• Title/Summary/Keyword: total saponin fraction

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인삼 추출물이 난소를 절제한 백서의 항산화효소 활성에 미치는 영향 (The Effects of Panax Ginseng Extract on Antioxidative Enzyme Activity in Ovariectomized Rats)

  • 하배진;황일영
    • 생명과학회지
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    • 제12권3호
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    • pp.349-356
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    • 2002
  • 노화과정에 산소라디칼이 관여할 가능성을 노화유도된 쥐를 동물모델로 하여 알아보았다. 난소를 절제한 rat와 난소를 절제하지 않은 정상의 rat에서의 생리활성에 미치는 인삼 추출물의 효과를 연구하였다. 난소를 절제한 rat에 각각 GTS (Ovx+GTS 군)와 GW (Ovx+GW 군)를 투여하고, 이것과 비교하기 위해 난소를 절제한 대조군(Ovx군)과 마지막으로 난소를 절제하지 않은 정상군(Sham군)으로 하여 항산화효과에 관한 실험방법으로 진행하였다. 노화유도된 쥐의 각 조직에서 lipid peroxidation이 증가되었고 free radical반응이 더 심하게 일어난 간 조직에서 노화진행이 그만큼 촉진되었음을 알 수 있었다. 간소라디칼반응이 항진된 원인을 규명코자 간 조직에서 미토콘드리아와 세포질분획에서 항산화효소의 활성을 조사한 결과, SOD와 glutathion reductase활성이 감소되었으며 노화나 지질과산화가 심하게 진행되었던 간 조직에서 이들 항산화효소의 활성감소가 심한 경향을 나타내었다. 생체는 free radical을 조절할 수 있는 다양한 항산화계가 존재하여 free radical을 효율적으로 제거함으로써 생체의 항상성을 유지할 수 있다. 이러한 항산화계에는 superoxide dismutase (SOD), glutathion (GSH) peroxidase, GSH reductase, GSH S-transferase, catalase등의 항산화효소가 있다. SOD는 반응성을 가진 산소species인 superoxide anion을 macrophage와 polymorphonuclear leucocyte의 항균작용같은 세포방어기구에서 중요한 역할을 한다. 원칙상 눈, 피부등의 byaus이 공기중의 산소에 노출되면 oxidative stress가 커짐으로서 조직이 훼손되나 SOD같은 효소에 의해 보호되고 손상이 방지되는 것으로 알려지고 있다. 실제로 신체부위에 적용해 보면 쉽게 활성상실이 일어나므로 fatty arid와 공유결합시켜 효과적으로 superoxide radical을 제거할 수 있다. AST의 활성은 Ovx군이 Sham군에 비해 2.11배 높게 나타났으며, ALT 활성은 변화가 나타나지 않았다. AST 활성에서는 각각의 물질을 투여한 군에서는 유의적인 감소 경향을 보였다. 과산화지질함량은 Ovx군이 Sham군에 비해 높게 나타났으며, 각각의 인삼추출물을 투여한 군에서는 62%∼72%의 저해률을 보였다. 항산화 효소들은 Sham군에 비해 Ovx군에서 낮게 나타났는데, 각 물질의 투여 군에서는 유의성있는 증가를 보였다. 이러한 결과에서 보듯이, 난소 절제로 생성된 많은 free radical은 항산화효소에 의해서 감소되었으며, 그리고 인삼 추출물이 항산화 효소 대신에 노화를 저해하는 작용을 하는 것으로 사료되었다.

수삼을 기질로 한 담자균 배양물로부터 분리한 조사포닌의 항산화 효과 (Antioxidative Effect of Crude Saponin Fraction Prepared from Culture Product of Basidiomycota cultured with Fresh Ginseng as Substrate)

  • 정재현;위재준;신지영;조주현;정동현
    • 한국식품과학회지
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    • 제37권1호
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    • pp.67-72
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    • 2005
  • 수삼 및 수삼을 기질로 한 배양물로부터 조사포닌을 분리하여 TLC를 확인한 결과 목질진흙버섯 및 영지버섯 균사체 배양물 조사포닌에서 $Rg_{2}$$Rh_{1}$ 위치에서 spot을 볼 수 있었으며, 노루궁뎅이버섯 균사체 배양물에서는 $Rg_{3}$$Rh_{1}$과 같은 위치에서 spot을 볼 수 있었다. 배양물의 총페놀성 화합물 함량은 수삼, 목질진흙버섯, 영지버섯 및 노루궁뎅이버섯 균사체 배양물 조사포닌에서 1.04, 1.11, 1.45, 1.29%로 나타나 수삼보다는 수삼 배양물에서 높았으며, 특히 영지버섯 균사체 배양물에서 가장 높은 폐놀성 화합물 함량을 나타내었다. 수삼 배양물 조사포닌의 전자공여능의 경우 목질진흙버섯 균사체 배양물 1mg/mL 및 10mg/mL에서 각각 92.8, 94.9%로 가장 높았다. 지질과산화 억제효과는 영지버섯 균사체 배양물 조사포닌이 29.5%로 목질진흙버섯 균사체나 노루궁뎅이버섯 균사체 배양물 보다 높았다. Tyrosinase 저해활성은 영지버섯 균사체 배양물 조사포닌이 65.5%로 가장 높았다.

In Vitro Inhibitory Effect of Triterpenoidal Saponins from Platycodi Radix on Pancreatic Lipase

  • Xu Bao Jun;Han Li Kun;Zheng Yi Nan;Lee Jeong Hyun;Sung Chang Keun
    • Archives of Pharmacal Research
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    • 제28권2호
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    • pp.180-185
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    • 2005
  • In the process of investigating anti-obesity effect of Platycodi Radix, we found that aqueous extract of Platycodi Radix might inhibit intestinal absorption of dietary fat by inhibiting pancreatic lipase (PL) activity. In order to clarify the anti-obesity mechanism of Platycodi Radix, activity-guided isolation was performed to find active components. The total saponin fraction of Platycodi Radix appeared to have a potent inhibitory activity against the hydrolysis of triolein emulsified with phosphatidycholine by pancreatic lipase in vitro. Based on these results, further purification of active components yielded 10 known triterpenoidal saponins, among these compounds, platycodin A, C, D, and deapioplatycodin D exhibited significant inhibitory effects on PL at the concentration of $500\;{\mu}g/mL$ with 3.3, 5.2, 34.8, and $11.67\%$ pancreatic lipase activity vs control, respectively. Platycodin D was found to inhibit the PL activity in a dose-dependent manner. Therefore, the anti-obesity effect of Platycodi Radix might be due to the inhibition of pancreatic lipase by its saponins.

홍삼 사포닌의 항불안 효과 (Anxiolytic Effect of Ginseng Total Saponin)

  • 류성민;박형배;이종범;하정희;박진규
    • 생물정신의학
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    • 제4권1호
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    • pp.102-107
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    • 1997
  • 홍삼사포닌분획의 항불안작용의 양상을 검색하고자 사포닌분획을 사용하여 실험 동물에서 항불안작용을 검색하고 이들의 작용을 benzodiazepine의 대표적 약물인 diazepam의 효과와 비교하여 보았다. 실험동물에서 항불안효과의 검정을 위하여 생쥐에게 각각 상이 한 단일성분 함량을 지닌 여러분획들을 투여 후 elevated plus maze법을 사용하여 항불안효과를 비교, 관찰하였다. 실험결과 홍삼 ginsenoside Rg1, Rf 및 Re 등의 함량이 보다 높은 TSI 분획에서 항불안 효과를 관찰하였다. 중추신경계에 작용하여 진정효과를 나타내는 약물 중 특히 항불안제의 작용에 관여하는 신경전달물질 수용체로 현재까지 가장 주목을 받고 있는 것은 GABA A-benzodiazepine 수용체-chloride통로 복합체에 있는 benzodiazepine 수용체이다. 본 실험결과 관찰한 홍삼 사포닌의 항불안작용의 기전 규명을 위한 접근방법으로 홍삼 사포닌의 benzodiazepine 수용체에 대한 수용체 결합력을 관찰하고자, 흰쥐의 대뇌 피질을 검체로 하여 benzodiazepine 수용체에 대한 [$^3H$] Ro15-1788 결합 실험을 실시하였다. 홍삼 사포닌 분획들은 benzodiazpine 수용체에 결합하는 반응성을 보였으며, ginsenoside Rb, Re 및 Rd등의 함량이 높은 TSIV 분획이 가장 높은 결합력을 나타내었는데, 이 분획에서는 항불안 작용을 관찰할 수 없었다. 이상의 결과에서 볼 때 홍삼사포닌은 항불안작용을 나타내었으며, 이 항불안작용과 benzodiazepine 수용체에 대한 결합력과의 연관성은 관찰되지 않았다.

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한국인삼론(韓國人蔘論) (Current Status of Korean Ginseng Research)

  • 한병훈
    • 생약학회지
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    • 제3권3호
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    • pp.151-160
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    • 1972
  • Recent achievements of scientific research on the pharmacologic activities and the chemical problems of dammalene glycosides, which are considered to be effective principles of Korean ginseng, are reviewed and analyzed in view of structure-activity relationship. 1) S. Shibata and his co-workers detected 12 glycoside spots of dammalene series on the two dimensional T.L.C. of total glycoside fraction from Japanese ginseng, and designated them Ginsenoside Rx(x=a, b, c, g, h, etc.) in the order of increasing Rf-value. The aglycones of those glycosides were characterized to be protopanaxadiol for the Ginsenoside $Rx(x=a,\;b_{1},\;b_{2},\;c,\;d,\;e,\;f)$ and protopanaxatriol for the Ginsenoside $Rx(x=g_{1},\;g_{2},\;g_{3},\;h_{1}\;'h_{2})$. Using Korean ginseng as the material for our study, the author and his coworkers isolated a new dammalene glycoside(Panax Saponin C), which comes under the category of protopanaxadiol glycosides based on the classification of S. Shibata et al., and characterized this saponin to be the glycoside of protopanaxatriol series. Furthermore, Panax Saponin C dissociated into $two\;components(C_{1}\;and\;C_{2}-acetate)$ by acetylation, both of which returned to original Panax Saponin C by deacetylation. Based on this result, more than 13 glycoside components of dammalene series will be expected in the Korean ginseng. 2) The structures of protopanaxadiol and protopanaxatriol, the genuine aglycones of dammalene glycosides, are fully established to be structural analogues by S. Shibata and his co-workers, therefore antagonistic and/or analogical activities will be expected for the pharmacologic activities of these glycoside series of structural analogues. K. Takaki and his co-workers found central nervous system (CNS) stimmulant activity from the glycosides of protopanaxatriol series and CNS-depressant activity from the glycosides of protopanaxadiol series. On the other hand, the author and his co-workers found stimmulating activity on the protein synthesis from both the series of dammalene glycosides with delayed and long-lasting characteristics. This delayed and long-lasting characteristics were also observed in the anti-inflammatory activity of glycosides of protopanaxatriol series on their time course tendency. For the convenience's sake of argument, pluralistic pharmacologic activities of dammalene glycosides, which were observed by many workers at various pharmacologic site, may be classified into two main categories; one is pan-cellular activity and the other is organ specific activity to the certain tissue which is a mass of cells differentiated to a certain direction for their special functions in the body. Based on the data of K. Takaki and those of the authors, following assumption will be probable; Pharmacologic activities of both series of glycosides of protopanaxadiol and protopanaxatriol aglycones may be antagonistic on their tissue-specific activities and analogic on their pan-cellular activities. Therefore, the mixture of these two series of glycosides in an appropriate ratio, as the case of total extract of Korean ginseng, will be probably beneficial to the host by increasing the synthesis of some functional proteins, due to the additive action of pan-cellular activity, and with the disappearance of any significant behavioral symptoms due to the antagonism of tissue specific activity. This fact will probably be the main reason why classical trials of pharmacologists failed in re-discovering the efficacy of Korean ginseng with their behavioral test. 3) The author and his co-workers achieved the synthesis of $C^{14}-labelled\;Panax\;Saponin\;A\;on\;C_{25}-C_{27}\;position\;of\;aglycone$ in the interest of tracer studies in vivo. The method will be applicable to other dammalene glycosides regardless of their chemical structure. 4) The author and his co-workers converted chemically betulafolienetriol, a triterpene component of Betula platyphylla, to the protopanaxadiol, one of genuine aglycone of dammalene glycosides.

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A formulated red ginseng extract inhibits autophagic flux and sensitizes to doxorubicin-induced cell death

  • Park, Han-Hee;Choi, Seung-Won;Lee, Gwang Jin;Kim, Young-Dae;Noh, Hyun-Jin;Oh, Seung-Jae;Yoo, Iseul;Ha, Yu-Jin;Koo, Gi-Bang;Hong, Soon-Sun;Kwon, Sung Won;Kim, You-Sun
    • Journal of Ginseng Research
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    • 제43권1호
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    • pp.86-94
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    • 2019
  • Background: Ginseng is believed to have antitumor activity. Autophagy is largely a prosurvival cellular process that is activated in response to cellular stressors, including cytotoxic chemotherapy; therefore, agents that inhibit autophagy can be used as chemosensitizers in cancer treatment. We examined the ability of Korean Red Ginseng extract (RGE) to prevent autophagic flux and to make hepatocellular carcinoma (HCC) cells become more sensitive to doxorubicin. Methods: The cytotoxic effects of total RGE or its saponin fraction (RGS) on HCC cells were examined by the lactate dehydrogenase assay in a dose- or time-dependent manner. The effect of RGE or RGS on autophagy was measured by analyzing microtubule-associated protein 1A/1B-light chain (LC)3-II expression and LC3 puncta formation in HCC cells. Late-stage autophagy suppression was tested using tandem-labeled green fluorescent protein (GFP)-monomeric red fluorescent protein (mRFP)-LC3. Results: RGE markedly increased the amount of LC3-II, but green and red puncta in tandem-labeled GFP-mRFP-LC3 remained colocalized over time, indicating that RGE inhibited autophagy at a late stage. Suppression of autophagy through knockdown of key ATG genes increased doxorubicin-induced cell death, suggesting that autophagy induced by doxorubicin has a protective function in HCC. Finally, RGE and RGS markedly sensitized HCC cells, (but not normal liver cells), to doxorubicin-induced cell death. Conclusion: Our data suggest that inhibition of late-stage autophagic flux by RGE is important for its potentiation of doxorubicin-induced cancer cell death. Therapy combining RGE with doxorubicin could serve as an effective strategy in the treatment of HCC.

Effects of Ginseng Saponins in Energy Metabolism, Memory, and Anti-neurotoxicity

  • Wang Lawrence C.H.;Lee Tze-fun
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2002년도 학술대회지
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    • pp.55-65
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    • 2002
  • Ginseng has been used as a key constituent in traditional medicine prescriptions for centuries. Other than its well-known anti-stress and adaptogenic properties, ginseng has also been shown to be very effective in treating age-related deterioration in metabolic and memory functions. Although it is generally believed that the saponin (GS) fraction of the ginseng root accounts for the bioactivity of ginseng, a direct demonstration on which ginsenoside does what is still generally lacking. In the past decade, our laboratory has endeavored to identify the active GS components involved in energy metabolism, memory, and anti-neurotoxicity. To examine the ergogenic effects of GS in enhancing aerobic capacity, rats were subjected to either severe cold ($40^{\circ}C$ under helium-oxygen, two hours) or exercise workload $(70\%\;VO_{2}max,$ to exhaustion). Acute systemic injection (i.p.) of ginseng GS (5-20 mg/kg) significantly elevated both the total and maximum heat production in rats and improved their cold tolerance. However, pretreating the animal with the optimal dose (10 mg/kg) of GS devoid of $Rg_1\;and\;Rb_1$ failed to elicit any beneficial effects in improving cold tolerance. This indicates that either $Rb_1\;and/or\;Rg_1$ may be essential in exemplifying the thermogenic effect of GS. Further studies showed that only pretreating the animals with $Rb_1(2.5-5\;mg/kg),\;but\;not\;Rg_l,$ resulted in an increase in thermogenesis and cold tolerance. In contrast to the acute effect of GS on cold tolerance, enhancement of exercise performance in rats was only observed after chronic treatment (4 days). Further, we were able to demonstrate that both $Rb_1\;and\;Rg_1$ are effective in enhancing aerobic endurance by exercise. To illustrate the beneficial effects of GS in learning and memory, a passive avoidance paradigm (shock prod) was used. Our results indicated that the scopolamineinduced amnesia can be significantly reversed by chronically treating (4 days) the rats with either $Rb_1\;or\;Rg_1$ (1.25 - 2.5 mg/kg). To further examine its underlying mechanisms, the effects of various GS on ${\beta}-amyloid-modulated$ acetylcholine (ACh) release from the hippocampal slices were examined. It was found that inclusion of $Rb_1$ (0.1 ${\mu}M$), but not $Rg_1$, can attenuate ${\beta}-amyloid-suppressed$ ACh release from the hippocampal slices. Our results demonstrated that $Rb_1\;and\;Rg_1$ are the key components involved in various beneficial effects of GS but they may elicit their effects through different mechanisms.

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