• 제목/요약/키워드: Ginsenoside $Rh_2$

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Microbial conversion of major ginsenosides in ginseng total saponins by Platycodon grandiflorum endophytes

  • Cui, Lei;Wu, Song-quan;Zhao, Cheng-ai;Yin, Cheng-ri
    • Journal of Ginseng Research
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    • 제40권4호
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    • pp.366-374
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    • 2016
  • Background: In this study, we screened and identified an endophyte JG09 having strong biocatalytic activity for ginsenosides from Platycodon grandiflorum, converted ginseng total saponins and ginsenoside monomers, determined the source of minor ginsenosides and the transformation pathways, and calculated the maximum production of minor ginsenosides for the conversion of ginsenoside Rb1 to assess the transformation activity of endophyte JG09. Methods: The transformation of ginseng total saponins and ginsenoside monomers Rb1, Rb2, Rc, Rd, Rg1 into minor ginsenosides F2, C-K and Rh1 using endophyte JG09 isolated by an organizational separation method and Esculin-R2A agar assay, as well as the identification of transformed products via TLC and HPLC, were evaluated. Endophyte JG09 was identified through DNA sequencing and phylogenetic analysis. Results: A total of 32 ${\beta}$-glucosidase-producing endophytes were screened out among the isolated 69 endophytes from P. grandiflorum. An endophyte bacteria JG09 identified as Luteibacter sp. effectively converted protopanaxadiol-type ginsenosides Rb1, Rb2, Rc, Rd into minor ginsenosides F2 and C-K, and converted protopanaxatriol-type ginsenoside Rg1 into minor ginsenoside Rh1. The transformation pathways of major ginsenosides by endophyte JG09 were as follows: $Rb1{\rightarrow}Rd{\rightarrow}F2{\rightarrow}C-K$; $Rb2{\rightarrow}C-O{\rightarrow}C-Y{\rightarrow}C-K$; $Rc{\rightarrow}C-Mc1{\rightarrow}C-Mc{\rightarrow}C-K$; $Rg1{\rightarrow}Rh1$. The maximum production rate of ginsenosides F2 and C-K reached 94.53% and 66.34%, respectively. Conclusion: This is the first report about conversion of major ginsenosides into minor ginsenosides by fermentation with P. grandiflorum endophytes. The results of the study indicate endophyte JG09 would be a potential microbial source for obtaining minor ginsenosides.

인삼의 구증구포에 의한 Ginsenoside의 성분변화 및 BACE-1 억제효과 (Conversion of Ginsenosides by 9 Repetitive Steamings and Dryings Process of Korean Ginseng Root and Its Inhibition of BACE-1 Activity)

  • 김도완;김유진;이연진;민진우;김세영;양덕춘
    • 동의생리병리학회지
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    • 제22권6호
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    • pp.1557-1561
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    • 2008
  • Red ginseng possibly has new ingredients converted during steaming and dry process from fresh ginseng. Kujeungkupo method which means 9 repetitive steamings and dryings process was used for the production of red ginseng from 6-year old ginseng roots. Saponin was extracted from each red ginseng produced at the 1st, 3rd, 5th, 7th, and 9th during the steaming and drying treatment, and we analyzed saponin content with TLC. Minor saponins, such as ginsenoside-Rg3, -Rh2, compound K, and F2, increased as the process time of steaming and drying, but major saponins (ginsenoside-Rb1, -Rb2, -Rc, -Rd, -Re, -Rf, -Rg1) were decreased. Major saponins were yet observed almost at the 1st process, then degraded as the increasing time of steaming and drying process. Especially, ginsenoside-Re and -Rg were observed as considerable amount after the 1st treatment, but there were no trace of them after the 9th treatment. Ginsenoside-Rg1, -Rb2, and -Rb1 were also reduced remarkedly by 96.6%, 96%, and 92.3%, respectively. Minor saponins were increased significantly, especially for ginsenoside-Rg3 and ginsenoside-F2. These results suggest that Kujeungkupo method is the very useful method for the production of minor ginsenoside-Rg3 and -Rh2.

Four New Darnmarane-Glycosidesl Ginsenosides $Rg_5, Rh_4, Rs_3, AND Ff_2$, from Korean Red Ginsengs the Root off]unarm ginseng C. A. Meyer

  • Jong Dae Park;Nam
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1998년도 Advances in Ginseng Research - Proceedings of the 7th International Symposium on Ginseng -
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    • pp.115-126
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    • 1998
  • Four new dammarnae-glycosides named ginsenosides Rgs, Rh4, RsB and Rf2 have been isolated 1'rom Korean red ginseng, the root of Panax ginseng C. A. Meyer (Araliaceae) and their chemical structures have been elucidated by chemical and spectroscopic methods, including'H-'H COSY, HMQC, HMBC, NOESY, as 3-0- [$\beta$-D-glucopyranosyl(1 ~2)-$\beta$-D-glucopyranosyl] dammar-20(22) , B4-diene-3P,12P-diol (ginsenoside Rgs),6-0-$\beta$-D-glucopyranosyl-dammar-20(22),24-diene-3P,6P, 12P-triol (ginsenoside Rh4),3-0- [6" -0-acetyl-D-glucopyranosyl(1 ~2)--D-glucopyranosyl] 20(5)- protopanaxadiol (ginsenoside Rs3) and 6-0- [u-L-rhamno-pyranosyl(1 ~2)-$\beta$-D-glucopyranosyl] dammarane -3$\beta$, 6a, 12 $\beta$, 20(R),25-pentol(ginsenoslde Rfa). The absolute stereo structure of a double bond at C-20(22) was determined as entgegen type by applying NOESY.OESY.

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홍삼의 추출 시간 및 온도에 따른 Ginsenosides 함량 비교분석 (Quantitative Analysis of Ginsenosides in Red Ginseng Extracted under Various Temperature and Time)

  • 양병욱;한성태;고성권
    • 생약학회지
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    • 제37권4호
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    • pp.217-220
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    • 2006
  • This study compared the contents of ginsenoside according to the extract conditions of red ginseng to provide basic information for developing functional food using red ginseng. According to the result, the content of crude saponin was highest in 72 hours of extraction at $82^{\circ}C$ (RG-823). The content of prosapogenin (ginsenoside $Rh_1,\;Rh_2,\;Rg_2,\;Rg_3$) was highest in 48 hours of extraction, and followed by 72 and 24 hours at $82^{\circ}C$. And at $93^{\circ}C$ the prosapogenin contents were highest in the order of 48 hours, and next in 24 and 72 hours. In addition, ginsenoside $Rb_1,\;Rb_2$ Rc and Re were not detected in 72 hours of extraction at $93^{\circ}C$ (RG-933) presumedly due to hydrolysis, but ginsenoside Rd, Rf and $Rg_1$ were detected as long as 72 hours of extraction. These results show that protopanaxatriol group is relatively more resistant to heat than protopanaxadiol group.

The Changes of Ginsenoside Patterns in Red Ginseng Processed by Organic Acid Impregnation Pretreatment

  • Kim, Mi-Hyun;Lee, Young-Chul;Choi, Sang-Yoon;Cho, Chang-Won;Rho, Jeong-Hae;Lee, Kwang-Won
    • Journal of Ginseng Research
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    • 제35권4호
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    • pp.497-503
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    • 2011
  • In order to enhance bioactive functionalities of ginseng, an acid impregnation processing was applied as a pre-treatment in producing red ginseng. Acid impregnation studies were conducted, and acids (ascorbic, malic, and citric acid) were selected. The optimal concentration of each acid was investigated in this study in terms of ginsenoside contents. The most concerned ginsenoside, $Rg_3$ was increased by ascorbic, malic, and citric acid pre-treated red ginseng up to 1 M acid concentration. In the case of ascorbic acid pre-treated red ginseng, $Rg_2$ concentration was increased depending on acid concentrations. Citric acid pre-treatment enhanced $Rg_2$, $Rg_3$, and $Rh_1+Rh_2$ formation in red ginseng. Therefore, ginsenoside patterns in red ginseng could be changed by acid impregnation pre-treatment depending on acid concentration and acid types. This research is expected to contribute to the development of the ginseng industry via new red ginseng products with selective and intensified functionality.

천연 민간 생약으로부터 항암물질의 분리동정 및 그작용기전에 관한 연구 (Studies on the isloation and action mechanism from natural folk herbs)

  • 정해영
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1994년도 춘계학술대회 and 제3회 신약개발 연구발표회
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    • pp.213-213
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    • 1994
  • 배풍등, 등혹 및 ginsenoside Rh$_1$의 간암세포에 대한 세포독성작용, 인삼 Rh$_1$의 세포보호작용, 비파의 ursolic acid 생체방어기전 활성화 및 산화억제작용, ononin의 radical 제거능을 검토하였다. 그 결과 배풍등 CHCl$_3$분획 및 등혹 CHCl$_3$분획의 간암세포에 대한 강한 세포독성작용을 나타내었으며 배풍등 CHCl$_3$은 sarcoma 180 이식 종양조직의 성장을 유의성있게 억제하였다. Ursolic acid는 지질과산화, 단백질 산화억제와 catalase, GSH S-transferase를 활성화시켰다. 인삼 saponin은 SOD 및 nonprotein-SH를 증가시키고, 지질과산화를 억제시켰다. Ginsenoside Rh$_1$ 및 Rh$_2$는 각각 radical에 대한 세포보호작용과 간암세포 세포독작용을 나타내었다.

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인삼 근권 토양에서 분리한 Stenotrophomonas sp. 4KR4의 Ginsenoside Rb1 전환능 및 분류학적 특성 (Conversion of Ginsenoside Rb1 and Taxonomical Characterization of Stenotrophomonas sp. 4KR4 from Ginseng Rhizosphere Soil)

  • 전인화;조건영;한송이;유선균;황경숙
    • 미생물학회지
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    • 제49권4호
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    • pp.369-376
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    • 2013
  • 인삼 근계(근권, 근면, 근내부)로부터 ginsenoside Rb1 전환효소인 ${\beta}$-glucosidase 생산 균주(BGB)를 분리하였다. 인삼 근계부터 분리된 BGB 28균주의 계통학적 특성을 확인한 결과, 근권에서 Stenotrophomonas 속(3균주), Pseudoxanthomonas 속(1균주), Bacillus 속(1균주)로 확인되었다. 근면로부터 분리된 BGB는 Stenotrophomonas 속(16균주), Streptomyces 속(1균주), Microbacterium 속(1균주)이며, 근내부는 Stenotrophomonas 속(3균주), Lysobacter 속(2균주)를 포함하는 다양한 계통군이 확인 되었다. 특히 인삼 근계로부터 분리된 BGB 균주의 90%가 Stenotrophomonas 계통군에 속하는 특징을 나타내었다. 근권으로부터 분리된 4KR4 균주는 108.17 unit의 ${\beta}$-glucosidase 활성을 나타내었으며, ginsenoside Rb1을 Rd, Rg3 그리고 minor ginsenoside Rh2로 전환되었다. 4KR4 균주는 Stenotrophomonas rhizophila e-$p10^T$ (AJ293463)와 99.65%의 높은 상동성을 나타내었다. 본 연구에서 분리된 ginsenoside 전환세균 4KR4 균주의 계통학적 위치와 표현형적 특징, 균체 지방산조성, 생리 생화학적 특성을 검토한 결과, Stenotrophomonas sp. 4KR4 (=KACC 17635) 균주로 확인되었다.

Merit of Ginseng in the Improvement of Insulin Resistance

  • Cheng, Juei-Tang
    • Journal of Ginseng Research
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    • 제34권3호
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    • pp.155-159
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    • 2010
  • In the present review, the merit of ginseng in the improvement of insulin resistance has been introduced. Using the results in previous studies, we found that ginseng or ginsenoside Rh2 has the ability to reduce glucose-insulin index in rats with insulin resistance. Insulin resistance was induced by feeding of fructose-rich chow in rats. Insulin resistance was characterized by regular methods. Effectiveness of ginseng powder or extract Rh2 was identified in this animal model. Also, the application of ginseng for handling of diabetic disorders in China has been discussed. According to Chinese traditional medicine, ginseng is merit in the treatment of diabetic disorders named as Shiaw-Ker in Chinese. Therefore, it is no doubt that ginseng is helpful in the control of diabetic disorders either prevention or the treatment. Otherwise, the potential effect of ginseng on nervous functions shall be investigated in the future.

고려인삼으로 제조된 홍삼중의 화학적 암 예방성분 (Cancer Chemopreventive Compounds of Red Ginseng Produced from panax ginseng C.A. Meyer)

  • Yun, Taik-Koo;Lee, Yun-Sil;Lee, You-Hui;Yun, Hyo-Yung
    • Journal of Ginseng Research
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    • 제25권3호
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    • pp.107-111
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    • 2001
  • 발암물질을 투여하여 발생하는 마우스 폐선종은 홍삼추출믈의 투여에 의하여 그 발생율이 억제되나 수삼을 투여하면 발생율이 억제되지 않는다. 또한 암환자-대조군연구 결과에 있어서도 수삼즙 또는 수삼절편을 복용한 사람에서는 암의 위험비가 감소되지 않으나 수삼열탕 또는 홍삼을 복용하면 현저한 위험비의 감소를 볼 수 있었다. 이와 같은 결과는 열로 처리된 홍삼중에 암예방 유효성분이 있을 것이라고 추정되어 왔다. 저자들은 4종의 홍삼중의 진세노사이드 즉 Rh$_1$, Rh$_2$, Rg$_3$ 및 Rg$_{5}$ 를 고려홍삼으로부터 분리합성하여 윤의 9주 중기 항발암실험법에 의하여 항발암성을 관찰한바 진세노사이드 Rg$_3$와 Rg$_{5}$의 투여시에는 통계학적으루 유의한 폐선종 발생율이 감소되었으나 Rh$_2$에서는 폐선종발생율이 약간 감소되는 경향을 보였고 Rh$_1$에서는 전혀 영향을 주지 않았다. 이와 같은 소견으로 홍삼에 의한 항발암작용 또는 암예방작용은 홍삼중의 진세노사이드 Rg$_3$및 Rg$_{5}$가 유효성분임을 파악하였으며 이들 진세노사이드 Rg$_3$ Rg$_{5}$ 및 Rh$_2$가 단독 또는 복합적으로 작용할 것으로 추정된다.

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고려인삼(Panax ginseng C.A.Meyer)의 간이법에 의한 홍삼제조 및 사포닌 성분분석 (Saponin Analysis and Red Ginseng Production using the Simplified Method of Korean Ginseng (Panax ginseng C.A.Meyer))

  • 인준교;김은정;이범수;박명한;양덕춘
    • 한국자원식물학회지
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    • 제19권1호
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    • pp.133-138
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    • 2006
  • 홍삼 제조공정을 단순화하면서 효율적으로 유효성분을 증대시키기 위해서 4년근 수삼을 구입하여 깨끗이 수세한 후 $96-98^{\circ}C$에 3시간 정도 수증기로 증삼한 후 30시간 정도 열풍건조하여 홍삼제조를 위한 간이법을 개발하였다. 제조한 홍삼으로부터 홍삼엑스($60^{\circ}$ brix 이상)를 제조하였으며 홍삼엑스의 추출수율은 60% 이상이었다. 간이법으로 제조한 홍삼을 재료로 하여 농축한 홍삼엑스의 사포닌 함량을 조사하기 위해서 HPLC를 이용하여 총 사포닌(total saponin)을 분석하였다. 그 결과 PD계 사포닌 중 암세포전이억제효과와 평활근이완작용이 탁월한 ginsenoside-Rg3에는 H사에 비하여 2배 이상 검출되었으며, 간상해 억제작용과 혈소판 응집억제작용이 있는 것으로 알려진 ginsenoside-Rh1종의 경우 3배 이상 검출이 되었다.