• Title/Summary/Keyword: ginseng extracts

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Antioxidant Activities of Various Solvent Extracts from Ginseng (Panax ginseng C.A. Meyer) Leaves

  • Kang, Ok-Ju
    • Preventive Nutrition and Food Science
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    • v.16 no.4
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    • pp.321-327
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    • 2011
  • Water, methanol and ethanol extracts of ginseng leaves were assayed for total phenolics and flavonoids, ascorbic acid, cupric and ferrous ion chelating activities, 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging activity, ferric reducing antioxidant power (FRAP) assay and ABTS radical cation decolourization (TEAC) assay for their antioxidant properties. The ethanol extract of ginseng leaves contained significantly (p<0.05) higher amounts of total phenolics and flavonoids (600.57 and 1701 mg/100 g) than methanol (374.43 and 1512.64 mg/100 g) and water extracts (248.30 and 680.05 mg/100 g). Among solvent extracts of ginseng leaves, the ethanol extract showed the most powerful antioxidant activities. However, the ferrous ion chelating activity of ginseng leaf extracts were lower than the cupric ion chelating ability. These differences in concentrations of key antioxidants among various solvent extracts seemed to be responsible for their differences in antioxidant activities. These results suggest that ethanol extract of ginseng leaves has the most effective antioxidant capacity compared to the methanol and water extracts tested in the present study. Thus, it can be applied for the effective extraction of functional material from ginseng leaves for the usage of pharmaceutical and/or food industries.

Extraction Yields of Ginseng Saponins in the Extracts of Crude Drug Preparations with Various Concentrations of Ethanol (생약복방제의 에탄을 농도별 엑스중 인삼 사포닌의 이행량 조사)

  • 최강주;고성룡
    • Journal of Ginseng Research
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    • v.15 no.3
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    • pp.192-196
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    • 1991
  • As a part of studios on the Quality control of index components in crude drug preparations, extraction yields of ginseng saponins from crude drug extracts were identified by TLC and quantified by HPLC. So-Shi-Ho-Tang(小柴胡湯), Sa-Kun-Ja-Tang(四君子湯), Yook-Kun-Ja-Tang(六君子湯) and In-sam-Tang(人蔘湯) were extracted with water, 30%-ethanol, 50%-ethanol, 80%-ethanol and absolute ethanol to analyze ginseng saponins in the crude drug extracts prepared with various concentrations of ethanol. Ginseng saponins were extracted considerably more from the extracts with higher concentrations of ethanol than those with water or lower concentrations of ethanol. Extraction yields of ginseng-side-Rb$_1$, -Rb$_2$ and -R$_c$ from four crude drug preparations were the lowest as 4.9~45.9%, 5.0~40.1, and 6.3~43.7% in water extract and the highest as 29.5~62.6%, 26.7~61.4% and 31.4~62.0% in absolute ethanol extract, compared with those of 80%-methanol extracts.

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Ginsenosides Content of The Manufactured Ginseng Radices Extracts

  • Ko, Sung-Kwon;Lee, Chung-Ryul;Choi, Yong-Eui;Im, Byung-Ok;Hwan, Sung-Jong;Chung, Sung-Hyun
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.367.3-368
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    • 2002
  • The ginsenosides content of ginseng radices extracts were investigated in the Food Code and the Shibata methods. Crude saponins and each ginsenosides content of the manufactured ginseng radix alba extracts were revealed to be higher than those of the manufactured ginseng radix rubra extracts. A large amount of a ginseng radix rubra specific component(ginsenoside Rg3) was shown in the manufactured ginseng radix rubra extracts. Also a large amoung of ginsenoside Rg3 was shown in the manufactured ginseng radix alba extracts. (omitted)

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The Effects of Korean Ginseng (Panax ginseng C.A. Meyer) Extracts and Their Fractions on the Growth and Metabolism of Saccharomyces cerevisiae and Saccharomyces uvarum (인삼성분이 효모의 생육 및 대사에 미치는 영향)

  • 박세호;조재선
    • Journal of Ginseng Research
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    • v.17 no.3
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    • pp.210-218
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    • 1993
  • This study was conducted to investigate the effects of Korean ginseng extracts and their fractions on the growth of Saccharomyces cerevsiae and Saccharomyces uvamm, their glucose consumption and alcohol production. The growth of both yeasts were stimulated by ginseng extracts and their water soluble fractions, but were supressed by ether extracts and an n-butanol extracts. Their growth were enhanced considerably by low molecular weight fractions (< 1,000) in water solubles. Similar results were also obtained with glucose consumption by yeasts. Substances increasing the growth and glucose consumption by yeasts proved to be a low molecular weight fractions (<1,000) in water solubles not saponins. The production of n-propyl alcohol by yeast was enhanced by adding ginseng extracts into the media, but that of ism-butyl alcohol was suppressed at same condition.

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Residual Solvents and Mineral Contents in Ginseng Extracts with Different Extracting Conditions (추출조건에 따른 인삼농축액 중의 잔류용매 및 무기물 함량)

  • Lee, Seon-Hwa;Kim, Woo-Seong;Kim, Yong-Mu;Hong, Yeong-Pyo;Ahn, Yeong-Soon;Park, Heung-Jai;Kim, Ok-Hee
    • Journal of Environmental Science International
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    • v.16 no.1
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    • pp.39-44
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    • 2007
  • This study was conducted to investigate the contents of residual solvents and mineral components(11 kinds) in ginseng extracts with different extracting conditions(5 types) and commercial ginseng extract products(domestic, imported). Fine root was extracted with solution having various ethanol concentration after hexane treatment. Among 5 type extracts, residual solvent(hexane) was detected ginseng extracts treated ethanol mixed with hexane. But extracts that dried after soaked in hexane wasn't detected hexane. Mineral components(Al, Mn, Fe, Cu and Zn) were detected in fine root and 5 types of extracts. The contents of mineral components between fine root and extracts with various extracting conditions were similar, however, extracts that dried after soaked in hexane showed the lower amount in Al, Fe, Pb than the others. In comparison with commercial ginseng ex-tract products(domestic, imported), the distribution pattern of mineral was similar but the contents were a little different.

The Characteristics and Antioxidant Activity of Non-enzymatic Browsing Products from Fresh Ginseng Bxtracts and Those with Arginine or Glucose (수삼추출물 및 Glucose 또는 Arginine첨가 추출물의 특성과 항산화작용에 대하여)

  • 최강주;김동훈
    • Journal of Ginseng Research
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    • v.5 no.1
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    • pp.8-23
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    • 1981
  • Color is one of the most important quality factors of red ginseng (Hong-sam) which is processed from fresh ginseng (Panax ginseng C. A. Meyer). Therefore, a study of characteristics of browning mixtures of aqueous fresh ginseng extracts, factors which accelerate the browning of the aqueous extracts, and the antioxidant activity of the browning mixtures may contribute to the improvement of the color and other quality of red ginseng and other ginseng products such as ginseng extracts. In the present study, factors which affect the Maillard-type browning reaction of aqueous extracts of fresh ginseng roots were investigated firstly by adding various concentrations (0.001-0.5M) of arginine or glucose solutions, by varying the browning reaction temperatures and durations. Secondly, some characteristics such as brown color intensity, amounts of water-soluble and ether-soluble extracts, amounts of non-dialyzable materials, pH, viscosity, and reactivity with 2,2'- diphenyl -1 - picrylhydrazyl and antioxidant activity of the browning mixtures of the aqueous fresh ginseng extracts with small amounts of 0.1 M arginine, 0.1 M glucose, and distilled water at various browning temperatures and reaction time were studied. The results of the present study are as follows. 1. Color intensity (absorbance at 470 nm) of the browning mixtures was increased by adding various concentrations of arginine solution to the fresh ginseng extract, but the addition of the same amount of glucose solution did not increase the color intensity. 2 The amounts of water- or ether-soluble extracts, amounts of non-dialyzable materials were slightly greater in case of the browning mixtures of the fresh ginseng extract with 0.1M arginine solution than in case of the browning mixtures of the fresh ginseng extract with the same amount of 0.1 M glucose solution. In the process of the browning reaction, the pH of the browning mixtures of the fresh ginseng extract with 0.1 M arginine solution decreased slightly, while that of the browning mixtures with 0. 1 M glucose solution was almost constant. 3. The color intensity (absorbance at 470 nm) of the browning mixtures of the fresh ginseng extract with 0.1 M arginine or 0.1 M glucose solutions did not correlate well with the reducing power or the antioxidant power of the browning mixtures. The antioxidant activity of 90% ethanol extracts from the earlier stages of the browning mixtures of the fresh ginseng extract with the arginine solution was almost comparable to that of the 90% ethanol extracts from the later stages of the corresponding browning mixtures. The browning mixtures of only the fresh ginseng extract or of the fresh ginseng extract with the glucose solution showed considerable antioxidant activity, although both showed less brown color intensity than the fresh ginseng extract with he arginine solution.

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A Study on the Production of Ginseng Extracts 1. Production of extracts from fresh ginseng (인삼엑기스 제조에 관한 연구 제1보, 수삼 엑기스 제조)

  • 김해중;임무현;조규성;주현규;이석건
    • Journal of Ginseng Research
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    • v.4 no.1
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    • pp.1-7
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    • 1980
  • In order to establish effective extracting method of ginseng extracts from fresh ginseng, the yield, chemical composition, physical properties and organoleptic quality of the extracts, which are extracted with various concentrations of ethanol, were investigated. The results are as follows : 1. The yield of the extracts was increased with decreasing the concentration of ethanol as solvent. As in case of water as a solvents, the highest yield was achieved when 23.64% of water was used. The yield were 12.3% and 9.05%, when 70% and 90% of ethanol were used, respectively lively. 2. Crude protein content is the highest level and nitrogen·free extracts content is the lowest at the concentration of 50% ethanol. Lipid was increased linerly while ash was decreased as increment of ethanol concentration. 3. Viscosity and residue of the extracts also decreased in accordance with the increament of ethanol concentration and the transmittance value and pH of extract solutions were almost similar except transmittance value of the water extracts. 4. The extracts extracted with 70% ethanol gave the best result of sensory test. The total sensory test score of each extracts (70%, 90%, 50%, 0% and 30%) were 70, 65, 50, 46 and 41, respectively.

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Studies on the Effect of Korean Ginseng Components on Alcoholic Fermentation by Yeast. 2. Effect on the production of higher alcohols. (인삼성분이 효모의 Alcohol 배양에 미치는 영향 2. 고급 Alcohol 생성에 미치는 영향)

  • Park, Se-Ho;Yu, Tae-Jong;Lee, Seok-Geon
    • Journal of Ginseng Research
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    • v.5 no.2
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    • pp.148-154
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    • 1981
  • The effect of ginseng extracts and ginseng saponins on alcoholic fermentation and production of higher alcohols in malt wort by Sacch. uvarnm were studied The results otained were as follows. 1. Alcoholic fermentation of the wort contained 1-5% of ginseng extracts was inhibited slightly, but the wort contained 0.1-0.5% of ginseng extracts were same as the control. 2. 0.02-0.2% of saponin stimulated alcoholic fermentation. 3. Higher alcohol contents were decreased when the wort contained 0.1-0.5% of ginseng extracts. 4. Higher alcohol content were increased when the wort contained 0.02-0.2% of ginseng saponin. Iso-amylalcohol content of fermented wort which contained ginseng saponins were higher 18 -35mg/1 than those of control.

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Biotransformation of Ginseng Extract to Cytotoxic Compound K and Ginsenoside $Rh_2$ by Human Intestinal Bacteria

  • Bae, Eun-Ah;Choo, Min-Kyung;Lee, Young-Churl;Kim, Dong-Hyun
    • Natural Product Sciences
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    • v.10 no.6
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    • pp.347-352
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    • 2004
  • When saponin extracts of dried ginseng and red ginseng were anaerobically incubated with human intestinal microflora, these extracts were metabolized to compound K and ginsenoside $Rh_2$, respectively. However, when these extracts were incubated with commercial lactic acid bacteria, these did not metabolize these ginsenosides to compound K or ginsenoside $Rh_2$. Among some intestinal bacteria isolated from human feces, Bacteroides C-35 and C-36 transformed these saponin extracts to compound K and ginsenoside $Rh_2$, respectively. These bacteria also transformed water extracts of dried ginseng and red ginseng to compound K and ginsenoside $Rh_2$, respectively, similarly with that of the saponin extracts. Among transformed ginsenosides, compound K and 20(S)-ginsenoside $Rh_2$ exhibited the most potent cyotoxicity against tumor cells.

Study on the Qualitative Discrimination of White, Red, and Black Ginseng Extract (백삼,홍삼과 흑삼 추출물의 정성적 구별법에 관한 연구)

  • Lee, Young-Sang;Im, Deok-Ho;Yang, Jin-Chul;Noh, Deok-Soo;Kim, Kwang-Il;Oh, Soo-Kyo;Choi, Kyo-Chan;Cha, Yun-Hwan
    • The Korean Journal of Food And Nutrition
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    • v.24 no.1
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    • pp.138-143
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    • 2011
  • This study analyzed the maltol quality, composition ratio of fatty acids, and contents of phenolic compounds in white ginseng extracts(four types), red ginseng extracts(five types), black ginseng extracts(two types), and Chinese ginseng extracts(nine types). By examining patterns in these measurements, we determined the characteristic factors of the extracts and measured the possibility of qualitative analysis. In the analysis of maltol using TLC, white ginseng extracts were not detected while red and black ginseng extracts were detected, so the possibility of detection was considered as a characteristic factor for qualitative analysis. Regarding the composition of fatty acids, palmitic and linoleic acids were the main fatty acids in the ginseng extracts palmitic acid was high in white ginseng extracts while linoleic was low in red ginseng extracts. Regarding the ratio(Pal/Lin) of the two fatty acids, there was a large difference between white ginseng extracts(56.7~64.3%) and red ginseng extracts(32.0~38.5%), and these figures seemed to be characteristic factors for the analysis. For the phenolic compounds, extracts contained maltol, caffeic acid, syringic acid, p-coumaric acid, ferulic acid, and cinnamic acid. White ginseng extracts contained similar percentages of phenolic compounds while red ginseng extracts had high maltol content. According to the measurement results of the percentages of maltol and cinnamic acid, white ginseng extracts showed values below five, whereas red and black ginseng extracts showed 53~289, which was also a characteristic factor for qualitative analysis. Consequently, we found that we can differentiate between ginseng extracts using characteristic factors that we analyzed in an experiment on white ginseng extracts from China.