• Title/Summary/Keyword: korean ginseng

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Systematic Analysis of Ginseng-focused Research Worldwide (국내외 인삼연구동향에 대한 분석 및 고찰연구)

  • Park, Hye-Jung;Son, Chang-Gue
    • The Journal of Korean Medicine
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    • v.29 no.1
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    • pp.60-66
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    • 2008
  • Objective : To construct a comprehensive understanding of thepharmaceutical efficacies of ginseng, then build a basis for a research strategy for development of Korean ginseng as a globally-competitive medical product. Methods : Surveying literature, we found 1690 ginseng-focused papers in Pub-Med. Analysis of was done of number of reports according to date, nation, components of Panax ginseng, research methods, and effects of ginseng. Results : The main countries contributing toginseng research are China, Korea, Japan and America. Recently, ginseng-related studies have been increasing, and individual compounds from ginseng or its products rather than ginseng itself are subjects for study. Anti-cancer associated or neuroprotective effects showed priority in therapeutic efficacy. Panax ginseng was the focus of around 60% of all ginseng-related studies, but only 22% of them were done in Korea. Conclusion :This review will help Korean doctors or scientists to systematically understand ginseng as a powerfulherbal medicine, and to develop Korean ginseng as a globally competitive drug in world markets.

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Ginsenosides contents of Korean ginseng and ginseng products (한국산 인삼 및 인삼 제품 중의 ginsenosides 함량 비교)

  • Suh, Bong-Soon;Oh, Kyung-Sook;Kim, Kwang-Soo;Choi, Suk-Hyun
    • Journal of the Korean Society of Food Culture
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    • v.21 no.5
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    • pp.559-564
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    • 2006
  • This study was done for the determination of ginsenosides contents of Korean ginseng and ginseng products as well as the development of analytical method for ginsenosides. It is known that perfect segregation of ginsenoside Rg and Re is not easy, but in this study almost perfect segregation can be possible by the control of concentration between acetonitrile and water. Among Korean ginseng, ginseng powdered tea and red ginseng powdered tea, the highest ginsenosides content of sum of each 7 kind o ginsenoside was found in red ginseng powdered tae as 23,211${\mu}g$ per 1g/dw The ginsenoside content of ginseng powdered tea was lower than red ginseng powdered tea as 15,217${\mu}g$ per 1g/dw Total ginsenoside content in the root of ginseng was 29,268${\mu}g$ per 1/dw Each amount of ginsenoside contained in ginseng root was in the order of Rb1, Rg1, and Rc. It was shown that there was difference in constitutional element of ginsenosides in ginseng powdered tea and ginseng root.

Authentication of Korean Panax ginseng from Chinease Panax ginseng and Panax quinquefolius by AFLP analysis

  • Kim Bo-Bae;Jeong Jae-Hun;Jung Su-Jin;Yun Doh-Won;Yoon Eui-Soo;Choi Yong-Eui
    • Journal of Plant Biotechnology
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    • v.7 no.2
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    • pp.81-86
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    • 2005
  • Panax ginseng is one of the most important medicinal plants in the world. The international trade of ginseng is increasing yearly. The disguise of Chinese and American ginseng into Korean ginseng became a problem in recent years in abroad and Korea. An effective method to authenticate the Korean Panax ginseng from others at a DNA level is necessary for the healthy development of the ginseng market. Amplified fragment length polymorphism (AFLP) analysis was applied to develop a method for the identification of Korean ginseng between Chinese ginseng and American ginseng. It is very difficult to detect the different polymorphic bands among Korean field cultivated ginseng, and between field and wild-cultivated ginseng. The genetic distance coefficient by AFLP analysis between field- and wild cultivated Korean ginseng was very low, 0.056. Whereas, polymorphic bands between Korean and Chinese wild-cultivated ginseng was significantly different. The genetic distance coefficient between wild-cultivated Korean and Chinese ginseng was 0.149. The genetic distance coefficients between the P. ginseng and P. quinquefolius were ranging from 0.626 to 0.666. These results support that the AFLP analysis could be applied to authenticate Korean P. ginseng from others Chinese P. ginseng and American ginseng (P. quinquefolius).

Isolation and Characterization of Glycolate Oxidase Gene from Panax ginseng C. A. Meyer

  • Parvin, Shohana;Pulla, Rama Krishna;Kim, Yu-Jin;Sathiyaraj, Gayathri;Jung, Seok-Kyu;Khorolragchaa, Altanzul;In, Jun-Gyo;Yang, Deok-Chun
    • Journal of Ginseng Research
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    • v.33 no.4
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    • pp.249-255
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    • 2009
  • The oxidation of glycolate to glyoxylate, a key step in plant photorespiration, is carried out by the peroxisomal flavoprotein glycolate oxidase (EC 1.1.3.15). To investigate the altered gene expression and the role of GOX in ginseng plant defense system, a cDNA clone containing a GOX gene designated as PgGOX was isolated and sequenced from Panax ginseng. The cDNA was 692 nucleotides long and have an open reading frame of 552 bp with a deduced amino acid sequence of 183 residues. A GenBank BlastX search revealed that the deduced amino acid of PgGOX shares a high degree homology with the Glycine max (95% identity). In the present study we analyzed the expression of PgGOX under various environmental stresses at different times using real time-PCR. The results showed that the expressions of PgGOX increased after various treatments involving salt, light, cold, ABA, SA, and copper treatment.

Studies on Ginseng Vinegar (인삼식초에 관한연구)

  • 김승겸
    • The Korean Journal of Food And Nutrition
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    • v.12 no.5
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    • pp.447-454
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    • 1999
  • Ginseng-vinegars were produced by the fermentation of 5% ethanol solution contained ginseng, red ginseng, ginseng marc and red ginseng marc using Acetobacter aceti 3281 for 26 days at 35$^{\circ}C$. The ginseng and red ginseng vinegar contained 0.236mg/ml of total sugar 0.236mg/ml of reducing sugar and 0.05% of ethanol and 1.005 of specific gravity 8,58CFU of viable cell count 3,24 of pH and 5.11% of acidity. Whereas the vinegars produced using the water-extracted red ginseng marc and the ethanol-extracted red ginseng marc were consisted of total sugar was 1.27mg/ml and 1.60mg/ml reducing sugar was 0.077mg/ml and 0.725mg/ml specific gravity was 1.001 and 1.004 the number of viable cells was 8.51CFU/ml and 8.1CFU/ml pH was 2.81 and 2.89 acidity was 5.18% and 5.32% respectvely ethanol concentration was 0.05% in both cases. In five-grade scoring test of sensory evaluation, it was estimated favorable that each vinegar made by were-extracted red ginseng marc, ethanol-extracted red ginseng marc ginseng and red ginseng ginseng from 0.5 to 32% of water-and ethanol-extract red ginseng was extracted with 10% white vinegar for 30 days. The best sensory vinegars were obtained that ginseng of 0.4~1.6% above red glnsend of 0.8% water-extracted red ginseng marc of 0.8~1.6% and ethanol-extracted red ginseng marc of 0.4~1.6% added in 10% white vinegar respectively.

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In situ analysis of chemical components induced by steaming between fresh ginseng, steamed ginseng, and red ginseng

  • In, Gyo;Ahn, Nam-Geun;Bae, Bong-Seok;Lee, Myoung-Woo;Park, Hee-Won;Jang, Kyoung Hwa;Cho, Byung-Goo;Han, Chang Kyun;Park, Chae Kyu;Kwak, Yi-Seong
    • Journal of Ginseng Research
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    • v.41 no.3
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    • pp.361-369
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    • 2017
  • Background: The chemical constituents of Panax ginseng are changed by processing methods such as steaming or sun drying. In the present study, the chemical change of Panax ginseng induced by steaming was monitored in situ. Methods: Samples were separated from the same ginseng root by incision during the steaming process, for in situ monitoring. Sampling was sequentially performed in three stages; FG (fresh ginseng) ${\rightarrow}$ SG (steamed ginseng) ${\rightarrow}$ RG (red ginseng) and 60 samples were prepared and freeze dried. The samples were then analyzed to determine 43 constituents among three stages of P. ginseng. Results: The results showed that six malonyl-ginsenoside (Rg1, Rb1, Rb3, Rc, Rd, Rb2) and 15 amino acids were decreased in concentration during the steaming process. In contrast, ginsenoside-Rh1, 20(S)-Rg2, 20(S, R)-Rg3 and Maillard reaction product such as AF (arginine-fructose), AFG (arginine-fructose-glucose), and maltol were newly generated or their concentrations were increased. Conclusion: This study elucidates the dynamic changes in the chemical components of P. ginseng when the steaming process was induced. These results are thought to be helpful for quality control and standardization of herbal drugs using P. ginseng and they also provide a scientific basis for pharmacological research of processed ginseng (Red ginseng).

Comparisons of Acidic Polysaccharide Content in Various Ginseng Species and Parts (인삼 산성다당체의 삼류간 및 부위별 함량비교)

  • 도재호;이형옥
    • Journal of Ginseng Research
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    • v.17 no.2
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    • pp.145-147
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    • 1993
  • The amounts of ginseng acidic polysaccharide (GAP) in red ginseng (Panax ginseng) were higher than those of wild and cultured Panax quinquefolius, Panax notoginseng as well as white ginseng (Panax ginseng). In white ginseng, there is no difference in the GAP amount among root ages or sizes. Also, the GAP amount of red ginseng body was similar to that of ginseng rhizome, but was higher than that of leaf and epidermis.

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Market Analytic Study for Development of Korean Ginseng (한의계의 한국인삼 세계화 노력제고를 위한 국내외의 시장 분석 연구)

  • Yoo, Sa-Ra;Son, Chang-Gue
    • The Journal of Korean Medicine
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    • v.28 no.3 s.71
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    • pp.100-107
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    • 2007
  • Objective : To build a basis of a research strategy for development of Korean ginseng as a global competitive medical product in the world market by Korean Oriental medicine group. Methods : Survey of all literature or analysis reports about market patterns related to ginseng or ginseng products in Korea and in other countries. Results : Korean ginseng and it products have rapidly decreased in share of the world market since the 1980s, with Korean ginseng occupying just 3% of the Hong Kong ginseng market in 2005. While Korean ginseng has been satisfied with consumption within the large Korean market itself, it now has only 1% of world market share. Conclusion : A systematic strategy is needed to strengthen global competitiveness of Korean ginseng based upon development of novel customer-tailored ginseng products. In addition, experience and science-based research in the Oriental medicine field should be involved in the process.

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