent. In particular, the dichloromethane fr. showed the highest inhibitory effect among other fractions. When the dichloromethane fr.(0.2mg/ml) was treated, the number of AGS and HT 29 survival cancer cells reduced to 12$\times$104/ml and 11$\times$104/ml compared to 166$\times$104/ml and 50$\times$104/ml of the controls, respectively. Chinese cabbage kimchi fractions also inhibited the DNA synthesis of the cancer cells. They inhibited the DNA synthesis of AGS human gastric adenocarcinoma cells more efficiently than that of HT 29 human colon adenocarcinoma cells. These results indicate that Chinese cabbage kimchi fractions show in vitro anticancer activity and the dichloromethane fr. among them reveals the highest effect.

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A Study on the Texture and Taste of Kimchi in Various Saltings (절임정도에 따른 배추김치의 질감과 맛에 관한 연구)

  • 우경자;고경희
    • Korean journal of food and cookery science
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    • v.5 no.1
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    • pp.31-41
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    • 1989
  • The effects of salting degree of cabbage on the chemical, microbiological, textural changes and taste of Korean whole cabbage Kimchi fermented at $21^{\circ}C$ was studied. Low salted Kimchi (1.8% NaCl, soaking for 2 hr. in 20% brine) was showed higher total acdity than high salted Kimchi II(3.1% NaCl, Soaking For 8 hr in 20% brine) and III(2.9% NaCl, no soaking in 20% brine). The changes in growth of lactic acid bacteria was relevant to the salt content of whole cabbage Kimchi. Kimchi I was showed higher growth rate of Lactic acid bacteria and slower death rate constant of Lactic acid bacteria than that of Kimchi II and III. In palatability test, salty taste of Kimchi II, III was more salty than that of Kimchi I ($p{\leqq}0.01$) and total evaluation of Kimchi I, II was more palatable than Kimchi III ($p{\leqq}0.05$) at 3rd's day (optimum taste). Cutting force by Rheometer was well correlated with the salt content of Kimchi.

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A study on the hydroponic cultivation of Chinese cabbage for kimchi (김치용 배추의 수경재배에 관한 연구)

  • 한덕철;문성원;김혜자;조재선
    • Korean journal of food and cookery science
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    • v.17 no.5
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    • pp.510-516
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    • 2001
  • Hydroponic cultivation is a technology of raising crops without use of soil. Generally farmers use the method of DFT(deep flow technology)to grow leafy or fruity vegetables; however, systematic and scientific researches are insufficient on this matter. This study investigated the possibility of cultivating Chinese cabbage steadily year long by using the method of DFT. Chinese cabbage was cultivated hydroponically with and without Ge addition, used to prepare kimchi, and the chemical and microbiological characteristics of kimchi were compared. The basic hydroponic cultivation condition was as follows: 30 days after seeding, the raised seeds were moved to a hydroponic bed and given underground water for 3 days so the roots grow normally Standard nutrient solution was provided and the early electric conductivity concentration was maintained between 1.5∼2.5 thickness. The temperature of the solution was maintained between 10 ∼25$^{\circ}C$ to allow the growth of Chinese cabbage. When soil-cultivated, organically cultivated and hydroponically cultivated Chinese cabbages were compared, hydroponically cultivated cabbages were smaller in size and showed less ability to build up and fold leaves into a head, but showed better quality than organically cultivated cabbages. The contents of protein and fat showed no significant differences. The contents of water. Ca, P, Fe, Vitamin A and Niacin were higher in control and Ge-added cabbages compared with soil-grown cabbage. There was no difference between soil-cultivated Chinese cabbage kimchi and hydroponically cultivated Chinese cabbage kimchi.

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A Literature Study on the Amount of Red Pepper in Cabbage Kimchi between the Decades from 1920 to 2010 in Cookbooks, Newspapers and Magazines (조리서와 신문, 잡지기사에 나타난 1930-2010년대 배추김치 연대별 고추 사용량 변화에 대한 고찰)

  • Seo, Mo Ran;Jeong, Hee Sun
    • Journal of the Korean Society of Food Culture
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    • v.30 no.5
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    • pp.576-586
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    • 2015
  • This study compared and analyzed the consumption and amount of red pepper used in Baechu Kimchi (cabbage Kimchi) especially the amounts used in Kimchi recipes with respect to the passage of time from the 1930s to the 2010s. In this analysis, 78 recipes for cabbage Kimchi were taken from books, daily newspapers and magazines from 1930 to 2014 and collected for comparison. The result of the study showed that the consumption and inclusion of dried red pepper powder in cabbage Kimchi increased. The average consumption of red pepper in the 1930s was 5.75 g, and the number went up to 8.83 g in the 1940s, to 13.8 g in the 1950s, and to 20.25 g in the 1960s. The amount dramatically increased from 1970 to 1980 (53.37 g) and kept rising until 2010 (71.26 g). The average consumption of red pepper in cabbage Kimchi in the 2010s is about 12 times that of the 1930s.

The Antibacterial Action of Chinese Cabbage Kimchi Juice on Staphylococcus aureus, Salmonella enteritidis, Vibrio parahaemolyticus and Enterobacter cloacae (배추김치즙의 Staphylococcus aureus, Salmonella enteritidis, Vibrio parahaemolyticus 및 Enterobacter cloacae에 대한 항균작용)

  • 서화중;서유석
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.8
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    • pp.1351-1356
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    • 2003
  • Antibacterial activities of Chinese cabbage kimchi juice were determined against Staphylococcus aureus ATCC 6538p, Salmonella enteritidis ATCC 13076, Vibrio parahaemolyticus ATCC 17802 and Enterobater cloacae ATCC 13047. It was found out that 2% content of Chinese cabbage kimchi juice reduced the colony numbers of Salmonella enteritidis ATCC 13076, Enterobater cloacae ATCC 13047, Staphylococcus aureus ATCC 6538p and Vibrio parahemolyticus ATCC 17802 by 63%, 72%, 76% and 90%, respectively. 6% content of Chinese cabbage kimchi Juice completly inactivated Vibrio parahaemolyticus. But at the same content (6%) of Chinese cabbage kimchi juice, colony number of Salmonella enteritidis ATCC 13076 Enterobater cloacae ATCC 13047 and Staphylococcus aureus ATCC 6538p were reduced to 11%, 10% & 9%, respectively.10% Chinese cabbage kimchi juice had 100% inhibitory effect on all test bacteria. Therefore, Chinese cabbage kimchi has effective antibacterial activities against Staphylococcus aureus ATCC 6538p, Salmonella enteritidis ATCC 13076 Vibrio parahaemolyticus ATCC 17802 and Enterobacter cloacae ATCC 13047.

Changes in Isothiocyanate Levels in Korean Chinese Cabbage Leaves during Kimchi Storage

  • Hong, Eun-Young;Kim, Gun-Hee
    • Food Science and Biotechnology
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    • v.15 no.5
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    • pp.688-693
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    • 2006
  • Glucosinolates are hydrolyzed by the enzyme myrosinase and are mainly found in cruciferous vegetables such as Chinese cabbage (Brassica campestris L. ssp. pekinensis). lsothiocyanates (ITCs) are glucosinolate degradation products with reported anticarcinogenic properties. Korean Chinese cabbage in the form of 'kimchi' is a staple part of the Korean diet. In this study, we examined the effects of storage temperature and duration on glucosinolate, ITC, soluble sugar, and organic acid levels in kimchi. Changes in pH and the impact of various parts of the Korean Chinese cabbage being used during the preparation of the dish were also assessed. Extracted ITC levels, analyzed via gas chromatography (GC) and GC/mass spectrometry (GC/MS), were higher in the midrib parts than in the cabbage leaves after storage at both 4 and $20^{\circ}C$. During storage, organic acid levels increased while soluble sugars were depleted. The pH initially increased (after 1 day at $20^{\circ}C$, and 1 week at $4^{\circ}C$), but subsequently decreased over time at both temperatures. Glucosinolate and ITC levels increased in the beginning of storage but then generally fell during further storage. Our data suggest that acidity-related reduction in myrosinase activity during storage may decrease glucosinolate and ITC levels. The changes in these levels depended on the storage conditions and the Korean Chinese cabbage parts used for the kimchi preparation.

Improvement of Kimchi Juice Fermentation by Combined method for Chinese Cabbage Waste Utilization (폐기물 활용을 위한 종합적 처리방법의 김치쥬스 발효 향상)

  • 전윤기;윤석권;김우정
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.26 no.5
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    • pp.794-799
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    • 1997
  • The effective fermentation methods of Kimchi juice for utilization of outer layer of Chinese cabbage, an waste of Kimchi industry were studied. The Kimchi juice prepared with brining and grinding the waste of Chinese cabbage and addition of spices was fermented at $25^{\circ}C$. Addition of 5$^{\circ}C$15% fermented Kimchi juice of pH 5.4 at initial stage and pH 4.4 at middle state resulted in a significant increase in fermentation rate and solid content after 12 hours of fermentation. The combined method of enzymatic hydrolysis(0.1% viscozyme) of the brined and ground cabbage and addition of 2.0% NaCl, 1.0% sucrose and 10% fermented juice of pH 5.4 first and 4.4 during fermentation, respectively resulted in more rapid fermentation. The solid concentration was 5 times higher than control at maximum point and acidic and total flavor intensity were also significantly high.

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The Changes of Pectic Substances and Enzyme Activity, Texture, Microstructure of Anchovy Added Kimchi (멸치 첨가 김치의 숙성 중 펙틴 함량, 효소 활성, 조직감과 미세구조의 변화)

  • 송영선;류복미;전영수;문갑순
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.3
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    • pp.470-477
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    • 1996
  • This study was intended to observe the changes of pectic substances and enzyme activities, texture, microstructure of anchovy added kimchi during fermentation for 4 weeks at 4$^{\circ}C$. Content of alcohol insoluble solid(AIS) and HCl soluble pectin(HClSP) were decreased, whereas content of hot water soluble pectin(HWSP) was increased during fermentation. Content of HClSP was higher and HWSP was lower in anchovy added kimchi than control. Activity of pectinesterase(PE) was decreased, whereas activity of polygalacturonase(PG) was increased during fermentation. In anchovy added kimchi, PG activity was lower than control. Changes in microstructure of Chinese cabbage and kimchi during fermentation was lower than control. Changes in microstructure of Chinese cabbage and kimchi during fermentation was observed ; in the raw cabbage, parenchyma cells, intercellular space and middle lamella were clearly shown. But in salted cabbage, middle lamella became separated. In the late stage of fermentation, parenchyma cell walls were wrinkled and collapsed. Puncture forces of kimchi were decreased, whereas cutting forces of kimchi were increased as fermentation proceeded. The firmness was slightly higher in anchovy added kimchi than control at the late stage fermentation, which may be explained by the PG activity.

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The Antibacterial Properties of Filtrates from Chinese Cabbage Kimchi

  • Seong-Soo CHA;JeungSun LEE;Min-Kyu KWAK
    • The Korean Journal of Food & Health Convergence
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    • v.9 no.6
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    • pp.9-19
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    • 2023
  • Lactobacillus plantarum and Leuconostoc mesenteroides are crucial functional starters and predominant isolates in a wide range of fermented foods, particularly kimchi, whose constituents exhibit bioactive properties. We previously developed a methodology using anion exchange resins to purify peptidyl compounds from Lb. plantarum LBP-K10. Antibacterial cultures of Lb. plantarum LBP-K10 were obtained from the respective cultures' supernatants and filtrates. However, conclusive evidence of the efficacy of kimchi filtrates in eradicating pathogenic bacteria is lacking. We aimed to simulate the potential effects of antibacterial filtrates that contained antibacterial compounds which were derived from cultures of Lb. plantarum LBP-K10. We acquired the kimchi filtrates using a combination of centrifugation and filtration methodologies, without the requirement for inoculation. The filtered liquid from Chinese cabbage kimchi, inoculated with Lb. plantarum LBP-K10 as a starter culture, and the non-inoculated liquid from Chinese cabbage kimchi (referred to as CCK and CCKRef, respectively) were were examined. CCK demonstrated greater inhibitory activity and a more significant bactericidal effect against the bacterial indicator strains. The minimum inhibitory concentration demonstrated comparable outcomes in tests against both Gram-positive and Gram-negative bacteria. This research offers a groundbreaking examination that displays the effectiveness of profiling peptidyl compounds within kimchi filtrates for curing bacterial infections.