• Title/Summary/Keyword: ginseng component

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The Effects of Ginseng on Central Nervous System (인삼(人蔘)의 중추신경(中樞神經)에 대(對)한 작용(作用))

  • Lee, S.W.
    • The Korean Journal of Pharmacology
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    • v.10 no.2
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    • pp.13-23
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    • 1974
  • Results of an experiment on the general behavior of rats in order to explore the possible pharmacological actions of Panax Ginseng upon the central nervous system can be summarized as follows: 1) The rats treated with Ginseng-saponin intraperitoneally with the doses of 50 or 100 mg/kg show the decreased sleeping component and increase in lying and grooming component and walking and rearing component of general behavior. 2) There are no difference between control group and saline treated group in pattern of general behavior components. 3) In the Ginseng-saponin treated groups, the amphetamine stimulated walking and rearing component of genenarl behavior are reduced but lying and grooming component are elevated. 4) Ginseng-saponin shows very low acute toxicity in mice. The $LD_{50}$ in mice of 24 hours after intraperitoneal injection was 795 mg/kg. From the above findings, it is to suggest that the Ginseng saponin might stimulate the central nervous system but its mode of action appears to be different from that of amphetamine. And the effects of Ginseng saponin may be varied depending on various experimental situation or condition of animals.

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The Central Effects of Red Ginseng Total Saponin Component (홍삼 조사포닌 성분의 중추작용)

  • 이순철;이수정
    • Journal of Ginseng Research
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    • v.19 no.1
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    • pp.22-26
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    • 1995
  • The present study was undertaken to elucidate the characteristics of red ginseng total saponin in behavioral changes on ambulation, forced swim test and convulsion in mice. The ambulation and the duration of immobility on forced swim test were not affected by red ginseng total saponin. On the other hand, the duration of immobility inducted by DMI, PGL but not CIP was significantly decreased, and the onset of convulsion induced by pentylenetetrazole was significantly shortened by preadministration of red ginseng total saponin. These results suggest that red ginseng total saponin component may play an important role in modulating synergism with drugs acting on depression and convulsion, and that the characteristics of synergetic effect induced by red ginseng total saponin potentate the central norepinephrine neuron activity.

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Effect of Nepalese Pseudo Ginseng Components on Lipolytic Action of Toxohormone-L from Cancerous Ascites Fluid (Nepal산 Pseudo Ginseng 성분이 암독소 호르몬-난의 체지방 분해작용에 미치는 영향)

  • 이성동;오전척도
    • The Korean Journal of Food And Nutrition
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    • v.6 no.2
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    • pp.109-114
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    • 1993
  • This study was divised to observe an Inhibitory effect toward a lipolytic action of toxohormone-L from large root and small root Nepal pseudo ginseng (NPG ; Nepal products) components by water extract and ethanol precipitate in vitro. Toxohormone-L is known to be a lipolytic factor that was partially purified from the ascites fluid of Sarcoma 180-bearing mice and of patients with hepatoma. The inhibitory effect that inhibited the lipolytic action of toxohormone-L by ethanol Precipitate component of large root NPG (mean 55.5%) was higher (mean 1.37 times) than that of water extract component in final reaction concentration of 500 and 1, 000ug/ml, on the other side inhibitory effect of water extract component in small root NPG (mean 55.5%) was higer (mean 1.14 times) than that of ethanol precipitate component. In a way inhibitory effect of precipitate component In large root NPG(47.6%), when final reaction concentration of sample were 1, 000ug/ml, was about 40% lower than that of Korean red ginseng.

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Effects of Butanol Extract and Water-Soluble Constituent of Radioprotective Ginseng Fractioil on Cell Survival (항방사선 인삼분획의 butanol 추출물과 수용성 성분이 세포 생존율에 미치는 영향)

  • 김춘미;최향옥
    • Journal of Ginseng Research
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    • v.15 no.3
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    • pp.167-170
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    • 1991
  • Radiation protective fraction was Isolated and partially purified from Korean white ginseng. The effect of the fraction was studied on the cell survival of W-damaged CHO-Kl cells. As a result, it was found that the fraction increased the survival rate of damaged cells significantly within the dose range of which cytotoxicity did not appear This fraction was separated into two parts by adding butanol, namely the precipitated protein component and the butanol extract. Damaged cells were treated with each of these components and their survival rates were measured. The protein component demonstrated significant increase in the survival rates, while the butanol extract showed no such increment. These results suggest that the radiation protective effect of the ginseng fraction is originated from the butanol-precipitated protein component, not from the butanol-soluble compounds.

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A Comparative study on Characteristic of Ginseng Radix in Korea and China (한국삼(韓國蔘)과 중국삼(中國蔘)의 품질 비교 연구)

  • Song, Ho-Joon
    • The Korea Journal of Herbology
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    • v.25 no.3
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    • pp.61-64
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    • 2010
  • Objctive:To clarify the criterion, the characteristic of varaious age of ginseng radix cultivated in Korea and China were studied. Method:The surface of the transverse section of the specimen was made into a slid by the Paraffin Section method, and then dyed by Safranine Malachite Green method. The samples were observed at the power of 400 by an optic microscope(Olympus, Japan). The component and flavor of ginseng radix were analyzed by TLC(Thinlayer Chromatography) and electronic nose(FOX3000, France). Result:Ginseng radix according to the growing district and various age were comparative analyzed by optic microscope, TLC and electronic nose. The results were as followings. 1. The external form of Korean ginseng is longer and brightness then Chinese ginseng. 2. The internal form of Korean and Chinese ginseng are similar to each other. 3. The component of Korean and Chinese ginseng in TLC are similar to each other. 4. The fragrance of Korean and Chinese ginseng are clearly different. Conclusion:The results in this study demonstrate that morphology and component of Korean ginseng are similar to Chinese, on the other hand, fragrance of Korean and Chinese ginseng are different.

Effect of Nepal Pseudo Ginseng Components on Lipolytic Action of Toxohormone-L from Cancerous Ascites Fluid (Nepal Pseudo Ginseng 성분이 Toxohormone-L에 의한 체지방 분해작용에 미치는 영향)

  • 이함동;여전척도
    • The Korean Journal of Food And Nutrition
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    • v.4 no.1
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    • pp.75-80
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    • 1991
  • This study was divised to observe an inhibitory toward a lipolytic action of toxohormone-L from large root and small root Nepal pseudo ginseng(NPG ; Nepal products) components by water extract and ethanol precipitate in vitro. Toxohormone-L Is known to be a lipolytic factor that was partially purified from the ascites fluid of sarcoma 180-hearing mice and of patients with hepatoma. The inhibitory effect that inhibited the lipolytic action of toxohormone-L by ethanol precipitate component of large root NPG(mean 46.8%) was higher (mean 1.8 times) than that of water extract component in final reaction concentration ,5001g1m1, on the other side inhibitory effect of water extract component in small root NPG(mean 43.9%) was higher(mean 1. 2 times) than that of ethano1 precipitate component, respectively. In a way inhibitory effect of ethanol precipitate component in large root NPG(47.6%), when final reaction concentration of sample were 1,000 U g/ml, was about 4095 lower than that of Korean red ginseng, respectively.

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Grouping the Ginseng Field Soil Based on the Development of Root Rot of Ginseng Seedlings (유묘 뿌리썩음병 진전에 따른 이산재배 토양의 유별)

  • 박규진;박은우;정후섭
    • Korean Journal Plant Pathology
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    • v.13 no.1
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    • pp.37-45
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    • 1997
  • Disease incidence (DI), pre-emergence damping-off (PDO), days until the first symptom appeared (DUS), disease progress curve (DPC), and area under disease progress curve (AUDPC) were investigated in vivo after sowing ginseng seeds in each of 37 ginseng-cultivated soils which were sampled from 4 regions in Korea. Non linear fitting parameters, A, B, K and M, were estimated from the Richards' function, one of the disease progress models, by using the DI at each day from the bioassay. Inter- and intra-relationships between disease variables and stand-missing rate (SMR) in fields were investigated by using the simple correlation analysis. Disease variables of the root rot were divided into two groups: variables related to disease incidence, e.g., DI, AUDPC and A parameter, and variables related to disease progress, e.g., B, K and M parameters. DI, AUDPC, and DUS had significant correlations with SMR in ginseng fields, and then it showed that the disease development in vivo corresponded with that in fields. Soil samples could be separated into 3 and 4 groups, respectively, on the basis of the principal component 1 (PC1) and the principal component 2 (PC2), which were derived from the principal component analysis (PCA) of Richards' parameters, A, B, K and M. PC1 accounted for B, K and M parameters, and PC2 accounted for A parameter.

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Influences of Ginseng Component on Cell Growth and Acid Production by Lactobacillus casei Burins Yogurt Fermentation (Yogurt 제조시 인삼성분이 Lactobacillus casei의 증식과 산생성에 미치는 영향)

  • 소명환
    • The Korean Journal of Food And Nutrition
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    • v.1 no.2
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    • pp.76-85
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    • 1988
  • In order to obtain the basic data for the preparation of yogurt containing ginseng component, the effect of ginseng component on cell growth of Lactobacillus casei YIT 9018 and on lactic acid production were investigated. Initial cell growth and acid production were markedly inhibited by the addition of ethanol extracts in the level of 8% into 15% skim milk. Crude saponin did not show any inhibitory effect on cell growth and acid production, but ether layer fraction showed inhibitory effect. It was thought to be more advantageous to add ginseng extracts after the fermentation of milk than before. The addition of ginseng extract at 8% level into liquid yogurt was most suitable in organoleptic test. Cell viability was not affected by the addition of ethanol extracts up to 8% level during storage of liquid yogurt.

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Cytokinin signaling promotes root secondary growth and bud formation in Panax ginseng

  • Kyoung Rok Geem;Yookyung Lim;Jeongeui Hong;Wonsil Bae;Jinsu Lee;Soeun Han;Jinsu Gil;Hyunwoo Cho;Hojin Ryu
    • Journal of Ginseng Research
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    • v.48 no.2
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    • pp.220-228
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    • 2024
  • Background: Panax ginseng, one of the valuable perennial medicinal plants, stores numerous pharmacological substrates in its storage roots. Given its perennial growth habit, organ regeneration occurs each year, and cambium stem cell activity is necessary for secondary growth and storage root formation. Cytokinin (CK) is a phytohormone involved in the maintenance of meristematic cells for the development of storage organs; however, its physiological role in storage-root secondary growth remains unknown. Methods: Exogenous CK was repeatedly applied to P. ginseng, and morphological and histological changes were observed. RNA-seq analysis was used to elucidate the transcriptional network of CK that regulates P. ginseng growth and development. The HISTIDINE KINASE 3 (PgHK3) and RESPONSE REGULATOR 2 (PgRR2) genes were cloned in P. ginseng and functionally analyzed in Arabidopsis as a two-component system involved in CK signaling. Results: Phenotypic and histological analyses showed that CK increased cambium activity and dormant axillary bud formation in P. ginseng, thus promoting storage-root secondary growth and bud formation. The evolutionarily conserved two-component signaling pathways in P. ginseng were sufficient to restore CK signaling in the Arabidopsis ahk2/3 double mutant and rescue its growth defects. Finally, RNA-seq analysis of CK-treated P. ginseng roots revealed that plant-type cell wall biogenesis-related genes are tightly connected with mitotic cell division, cytokinesis, and auxin signaling to regulate CK-mediated P. ginseng development. Conclusion: Overall, we identified the CK signaling-related two-component systems and their physiological role in P. ginseng. This scientific information has the potential to significantly improve the field-cultivation and biotechnology-based breeding of ginseng.