The objective of this study was to investigate the changes in the microbial properties of taurine supplemented Kimchi during fermentation at $6^{\circ}C$ for 46 days. Chinese cabbage was brined in 10% salt solution for the control Kimchi and in 10% salt solution containing 1, 2 or 4% taurine (w/w, based on cabbage) for taurine supplemented Kimchi (Taurine I, II, and III groups, respectively). The pH values of all the groups dramatically decreased after 1-day of fermentation. Total numbers of viable cells were highest at 5-days of fermentation for the control, at 9-days of fermentation for Taurine I, and at 23-days of fermentation for Taurine II and III. The highest numbers of lactic acid bacteria were found at 9-days of fermentation for the control and Taurine I, and at 18-days of fermentation for Taurine II, and at 13-days of fermentation for Taurine III. The fermentation periods required to reach the highest numbers of Leuconostoc bacteria for Taurine I, II and III were longer than that for the control, suggesting that taurine might inhibit the growth of Leuconostoc bacteria during Kimchi fermentation. Based on the results obtained from the present study, it is concluded that adding taurine to the production of Kimchi could delay the ripening period of Kimchi.
This study was undertaken to investigate changes m curve angle of Chinese cabbage blade during salting at various concentration(10, 15, 20, 25%) of salt to evaluated salting degree by curve angle during salting at 20$^{\circ}C$. Salt concentration of brine, the amount of water elution, salt penetration of the tissue(salt concentration of Chinese cabbage), weight loss and texture were investigated. Correlation relation between the above factors and curve angle were determined. The curve angles by method of holding the edge of the Chinese cabbage blade was measured. The curve angles of the mesophyll were proportional to salting time and salt concentration, but slope of line equation showed higher than that of mid-rib. The ideal method of salting evaluation by curve angle was MCA-MRC (the measuring curve angle of mid-rib C) at each concentration of salt. The results of curve angle when reached 3% salt of Chinese cabbage tissue calculated by MCA-MRC at 10, 15, 20 and 25% salting were 57$^{\circ}$, 43$^{\circ}$, 36$^{\circ}$, and 33$^{\circ}$, respectively. And salting times calculated by the same conditions were 19, 12.5, 9.1 and 4.4hours, respectively.
Journal of the Korean Society of Food Science and Nutrition
/
v.42
no.10
/
pp.1649-1655
/
2013
This study is conducted to investigate the quality characteristics of kimchi with added Allium hookeri root (AHR) during a 56-day fermentation process at $4^{\circ}C$. AHR was added to salted cabbage at concentrations of 0, 5, 10, and 20% (w/w). The quality characteristics of the kimchi with added AHR were determined by measuring pH, acidity, salinity, reducing sugar, microbial amounts, and sensory evaluation. AHR had a higher level of crude lipid and potassium than other kinds within the Allium family. All kimchi with added AHR gradually decreased in the pH level compared to Baechu kimchi until 2 weeks, and kept a higher level of pH than Baechu kimchi until 8 weeks. Salinity showed a range of 1.87~2.43% over 8 weeks. The reducing sugar content showed no difference between all kimchi. In sensory evaluations, overall acceptance, taste and texture were highest in kimchi with added 10% AHR.
We tested the effects of dietary intake of freeze-dried Korean traditional fermented cabbage (generally known as kimchi) with varying amounts of sodium on blood pressure and cardiac hypertrophy in spontaneously hypertensive rats (SHRs). Wistar-Kyoto rats (WKY), as a control group, received a regular AIN-76 diet, and the SHRs were divided into four groups. The SHR group was fed a regular diet without kimchi supplementation, the SHR-L group was fed the regular diet supplemented with low sodium kimchi containing 1.4% salt by wet weight, which was provided in a freeze-dried form, the SHR-M group was supplemented with medium levels of sodium kimchi containing 2.4% salt, and the SHR-H group was supplemented with high sodium kimchi containing 3.0% salt. Blood pressure was measured over 6 weeks, and cardiac hypertrophy was examined by measuring heart and left ventricle weights and cardiac histology. SHRs showed higher blood pressure compared to that in WKY rats, which was further elevated by consuming high sodium containing kimchi but was not influenced by supplementing with low sodium kimchi. None of the SHR groups showed significant differences in cardiac and left ventricular mass or cardiomyocyte size. Levels of serum biochemical parameters, including blood urea nitrogen, creatinine, glutamic-oxaloacetic transaminase, glutamic-pyruvic transaminase, sodium, and potassium were not different among the groups. Elevations in serum levels of aldosterone in SHR rats decreased in the low sodium kimchi group. These results suggest that consuming low sodium kimchi may not adversely affect blood pressure and cardiac function even under a hypertensive condition.
Journal of the Korean Society of Food Science and Nutrition
/
v.29
no.5
/
pp.900-907
/
2000
The antioxidant effects of dichloromethane, ethylacetate or water fraction of kimchi added to the 1% cholesterol diet were studied. Six New Zealand white rabbits in each group were fed either control diet (basal diet containing 1% cholesterol) or experimental diet containing dichloromethane (CH$_2$Cl$_2$), ethylacetate (EtOAc) or water ($H_2O$) fraction of kimchi in the control diet for 16 weeks. The amount of each solvent fraction of kimchi added to the experimental diet was equivalent to 5% of freeze-dried kimchi. Levels of hepatic lipid oxidation expressed as TBARS or peroxide value for the experimental groups were lower than that of control (p<0.05). Liver homogenated of the experimental group containing dichloromethane fraction of kimchi inhibited LDL oxidation in the presence of Cu++ by 46% (p<0.05). The activities of catalase, Glutathione peroxidase (GSH-Px), Cu, Zn-superoxide (Cu, Zn-SOD) and Mn-superoxide (Mn-SOD) of experimental groups were lower than those of control group. Low enzyme activities observed from the kimchi solvent fraction groups might be due to the level of lipid oxidation progressed less in these groups. The most significant antioxidant effects were observed from dichloromethane fraction of kimchi among the experimental groups. The major fatty acids of hepatic phospholipid of rabbit were C18:2 and C18:0. But the major fatty acid profile was changed into C16:0, C18:0, C18:1, and C18:2 when rabbit was fed 1% cholesterol diet for 16 weeks, and this profile was almost the same as in rabbit fed diet containing kimchi solvent fraction. The ratio for unsaturated fatty acid to saturated fatty acid decreased by cholesterol induced diet and it was not corrected by kimchi solvent fractions.
Journal of the Korean Society of Food Science and Nutrition
/
v.26
no.6
/
pp.1006-1012
/
1997
To observe the food quality of Baik-kimchi which is known as a watery Chinese cabbage pickles without fish sauce and red pepper paste, the changes of dietary fibers and pectic substances during fermentation at 5$^{\circ}C$ and $25^{\circ}C$ were studied. Baik-kimchi fermented at $25^{\circ}C$ showed a greater changes in pH and acidity than those of 5$^{\circ}C$ during storage. Ripened Baik-kimchi products fermented at 5$^{\circ}C$ could be prepared on 9~12 days of fermentation, and those had a pH range from 4.25 to 4.40 and acidity of 0.34~0.53. But in the case of $25^{\circ}C$ fermentation, Baik-kimchi ripened for 3 days showed a pH of 4.02 and acidity of 0.54. The pH and acidity of the Baik-kimchi juice changed more rapidly than those of the Baik-kimchi solid regardless of fermentation temperatures. The content of soluble dietary fiber(SDF) was ranged from 3.06 to 4.87% at 5$^{\circ}C$ and a wide variation in SDF was observed in the sample fermented at $25^{\circ}C$(4.15~11.22%). Insoluble dietary fiber(IDF) were increased from 21.66% to 28.42% in solid of Baik-kimchi during fermentation at 5$^{\circ}C$ and ranged from 21.37% to 24.65% for sample fermented at $25^{\circ}C$. A notable amount of pectin had been dissolved in juice of Baik-kimchi till the best ripening time and showed the level of 223.2mg/100ml at 5$^{\circ}C$ on the day of 9 and 207.3mg/100ml at $25^{\circ}C$ on the day of 2. In contrast, the contents of pectin in solid Baik-kimchi decreased, whereas contents of sodium hexametaphosphate soluble pectin(HXSP) and HCl soluble pectin(HClSP) increased with fermentation period.
Kim, Young-Hee;Kim, Young-Sook;Lee, Kyeoung-Im;Shin, Ae-Sook;Park, Hoon
Journal of the Korean Society of Food Science and Nutrition
/
v.25
no.4
/
pp.593-600
/
1996
To investigate the dining habits in relation to Kimchi for the Koreans in Commonwealth of Independent States(CIS), a survey was conducted to 199 Koreans living in Moscow, Sahalin, Uzbekistan, and Kazakstan. Most of the respondents answered that thor keep the Korean food lifestyle, and especially the old age group and Koreans in Sahalin showed higher ratio for Korean food lifestyle. In the Kimchi preference and Kimchi consumption, 85.9% of the respondents like Kimchi because Kimchi is our traditional food and its taste is good, and 95% of them consumed Kimchi once or more everyday. In the kinds of Kimchi, 99% of the respondents had experiences in eating or seeing Chinese cabbage Kimchi, 91.5% cucumber Kimchi, 88.4% cabbage Kimchi, 82.4% white water Kimchi, 75.4% sikhae, respectively, while the frequencies of kakdugi, chonggak Kimchi, and leek Kimchi were relatively low. In connection with the utilization of Kimchi, many respondents answered that Kimchi is sometimes used in cooking of Kimchi cchigae or Kimchi bokkum. Most of Russians like Kimchi in spite of the hot taste and it shows the possibility that Kimchi can be spread throughout foreign countries.
Journal of the Korean Society of Food Science and Nutrition
/
v.33
no.1
/
pp.52-58
/
2004
The active principle responsible for lipid lowering in Chinese cabbage kimchi, 3-(4-hydroxyl-3'5'-dimethoxyphenyl)propionic acid, of molecular weight 226, was chemically synthesized and then used for the treatment of hypercholesterolemia in male New Zealand white rabbit. Hypercholesterolemia in rabbits were induced by feeding 0.5% cholesterol added chow diet for 5 weeks. Each experimental group has four rabbits in it. for the 1st experiment,3-(4-hydroxyl-3'5'-dimethoxyphenyl)propionic acid or simvastatin was injected to the ear vein of rabbit every other day for 16 days (2 mg/3 kg/2 days) while normal chow diet was provided. Blood was drawn every 4th day. For the 2nd experiment, all the experimental condition was same as the 1st trial except 0.5% cholesterol diet was provided while 16 days. Plasma cholesterol level was decreased when cholesterol in the diet was removed. Decreased in cholesterol in kimchi and simvastatin groups were 18.65 and 29.67%, respectively compared to the control when the normal diet was given, and cholesterol increase was inhibited by 33.79 and 21.81% for kimchi and simvastatin groups, respectively, when 0.5% cholesterol diet was provided. The drop in LDL-C level by the active principle of kimchi and simvastatin was not significant when normal diet was given, however the changes was significant (p<0.05), approximately 130% decrease, when 0.5% cholesterol diet was given. The 105% and 62% decreased in triglyceride concentration were observed from 0.5% cholesterol diet fed kimchi and simvastatin groups respectively HDL cholesterol levels in experimental groups were not changed significantly from the both trials. The HMG-CoA reductase activity of kimchi and simvastatin groups were found to be higher than that of control to compensate the hypercholesterolemic condition induced by 0.5% cholesterol diet in these groups. In conclusion, diet is an important factor to control the hypercholesterolemia besides drug treatment. 3-(4-hydroxyl-3'5'-dimethoxyphenyl)propionic acid that is the active principle in Chinese cabbage kimchi seems a beneficial to the hypercholesterolemia and its effect is comparable to that of simvastatin.
The purpose of this research aims to reveal how radish kimchi (Jong-ga) differs in Jong-ga recipes and old cookbooks. To accomplish this, old cookbooks ("Soowoonjabbang", "Jusiksiui", "Eumsikbangmunnira", "Siuejunsuh", "Banchandeungsok", and "Buinpilji") were reviewed and 8 Jong-ga recipes (Seogye Park Se-dang from the Bannam Park clan Jong-ga, Myungsukgong from the Changnyeong Jo clan Jong-ga, Nampa Park Jae-gyu from the Milyang Park clan Jong-ga, Geunggudang Kim Joong-jeung from the Gwangsan Kim clan Jong-ga, Dongchundang Song Jun-gil from the Eunjin Song clan Jong-ga, Myeongjae Yun Jung from the Papyung Yun clan Jong-ga, Daeseunggong Ryu Cha-dal from the Munhwa Ryu clan Jong-ga, Inmukjae Son Sung-jeung from the Milseong Son clan Jong-ga) from five areas were reviewed. We classified the radish kimchi into five categories, radish kimchi, Dongchimi, kkakdugi, Seokbakji and Nabak kimchi and other kimchi. According to old cookbooks, most kimchi was made with radish, cabbage, cucumber, pear, yuju, fish meat, and salt. Modern Jong-ga is made of seasoned radish, sticky rice paste, seafood, sugar, powdered pepper, fish sauce and salt. This study helps to understand notable clans' cultures via their recipes for kimchi.
We investigated the effects of Mulberry leaves fermented enzyme liquid(MLE) addition on the quality of Kimchi which were fermented at $5^{\circ}C$ during 30 days. MLE was added to salted cabbage at concentrations of 0%(C), 0.4%(MLE1), 0.8%(MLE2), and 1.2%(MLE3) (w/w). pH in Kimchi added upon 1.2% of MLE, was higher than that of Kimchi without MLE after 12 days of fermentation. The titratable acidity was increased by the addition of MLE, and particularly Kimchi added 1.2% of MLE showed the slowest changed level. The degree of salinity were decreased in Kimchi with MLE as well as control group. However, MLE1 showed significantly lower salinity than MLE2, MLE3 and control group (p<0.001). L, a, b values of control group indicated significantly higher than the Kimchi with enzyme liquid concentrations(MLE1~MLE3). As compared with the control group, the cutting force in treated groups were increased during the fermentation period, and especially MLE3 showed the highest value of hardness. Moreover, that growth of lactic acid bacteria and total bacteria were inhibited by the addition of MLE. In the sensory assessment, the color, taste, and overall preferences were higher in MLE2 than control group and MLE1, MLE3. The acceptability of MLE as an additive in Kimchi among middle school students was higher than in the control sample, with an optimum additive of 0.8% MLE, based on the lowest volume of leftovers. Therefore, it was confirmed that addition of 0.8% MLE appears to be an acceptable approach to enhance the quality of Kimchi without reduction of acceptability.
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