• Title/Summary/Keyword: P.ginseng

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Effect on the change of ginsenosides, pH and color by NaCl concentration (NaCl 농도가 인삼의 ginsenoside 함량과 pH 및 색의 변화에 미치는 영향)

  • Park, Myung-Han;Lee, Jong-Won;Lee, Jong-Tae;Kim, Kyo-Chang
    • Applied Biological Chemistry
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    • v.36 no.4
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    • pp.260-264
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    • 1993
  • In order to determine the stability of ginseng components in this salt concentration when used to ginseng as additive ingredient of sauces or seasonings, we study on the content and charactristic of ginsenosides and changes in pH and color, ginseng tail and ginseng extract were treated with various concentration of NaCl solution. In this experiment, extract of ginseng tail were increased in pH as NaCl concentration were increased, but ginseng extract have not changed evidently. The both solution were decreased in color as the salt concentration were increased. Yield of n-butanol extract was decreased in 5% NaCl concentration, while it was increased in the above concentration, and ginseng extract was changed higher than ginseng tail. Ginsenosides content were increased in 5% NaCl concentration, both $ginsenosied-Rb_1$, $-Rb_2$, -Rc, -Rd of diol line and ginsenoside-Re of triol line and increased in above NaCl concentration. Especially ginsenoside-Re showed to sensitive response to the changes of the salt concentration.

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Systems-level mechanisms of action of Panax ginseng: a network pharmacological approach

  • Park, Sa-Yoon;Park, Ji-Hun;Kim, Hyo-Su;Lee, Choong-Yeol;Lee, Hae-Jeung;Kang, Ki Sung;Kim, Chang-Eop
    • Journal of Ginseng Research
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    • v.42 no.1
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    • pp.98-106
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    • 2018
  • Panax ginseng has been used since ancient times based on the traditional Asian medicine theory and clinical experiences, and currently, is one of the most popular herbs in the world. To date, most of the studies concerning P. ginseng have focused on specific mechanisms of action of individual constituents. However, in spite of many studies on the molecular mechanisms of P. ginseng, it still remains unclear how multiple active ingredients of P. ginseng interact with multiple targets simultaneously, giving the multidimensional effects on various conditions and diseases. In order to decipher the systems-level mechanism of multiple ingredients of P. ginseng, a novel approach is needed beyond conventional reductive analysis. We aim to review the systems-level mechanism of P. ginseng by adopting novel analytical framework-network pharmacology. Here, we constructed a compound-target network of P. ginseng using experimentally validated and machine learning-based prediction results. The targets of the network were analyzed in terms of related biological process, pathways, and diseases. The majority of targets were found to be related with primary metabolic process, signal transduction, nitrogen compound metabolic process, blood circulation, immune system process, cell-cell signaling, biosynthetic process, and neurological system process. In pathway enrichment analysis of targets, mainly the terms related with neural activity showed significant enrichment and formed a cluster. Finally, relative degrees analysis for the target-disease association of P. ginseng revealed several categories of related diseases, including respiratory, psychiatric, and cardiovascular diseases.

Cytohistological study of the leaf structures of Panax ginseng Meyer and Panax quinquefolius L.

  • Lee, Ok Ran;Nguyen, Ngoc Quy;Lee, Kwang Ho;Kim, Young Chang;Seo, Jiho
    • Journal of Ginseng Research
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    • v.41 no.4
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    • pp.463-468
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    • 2017
  • Background: Both Panax ginseng Meyer and Panax quinquefolius are obligate shade-loving plants whose natural habitats are broadleaved forests of Eastern Asia and North America. Panax species are easily damaged by photoinhibition when they are exposed to high temperatures or insufficient shade. In this study, a cytohistological study of the leaf structures of two of the most well-known Panax species was performed to better understand the physiological processes that limit photosynthesis. Methods: Leaves of ginseng plants grown in soil and hydroponic culture were sectioned for analysis. Leaf structures of both Panax species were observed using a light microscope, scanning electron microscope, and transmission electron microscope. Results: The mesostructure of both P. ginseng and P. quinquefolius frequently had one layer of non-cylindrical palisade cells and three or four layers of spongy parenchymal cells. P. quinquefolius contained a similar number of stomata in the abaxial leaf surface but more tightly appressed enlarged grana stacks than P. ginseng contained. The adaxial surface of the epidermis in P. quinquefolius showed cuticle ridges with a pattern similar to that of P. ginseng. Conclusion: The anatomical leaf structure of both P. ginseng and P. quinquefolius shows that they are typical shade-loving sciophytes. Slight differences in chloroplast structure suggests that the two different species can be authenticated using transmission electron microscopy images, and light-resistant cultivar breeding can be performed via controlling photosynthesis efficiency.

Overexpression of ginseng patatin-related phospholipase pPLAIIIβ alters the polarity of cell growth and decreases lignin content in Arabidopsis

  • Jang, Jin Hoon;Lee, Ok Ran
    • Journal of Ginseng Research
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    • v.44 no.2
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    • pp.321-331
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    • 2020
  • Background: The patatin-related phospholipase AIII family (pPLAIIIs) genes alter cell elongation and cell wall composition in Arabidopsis and rice plant, suggesting diverse commercial purposes of the economically important medicinal ginseng plant. Herein, we show the functional characterization of a ginseng pPLAIII gene for the first time and discuss its potential applications. Methods: pPLAIIIs were identified from ginseng expressed sequence tag clones and further confirmed by search against ginseng database and polymerase chain reaction. A clone showing the highest homology with pPLAIIIβ was shown to be overexpressed in Arabidopsis using Agrobacterium. Quantitative polymerase chain reaction was performed to analyze ginseng pPLAIIIβ expression. Phenotypes were observed using a low-vacuum scanning electron microscope. Lignin was stained using phloroglucinol and quantified using acetyl bromide. Results: The PgpPLAIIIβ transcripts were observed in all organs of 2-year-old ginseng. Overexpression of ginseng pPLAIIIβ (PgpPLAIIIβ-OE) in Arabidopsis resulted in small and stunted plants. It shortened the trichomes and decreased trichome number, indicating defects in cell polarity. Furthermore, OE lines exhibited enlarged seeds with less number per silique. The YUCCA9 gene was downregulated in the OE lines, which is reported to be associated with lignification. Accordingly, lignin was stained less in the OE lines, and the expression of two transcription factors related to lignin biosynthesis was also decreased significantly. Conclusion: Overexpression of pPLAIIIβ retarded cell elongation in all the tested organs except seeds, which were longer and thicker than those of the controls. Shorter root length is related to auxinresponsive genes, and its stunted phenotype showed decreased lignin content.

Antioxidant Effects of Raw Ginseng, Soft Red Ginseng, and Red Ginseng Sap (수삼, 연질 홍삼, 수액 홍삼의 항산화 효과)

  • Huh, Man Kyu;Kim, Kuk Hwan
    • Journal of Life Science
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    • v.30 no.9
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    • pp.763-771
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    • 2020
  • Korean ginseng (Panax ginseng) generally has a good safety profile and contains many bioactive substances, such as ginsenosides or panaxosides. Korean red ginseng might help to stabilize the sympathetic nervous system and improve cognition in individuals. Soft red ginseng is produced by new processing technology. This study focused on investigating whether soft red ginseng produced under the new processing technology reduces or improves the existing antioxidant effects. No significant difference in 2,2'-azino-bis (3-ethylbenzthiazoline-6-sulphonic acid) (ABTS) scavenging activity was found between soft red ginseng and ready-made red ginseng (p<0.05). Soft red ginseng extract showed higher 2,2-diphenyl-1-picryl-hydrazyl-hydrate (DPPH) and hydroxyl radical (OH) scavenging activity than other ginseng extracts. OH scavenging activity was significantly different across three groups (raw ginseng, soft red ginseng, and red ginseng sap) (p<0.05). Nitric oxide (NO) scavenging activity was also significantly different among raw ginseng, soft red ginseng, and purchased red ginseng liquid products (p<0.05). Many calcium crystals appeared on the electron microscope in soft red ginseng. Magnesium and potassium showed no significant difference between soft red ginseng and hard red ginseng. The extract of soft red ginseng scavenged different free radicals efficiently due to the presence of DPPH and OH and may help treat free radical-induced diseases.

The Effect of Ginseng on Hepatic Drug Metabolizing Enzyme in Rats (인삼이 백서 간 약물대사효소에 미치는 효과)

  • 이태하;김낙두
    • YAKHAK HOEJI
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    • v.25 no.4
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    • pp.145-151
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    • 1981
  • The effect of ginseng methanol extract on hepatic drug metabolizing enzyme in rat was investigated. The ginseng methanol extract (100mg/kg) was administered orally to Sprague Dawley rats for 7days and the contents of cytochrome $P_{450}$ and NADPH cytochrome c reductase in liver were measured by the method of Stanton et al. and Mazel respectively. The content of liver cytochrome $P_{450}$ and NADPH cytochrome c reductase in the rats treated with ginseng methanol extract (100mg/kg) were increased by 21.9% and l6.6% respectively and their increases were statistically significant. Single i.p. injection of phenobarbital (100mg/kg) to the rats produced approximately 25% increase in cytochrome $P_{450}$ content in this investigation and further stimulation was produced in the rats pretreated with ginseng methanol extract (100mg/kg). On the other hand, single i.p. injection of 95% $CCl_{4}$ (0.5ml/kg) showed 29% decrease in cytochrome $P_{450}$ content and 10.5% decrease in NADPH cytochrome c reductase activity. The degree of inhibition of cytochrome $P_{450}$ content in the rats pretreated with ginseng methanol extract (100mg/kg) was similar to that observed in the $CCl_{4}$ alone treated group, but NADPH cytochrome c reductase activity was increased by 65% in the rats pretreated with ginseng methanol extract (100mg/kg). These results suggest that ginseng is the hepatic drug metabolizing enzyme inducing agent in the rat and the effect is similar to phenobarbital.

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Evaluation on the radioprotective effect of Korean favorite teas (한국인 기호 차류의 방사선 장해 경감효과 평가)

  • Kim, Se-Ra;Lee, Hae-June;Oh, Heon;Lee, Jin-Hee;Kim, Hu-Kyung;Kim, Tae-Hwan;Jo, Sung-Kee;Kim, Sung-Ho
    • Korean Journal of Veterinary Research
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    • v.42 no.4
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    • pp.475-483
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    • 2002
  • We performed this study to determine the effect of Korean favorite teas (green tea, ginseng tea, coffee and barley tea) on jejunal crypt survival, endogenous spleen colony formation and apoptosis in jejunal crypt cells of mice irradiated with high and low dose of ${\gamma}$-radiation. Jejunal crypts were protected by pretreatment of green tea (P.O.: 1.25% water extract, for 7 days before irradiation., I.P.: 50 mg/kg of body weight, at 12 and 36 hours before irradiation, p<0.01) or ginseng (I.P.: 50 mg/kg of body weight, at 12 and 36 hours before irradiation, p<0.05). Green tea (p<0.05) or ginseng (p<0.05) administration before irradiation (I.P. at 12 and 36 hours before irradiation) resulted in an increase of t formation of endogenous spleen colony. The frequency of radiation-induced apoptosis was also reduced by pretreatment of green tea (P.O.: p<0.005, I.P.: p<0.05), pretreatment of ginseng (P.O.: p<0.005, I.P.: p<0.005) or posttreatment of ginseng (I.P.: 50 mg/kg of body weight, at 30 minutes after irradiation, p<0.05). Treatment with coffee or barley tea showed no significant modifying effects on the radiation-induced damages. These results indicated that green tea and ginseng might be a useful radioprotector, especially since it is a relatively nontoxic natural product. Further studies are needed to characterize better the promotion nature of green tea, ginseng and its components.

Effects of Panax ginseng and Ganoderma lucidum Extract on the Growth of Lactic Acid Bacteria (인삼 및 영지추출물이 유산균 생육에 미치는 영향)

  • 구흥회;정수현
    • The Korean Journal of Food And Nutrition
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    • v.7 no.1
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    • pp.45-50
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    • 1994
  • This study was carried out to Investigate the effects of Panax ginseng, Ganoderma lucidum extract and crude polysaccharide of G. lucidum on the growth of lactic acid bacteria. p. ginseng extract contained 60.7% carbohydrate and 27.5% protein, whereas G. lucidum contained 35.9% carbohydrate and 46.3% protein. The total sugar and protein content of crude polysaccharide of G. lucidum were 47.2% and 15.2%, respectively. Two amino acids(hg, Trp) were detected in p. ginseng extract and 11 amino acids (hg, Trp, Ua, Lys, Ser, etc.) in C. lucidum extract. By the addition of p. ginseng, 5. lucidum extract and crude polysaccharide, the cia. p. ginseng was more effective on the growth of 1. casei an: G. lucidum was more effective on that of S. thermophilus. The effect of free amino acids on the growth of tactic acid bacteria was also examined. Arginine and lysine stimulated the growth of L. casei, whereas Lysine, serine, arginine, and glutamic acid stimulated the growth of 5. thermophilus.

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Effect of Ginseng Saponin Fraction on Cleavage of pBR322 by Several Restriction Endonuclease (인삼 Saponin분획이 제한효소에 의한 pBR322 절단에 미치는 영향)

  • 강정훈;조영동
    • Journal of Ginseng Research
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    • v.9 no.2
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    • pp.240-247
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    • 1985
  • Attempts were made to see if we could cut more pBR322 in the presence of ginseng saponin fraction in connection with possibly for shortening the enzymatic reaction time and the amount of the enzyme to be used. The following results were obtained restriction endonucleases such as AccI, XhoII, SaII, and HincII were observed to cut pBR322 efficiently at 10-1% ginseng saponin fraction. In case of BamHI, 10-2% ginseng saponin fraction was observed to the most effective concentration. Such cumulative results suggest that ginseng saponin fraction would play important role as far as the cleavage of pBR322 for short period by endonucleases is concerned.

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High-performance liquid chromatography analysis of phytosterols in Panax ginseng root grown under different conditions

  • Lee, Dong Gu;Lee, Jaemin;Kim, Kyung-Tack;Lee, Sang-Won;Kim, Young-Ock;Cho, Ik-Hyun;Kim, Hak-Jae;Park, Chun-Gun;Lee, Sanghyun
    • Journal of Ginseng Research
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    • v.42 no.1
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    • pp.16-20
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    • 2018
  • Background: The Panax ginseng plant is used as an herbal medicine. Phytosterols of P. ginseng have inhibitory effects on inflammation-related factors in HepG2 cells. Methods: Phytosterols (e.g., stigmasterol and ${\beta}$-sitosterol) in the roots of P. ginseng grown under various conditions were analyzed using high-performance liquid chromatography. The P. ginseng roots analyzed in this study were collected from three cultivation areas in Korea (i.e., Geumsan, Yeongju, and Jinan) and differed by cultivation year (i.e., 4 years, 5 years, and 6 years) and production process (i.e., straight ginseng, red ginseng, and white ginseng). Results: The concentrations of stigmasterol and ${\beta}$-sitosterol in P. ginseng roots were 2.22-23.04 mg/g and 7.35-59.09 mg/g, respectively. The highest concentrations of stigmasterol and ${\beta}$-sitosterol were in the roots of 6-year-old P. ginseng cultivated in Jinan (82.14 mg/g and 53.23 mg/g, respectively). Conclusion: Six-year-old white ginseng and white ginseng cultivated in Jinan containing stigmasterol and b-sitosterol are potentially a new source of income in agriculture.