• Title/Summary/Keyword: Koumiss

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Sensory Profiles of Koumiss with added Crude Ingredients extracted from Flaxseed (Linum usitatissimum L.)

  • Kim, Dong-Hyeon;Jeong, Dana;Song, Kwang-Young;Chon, Jung-Whan;Kim, Hyunsook;Seo, Kun-Ho
    • Journal of Dairy Science and Biotechnology
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    • v.35 no.3
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    • pp.169-175
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    • 2017
  • Recently, the health-promoting effects of functional foods have been shown to prevent nutrition-related diseases, improve physical and mental well-being, satisfy hunger, and provide necessary nutrients for the human body. Koumiss is a common type of fermented mare's milk that has been shown to have beneficial therapeutic effects on cardiovascular disease, tuberculosis, and diarrhea as it can nourish vessels, relieve ill mood, and improve digestion. Hence, in this study, we aimed to prepare health-promoting koumiss using different concentrations of flaxseed (Linum usitatissimmum L.), which has the potential to control heart disease, hypertension, inflammation, and lung function. The pH was decreased to around 4.42-4.43, whereas the total anthocyanin (TA) content was increased to around 0.78~0.82% after fermentation of the koumiss premix. There were no significant differences in pH and TA among the three groups, including the control group. In sensory profile analysis, the taste, flavor, color, texture, and overall acceptability decreased in proportion to the added amount of flaxseed. These findings provided the first data describing the effects of flaxseed on koumiss fermentation, establishing a basis for commercial-scale production of koumiss containing fermented flax seed and for improving the health-promoting activity of koumiss.

Studies on Changes of ${\gamma}$-Globulin and Cholesterol of Rat Blood Fed on Yoghurt and Koumiss (Yoghurt와 Koumiss를 급여한 Rat 혈액중(血液中)의 ${\gamma}$-globulin과 Cholesterol의 변화에 관한 연구)

  • Jo, Gi Hwan;Kim, Dong Shin
    • Current Research on Agriculture and Life Sciences
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    • v.3
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    • pp.151-157
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    • 1985
  • This study was carried (Jut to find out changes of ${\gamma}$-globulin and cholesterol of rat blood fed on yoghurt and Koumiss. Yoghrt and koumiss were manufactured with fortifed milk and Lactobacillus bulgaricus, streptococcus thermophilus and Saccharomyces fragilis were used. The twenty rats were devised into 4 groups with 5 replications by completely randomized design. The experimental groups are the control, milk, yoghrt and koumiss feeding groups. The results are summerized as follows ; The changes of pH after 8hrs incubation with Lactobacillus bulgricus, Streptococcus thermophilus and the mixed strains were 3.7, 4.6 and 3.5 at $42^{\circ}C$, respectively. Average alcohol percentage of Koumiss was 1.2 (%). The average viscosity of yoghurt and Koumiss with milk showed 1500 cp and 390 cp. respectively at 11 % of milk total solid. ${\gamma}$-globulin contents in blood of rat fed on yoghurt and Koumiss were higher than those of control and milk. Cholesterol of rat blood in yoghurt and Koumiss group were lower than those of control and milk group.

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Manufacture of Functional Koumiss supplemented with Cichorium intybus L. (chicory) Extract - Preliminary Study

  • Kim, Dong-Hyeon;Jeong, Dana;Oh, Yong-Taek;Kim, Hong-Seok;Kim, Yun-Gyeong;Song, Kwang-Young;Kang, Il-Byung;Kim, Young-Ji;Park, Jin-Hyeong;Chang, Ho-Seok;Lim, Hyon-Woo;Chon, Jung-Whan;Kim, Hyunsook;Jeong, Dong-Kwan;Seo, Kun-Ho
    • Journal of Dairy Science and Biotechnology
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    • v.35 no.1
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    • pp.1-7
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    • 2017
  • Made using a natural mixed starter of lactic acid bacteria and yeast, Koumiss is a slightly alcoholic fermented mare's milk beverage, and a traditional drink of the nomadic populations of Central Asia. Cichorium intybus L. (chicory) is a sedative with potential cardioactive properties, and its oligosaccharides are beneficial in maintaining healthy gastrointestinal flora. Hence, in this study, we have generated a functional Koumiss containing two different concentrations of chicory. After fermentation of the Koumiss premix, the TA increased to 0.85~0.88%, and the pH decreased to ~4.3. The addition of either concentration of chicory had no significant effect on pH and TA. However, the taste, flavor, color, texture, and overall acceptability decreased in proportion to the added amount of chicory. This study has provided the first data on Koumiss supplemented with chicory. The results could be useful in developing high-quality Koumiss with functional activity using chicory, and allowing large-scale industrial production. Further studies are needed to determine if chicory root extract is beneficial for lifestyle-related diseases.

Starter Clutures for Milk Fermentation and Their Characteristics (우유발효에 이용되는 Starter Culture와 그 특성)

  • Keum, Jong-Soo;Kim, Jong-Woo
    • Journal of Dairy Science and Biotechnology
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    • v.14 no.1
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    • pp.97-118
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    • 1996
  • All over the world there is an increasing consumer awareness of the potential influence of various foodstuffs on our health. Today dairy products are expected to be more just food. They have to taste well, appeal and give pleasure, provide of well-being, provide specific health benefits and prevent disease. This paper reviews the different types of fermented milks and their microflora and includes recent work on yogurt, soft cheese and buttermilks, kefir and koumiss. There is considerable interest in the new health promoting products which are now available. Meanwhile during the last decade a new generation of fermented milk products containing selected intestinal bacteria has been introduced to the markets. These are discussed in the light of some recent findings on the ability to lower the blood cholesterol concentration and stimulate the immune response and also describes some fermented milk products available, selection criteria for commercial starter cultures.

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Study on the Manufacturing Properties of Korean-type Koumiss (한국형 Koumiss제조 특성에 관한 연구)

  • Lee, Jong-Ik;Song, Kwang-Young;Chon, Jung-Whan;Hyeon, Ji-Yeon;Seo, Kun-Ho
    • The Korean Journal of Food And Nutrition
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    • v.24 no.3
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    • pp.367-375
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    • 2011
  • For this study, Korean-type Koumiss was made by the fermentation of mixed cultures, in which yeast, Kuyveromyces, and microflora, Streptococcus thermophiles and Lactobacillus bulgaricus, were inoculated into 10% skimmed milk with added whey powder(control: A, 2%: B, 4%: C, 6%: D, and 8%: E). Fat, protein, lactose, titratable acidity, pH, the number of lactic acid bacteria, the number of yeast, alcohol content, volatile fatty acids, volatile free amino acids and minerals were measured in the products. The results were as follows: As the dosage of whey powder increased, fat increased from 0.74% in the control to 2.30% in sample E, protein increased from 2.95% in the control to 4.39% in sample E and lactose increased from 3.10% in the control to 7.43% in sample E. Titratable acidity and pH increased gradually. The number of lactic acid bacteria increased from $10^9\;cfu/m{\ell}$ in the control to $3.8{\times}10^9\;cfu/m{\ell}$ in sample E, and the number of yeast increased from $6.1{\times}10^7\;cfu/m{\ell}$ in the control to $1.65{\times}10^8\;cfu/m{\ell}$ in sample E, according to the increase of whey powder content. For alcohol content, the average values were 0.863%, 0.967%, 0.890%, 1.290%, and 1.313% for the control and samples B, C, D, and E, respectively. As the dosage of whey powder increased, alcohol content showed a tendency to gradually increase. The average alcohol content of E was 1.313 and this was higher than the alcohol content of Kazahstana-type Koumiss with 1.08%. Sixteen types of free amino acids were detected. Glycine was the lowest in the control at $0.38mg/m{\ell}$ and sample E contained $0.64mg/m{\ell}$. Histidine was also low in the control at $0.42mg/m{\ell}$ and sample E contained $0.65mg/m{\ell}$. On the other hand, glutamic acid was highest at $4.13mg/m{\ell}$ in the control whereas sample E had $6.96mg/m{\ell}$. Proline was also high in the control at $1.71mg/m{\ell}$ in control, but E contained $2.80mg/m{\ell}$. Aspartic acid and leucine were greater in sample E than in the control. For volatile free fatty acids, content generally had a tendency to increase in the control, and samples B, C, D, and E. Content of acetic acid gradually increased from $12,661{\mu}g/100m{\ell}$ in the control to $37,140{\mu}g/m{\ell}$ in sample E. Butyric acid was not detected in the control and was measured as $1,950{\mu}g/100m{\ell}$ in sample E. Caproic acid content was $177{\mu}g/100m{\ell}$ in the control and $812{\mu}g/100m{\ell}$ in sample E, and it increased according to the increase of whey powder content. Valeric acid was measured in a small amount in the control as $22{\mu}g/100m{\ell}$, but it was not detected in any other case. Mineral contents of Ca, P, and Mg increased from 1,042.38 ppm, 863.61 ppm, and 101.28 ppm in the control to 1,535.12 ppm, 1,336.71 ppm, and 162.44 ppm in sample E, respectively. Na content was increased from 447.19 ppm in the control to 1,001.57 ppm in sample E. The content of K was increased from 1,266.39 ppm in the control to 2,613.93 ppm in E. Mineral content also increased with whey powder content. In sensory evaluations, the scores increased as whey powder content increased. Flavor was lowest in the control with 6.3 points and highest in E with 8.2 points. Body and texture were highest at 4.2 points in the control, which did not have added whey powder. In the case of appearance, there were no great differences among the samples.

Characterization of airag collected in Ulaanbaatar, Mongolia with emphasis on isolated lactic acid bacteria

  • Choi, Suk-Ho
    • Journal of Animal Science and Technology
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    • v.58 no.3
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    • pp.10.1-10.10
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    • 2016
  • Background: Airag, alcoholic sour-tasting beverage, has been traditionally prepared by Mongolian nomads who naturally ferment fresh mares' milk. Biochemical and microbiological compositions of airag samples collected in Ulaanbaatar, Mongolia and physiological characteristics of isolated lactic acid bacteria were investigated. Methods: Protein composition and biochemical composition were determined using sodium dodecyl sulfate-gel electrophoresis and high performance liquid chromatography, respectively. Lactic acid bacteria were identified based on nucleotide sequence of 16S rRNA gene. Carbohydrate fermentation, acid survival, bile resistance and acid production in skim milk culture were determined. Results: Equine whey proteins were present in airag samples more than caseins. The airag samples contained 0.10-3.36 % lactose, 1.44-2.33 % ethyl alcohol, 1.08-1.62 % lactic acid and 0.12-0.22 % acetic acid. Lactobacillus (L.) helveticus were major lactic acid bacteria consisting of 9 isolates among total 18 isolates of lactic acid bacteria. L. helveticus survived strongly in PBS, pH 3.0 but did not grow in MRS broth containing 0.1 % oxgall. A couple of L. helveticus isolates lowered pH of skim milk culture to less than 4.0 and produced acid up to more than 1.0 %. Conclusion: Highly variable biochemical compositions of the airag samples indicated inconsistent quality due to natural fermentation. Airag with low lactose content should be favorable for nutrition, considering that mares' milk with high lactose content has strong laxative effect. The isolates of L. helveticus which produced acid actively in skim milk culture might have a major role in production of airag.

Fermentation and Microbial Characteristics of Korean Traditional Fermented Milk, Tarak (시판 막걸리로 제조한 전통발효유 타락의 발효 특성)

  • Jung, Jin-Kyoung;Ko, Seong-Hee;Oh, Se-Wook;Lim, Ji-Young;Chun, Tae-Hoon;Kim, SooA;Myoung, Kil-Sun;Jang, Sung Seek;Huh, Chul-Sung;Han, Young-Sook
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.4
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    • pp.602-609
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    • 2015
  • In this study, for modernization of Korean traditional fermented milk, Tarak was made using four kinds of commercial Makgeolli based on the ancient cookbook Suwoonjabbang. Samples of Tarak were periodically collected during 24 h of fermentation at $37^{\circ}C$. After fermentation, changes in pH, titration acidity, and viscosity were analyzed. Fermentation metabolites, including organic acids and free sugars, were analyzed by HPLC. Numbers of yeast and lactic acid bacteria during 24 h of fermentation were measured. The pH of Tarak significantly decreased (P<0.01), whereas its acidity significantly increased (P<0.01) during fermentation. The viscosity increased during 8~24 h of fermentation until curd was separated in Tarak. The level of ethanol increased from 0.37~0.52 mg/mL to 0.51~0.71 mg/mL during 24 h of fermentation. Lactic acid and lactose were the major organic acid and free sugar in Tarak, respectively. The number of lactic acid bacteria increased from 5.23~6.25 log CFU/mL to 9.87~10.41 log CFU/mL at the beginning during 24 h of fermentation. The number of yeast increased from 5.14~6.47 log CFU/mL to 6.99~7.73 at the beginning during 24 h of fermentation at $37^{\circ}C$. The major strains of Tarak were Pediococcus acidilactici, Lactobacillus fermentun, Lactobacillus curvatus, and Saccharomyces cerevisiae. Therefore, we concluded that Tarak was a fermented milk by both lactic acid bacteria and yeast, which was similar to koumiss or kefir.

Studies on the Production of Alcohol Fermented Milk (알코올 발효유(醱酵乳)의 제조(製造)에 대(對)하여)

  • Yoo, Jin-Young;Kang, Tong-Sam;Min, Byong-Yong
    • Korean Journal of Food Science and Technology
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    • v.10 no.3
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    • pp.337-343
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    • 1978
  • In order to develope a new kind of fermented milk, basic studies on several lactic acid bacteria and yeasts were conducted, 8 kinds of alcohol fermented milk were manufactured and sensory evaluation was undertaken. The results obtained are summarized as follows: 1. Four kinds of lactic acid bacteria were isolated, among which Y-2 strain was strongest in acid productivity and it was elucidated that acid productivity of all strains was stornger in synthetic medium than in milk medium. 2. The pH in milk medium inoculated with Y-2 strain and incubated at $30^{\circ}C$ for 24 hours was dropped from 5.8 to 3.8 and fluctuation in amino nitrogen content was found during incubation. 3. The pH in milk medium inoculated with K. fragilis and incubated at $30^{\circ}C$ for 7 days was dropped from 6.2 to 5.2 and amino nitrogen content was in the range of $0.12{\sim}0.27mg/ml$. Alcohol productivity of K. fragilis was stronger than E-2 and E-4 strain but no difference in alcohol productivity was found between milk medium and synthetic medium. 4. The repression in growth and acid productivity of lactic acid bacteria was recongnized if inoculated after inoculating yeast firstly. 5. Alcohol productivity was increased rapidly at the end of acid production of lactic acid bacteria if lactic acid bacteria if lactic acid bacteria and yeast were inoculated simultaneously. 6. Sensory evaluation showed that the product that alcohol content and acidity were 1% and 0.8% respectively had the best palatability(p<0.01). 7. Chemical composition of final product was similar to that of milk koumiss in ash, protein and moisture content.

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