• Title/Summary/Keyword: Kujeungkupo

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The Sensory Charactateristics of Korean Green Tea Produced by Kujeungkupo′s Method (구증구포(九蒸九)에 의한 녹차의 제조 II. 관능적 품질특성 및 기호도)

  • 박금순;전정례;이선주
    • Korean journal of food and cookery science
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    • v.15 no.5
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    • pp.475-482
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    • 1999
  • This study was carried out to prepare green tea by traditional roasting process, Kujeungkupo, and to determine its sensory characteristics. The carotenoid content in green tea was increased by roasting and reached 1,317 mg/100 g by Kujeungkupo. Of all carotenoids, the contents of lutein and $\beta$-carotene were 1,170 mg/100 g and 111.1 mg/100 g, respectively. The total cathechin content in green tea was 14.57 g/100 g after 9th roasting. The more the number of roasting the little contents of cathechin in green teas. Of all cathechin, epigallocathechingallate was the highest(6.80g/100 g) followed by epicathechingallte and epicathechin. total cholrophyll content was 141 mg/100 g of green tea. The free sugar content in Kujeungkupo green tea wet 2.18 g/100 g, of which sucrose comprised 46% (1.01 g/100 g). The color value ($\Delta$E) of Kujeungkupo green tea was 16.25. In sensory evaluation, sweet taste was the highest in green tea roasted 3 times and the flavor was best in that roasted 5 times. The sweet and astringent tastes of green tea had negative relationships with a and b values. The content of cathechin in green tea had a negative relationship with sweet taste and a positive relationship with astringent taste.

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Conversion of Ginsenosides by 9 Repetitive Steamings and Dryings Process of Korean Ginseng Root and Its Inhibition of BACE-1 Activity (인삼의 구증구포에 의한 Ginsenoside의 성분변화 및 BACE-1 억제효과)

  • Kim, Do-Wan;Kim, Yu-Jin;Lee, Yun-Jin;Min, Jin-Woo;Kim, Se-Young;Yang, Deok-Chun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.6
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    • pp.1557-1561
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    • 2008
  • Red ginseng possibly has new ingredients converted during steaming and dry process from fresh ginseng. Kujeungkupo method which means 9 repetitive steamings and dryings process was used for the production of red ginseng from 6-year old ginseng roots. Saponin was extracted from each red ginseng produced at the 1st, 3rd, 5th, 7th, and 9th during the steaming and drying treatment, and we analyzed saponin content with TLC. Minor saponins, such as ginsenoside-Rg3, -Rh2, compound K, and F2, increased as the process time of steaming and drying, but major saponins (ginsenoside-Rb1, -Rb2, -Rc, -Rd, -Re, -Rf, -Rg1) were decreased. Major saponins were yet observed almost at the 1st process, then degraded as the increasing time of steaming and drying process. Especially, ginsenoside-Re and -Rg were observed as considerable amount after the 1st treatment, but there were no trace of them after the 9th treatment. Ginsenoside-Rg1, -Rb2, and -Rb1 were also reduced remarkedly by 96.6%, 96%, and 92.3%, respectively. Minor saponins were increased significantly, especially for ginsenoside-Rg3 and ginsenoside-F2. These results suggest that Kujeungkupo method is the very useful method for the production of minor ginsenoside-Rg3 and -Rh2.

Conversion of Acidic Polysaccharide and Phenolic Compound of Changed Ginseng by 9 Repetitive Steaming and Drying Process, and Its Effects of Antioxidation (인삼의 구증구포에 의한 산성다당체, 페놀성화합물의 변환 및 항산화능)

  • Kim, Do-Wan;Lee, Yun-Jin;Min, Jin-Woo;Kim, Yu-Jin;Rho, Young-Deok;Yang, Deok-Chun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.23 no.1
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    • pp.121-126
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    • 2009
  • Korean ginseng (Panax ginseng C. A. Meyer) has been used as an important medicinal plant in the Orient for a long time. It has been claimed that ginseng has many beneficial bioactive effects on human health, such as antitumor, antistress, antiaging and enhancing immune functions. Red ginseng possibly have new ingredients converted during steaming and dry process from fresh ginseng. In this study, pharmacological efficacy and ingredient conversion of ginseng by 9 repetitive steaming and drying process were investigated measuring conversion efficiency of acidic-polysaccharide, phenolic compounds and inhibition of peroxide lipides. It was found that acidic-polysaccarides were increased by heat treatment. In addition, maltol of phenolic compounds, strong antioxidant, produced during the process of red ginseng by Maillard reaction. Acidic-polysaccarides and maltol were increased after the 1st and 3rd steaming and drying treatments, but they were decreased gradually after 5th, 7th, and 9th treatments. Antioxidant activity was increased as increasing treatment times of steaming and drying without significance. Effect of red ginseng extract on inhibition of peroxide was increased gradually until after the 7th treatment, but remarkably decreased after the 9th treatment.

Conversion of Brown Materials, Crude Lipids, Crude Proteins and Aromatic Compounds of Changed Ginseng by 9 Repetitive Steaming and Drying Process (인삼의 구증구폭(九蒸九曝)에 의한 갈변물질, 조지방, 조단백 및 향기성분의 변화)

  • Kim, Do-Wan;Lee, Yun-Jin;Min, Jin-Woo;Lee, Bum-Soo;In, Jun-Gyo;Yang, Deok-Chun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.2
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    • pp.333-339
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    • 2008
  • Korean ginseng (Panax ginseng C. A. Meyer) has been used as an important medicinal plant in the Orient for a long time. It has been claimed that ginseng has many beneficial bioactive effects on human health, such as antitumor, antistress, antiaging and enhancing immune functions. Red ginseng possibly have new ingredients converted during steaming and dry process from fresh ginseng. Kujeungkupo method which means 9 repetitive steaming and drying process was used for the processes of green tea, Polygonatum odoratum, and Rehmanniae radix preparata. In this study, ingredient conversion of ginseng by 9 repetitive steaming and drying process were investigated measuring conversion efficiency of brown materials, crude lipids, crude proteins and aromatic compounds. Brown materials, as an antioxidant, in red ginseng were produced through non-enzymatic reaction by heat. Repetitive steaming and drying treatments on ginseng root contiunously increased the content of brown materials and the chromaticity. Crude lipids were degraded by heat and converted into volatile aromatic ingredients. Crude lipids were degraded and decreased by 0.52% after the 5th and 7th. Crude proteins were also decomposed and converted to amino acid. Crude proteins after the 9th treatment were decreased by more than 85% as increased times of treatments. A bicyclogermacrene as aromatic material was decreased as increased treatment times, while but a aromatic caramel was increased.