• 제목/요약/키워드: triterpene

검색결과 199건 처리시간 0.023초

Development of New Materials of Ginseng by Nanoparticles

  • Yang, Deok Chun;Mathiyalagan, Ramya;Yang, Dong Uk;Perez, Zuly Elizabeth Jimenez;Hurh, Joon;Ahn, Jong Chan
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2018년도 춘계학술발표회
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    • pp.3-3
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    • 2018
  • For centuries, Panax ginseng Meyer (Korean ginseng) has been widely used as a medicinal herb in Korea, China, and Japan. Ginsenosides are a class of triterpene saponins and recognized as the bioactive components in Korean ginseng. Ginsenosides, which can be classified broadly as protopanaxadiols (PPD), protopanaxatriols (PPT), and oleanolic acids, have been shown to flaunt a vast array of pharmacological activities such as immune-modulatory, anti-inflammatory, anti-tumor, anti-diabetic, and antioxidant effects. In recent years, a number of ginseng and ginsenoside researches have increasingly gained wide attention owing to its unique pharmacological properties. Although good efficacies of ginsenosides have been reported, lack of target specific delivery into tumor sites, low solubility, and low bioavailability due to modifications in gastro-intestinal environments limit their biomedical application in clinical trials. As a result to this major challenge, nanotechnology and drug delivery techniques play a significant role to solve this problematic issue. Thus, we reported the preparation of poly-ethylene glycol (PEG) and glycol chitosan (GC) functionalized to ginsenoside (Compound K and PPD) conjugates via hydrolysable ester bonds with improved aqueous solubility and pH-dependent drug release. In vitro cytotoxicity assays revealed that PEG-CK, and PPD-CK conjugates exhibited lower cytotoxicity compared to bare CK and PPD in HT29 cells. However, GC-CK conjugates exhibited higher and similar cytotoxicity in HT29 and HepG2 cells. Furthermore, GC-CK-treated RAW264.7 cells did not exhibit significant cell death at higher concentration of treatment which supports the biocompatibility of the polymer conjugates. They also inhibited nitric oxide production in lipopolysaccharide (LPS)-induced RAW64.7 cells. In addition to polymer-ginsenoside conjugates, silver (AgNps) and gold nanoparticles (AuNps) have been successfully synthesized by green chemistry using different m. The biosynthesized nanoparticles demonstrated antimicrobial efficacy, anticancer, anti-inflammatory, antioxidant activity, biofilm inhibition, and anticoagulant effect. Special interest on the effective delivery methods of ginsenoside to treatment sites is the focus of metal nanoparticle research.In short, nano-sizing of ginsenoside results in an increased water solubility and bioavailability. The use of nano-sized ginsenoside and P. ginseng mediated metallic nanoparticles is expected to be effective on medical platform against various diseases in the future.

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Ginsenoside Rg1 suppresses early stage of adipocyte development via activation of C/EBP homologous protein-10 in 3T3-L1 and attenuates fat accumulation in high fat diet-induced obese zebrafish

  • Koh, Eun-Jeong;Kim, Kui-Jin;Choi, Jia;Jeon, Hui Jeon;Seo, Min-Jung;Lee, Boo-Yong
    • Journal of Ginseng Research
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    • 제41권1호
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    • pp.23-30
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    • 2017
  • Background: Ginsenoside Rg1 is a class of steroid glycoside and triterpene saponin in Panax ginseng. Many studies suggest that Rg1 suppresses adipocyte differentiation in 3T3-L1. However, the detail molecular mechanism of Rg1 on adipogenesis in 3T3-L1 is still not fully understood. Methods: 3T3-L1 preadipocyte was used to evaluate the effect of Rg1 on adipocyte development in the differentiation in a stage-dependent manner in vitro. Oil Red O staining and Nile red staining were conducted to measure intracellular lipid accumulation and superoxide production, respectively. We analyzed the protein expression using Western blot in vitro. The zebrafish model was used to investigate whether Rg1 suppresses the early stage of fat accumulation in vivo. Results: Rg1 decreased lipid accumulation in early-stage differentiation of 3T3-L1 compared with intermediate and later stages of adipocyte differentiation. Rg1 dramatically increased CAAT/enhancer binding protein (C/EBP) homologous protein-10 (CHOP10) and subsequently reduced the $C/EBP{\beta}$ transcriptional activity that prohibited the initiation of adipogenic marker expression as well as triglyceride synthase. Rg1 decreased the expression of extracellular signal-regulated kinase 1/2 and glycogen synthase kinase $3{\beta}$, which are also essential for stimulating the expression of $CEBP{\beta}$. Rg1 also reduced reactive oxygen species production because of the downregulated protein level of nicotinamide adenine dinucleotide phosphate hydrogen (NADPH) oxidase 4 (NOX4). While Rg1 increased the endogenous antioxidant enzymes, it also dramatically decreased the accumulation of lipid and triglyceride in high fat diet-induced obese zebrafish. Conclusion: We demonstrated that Rg1 suppresses early-stage differentiation via the activation of CHOP10 and attenuates fat accumulation in vivo. These results indicate that Rg1 might have the potential to reduce body fat accumulation in the early stage of obesity.

인삼(Panax ginseng)으로부터 생물전환을 이용한 생리활성물질인 Compound K의 생합성 (Biosynthesis of Compound K, a biologically active saponin of ginseng(Panax ginseng) by bioconversion)

  • 김무성;김자이;정경환;유광원;문기성;이향렬
    • 한국응용과학기술학회지
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    • 제38권5호
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    • pp.1335-1344
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    • 2021
  • 진세노사이드 Compound K는 트라이터펜계 사포닌으로써 인삼의 잎, 줄기, 뿌리등에서 발견된다. 본 연구는 효소 Plantase를 이용하여 인삼 추출물로부터 고부가가치의 진세노사이드인 Compound K를 생산하는 연구를 하였다. Plantase는 인삼추출물에서 Compound K를 매우 효율적으로 생산함을 보여 주었다. 또한 다양한 온도와 pH에서 Compound K 생산에 대한 최적의 반응을 조사한 결과 pH 5, 50 ℃에서 가장 높은 효율을 보였다. 최적 조건에서 Compound K는 전체 추출물의 35%이상 농축될 수 있음을 확인하였다. 생물전환된 Compound K 농축물의 항균효과를 검정한 결과 여드름균인 Cutibacterium acnes KCTC 3314에 선택적인 활성을 보였다. Compound K (35% 함유) 인삼 생물전환물의 C. acnes KCTC 3314 균주에 대한 최소저해농도 측정 결과 31.25ug/mL로 확인되었다. 따라서 향후 여드름균 완화용 화장품의 잠재적 소재로 사용될 수 있을 것으로 기대된다.

GC/MS를 이용한 기장 기름의 밀리아신 함량 분석 (Determination of Miliacin from Proso Millet Oil by GC/MS)

  • 안연주;이병원;추지호;송석보;김지영;주영광;한상익
    • 한국작물학회지
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    • 제67권4호
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    • pp.335-341
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    • 2022
  • 기장에 있는 트리테르페노이드류인 밀리아신 성분은 각질 세포의 증식을 촉진하는 등의 특성을 가지고 있어 탈모에 효과가 있다고 알려져 있다. 이 연구에서는 기장의 기름을 추출하여 검화 반응을 거쳐 불검화물의 추출 방법을 이용하여 GC/MS로 분석하였다. 기장 기름 성분을 GC/MS의 정성분석을 통해 확인하였으며, 기장 5품종과 비교를 위한 조 2품종의 밀리아신 함량을 분석하였다. 1. 기장에서는 β-amyrine, lupeol 등의 pentacyclic triterpene 류의 성분들이 검출되었다. 2. 밀리아신 함량은 기장의 한라찰에서 370.38±0.04 ㎍/100 mg oil으로 가장 높은 함량을 나타내었다. 3. 특히 조의 품종인 삼다찰과 삼다메에서는 밀리아신 함량이 검출되지 않았다.

Comparative transcriptome and metabolome analyses of four Panax species explore the dynamics of metabolite biosynthesis

  • Hyunjin, Koo;Yun Sun, Lee;Van Binh, Nguyen;Vo Ngoc Linh, Giang;Hyun Jo, Koo;Hyun-Seung, Park;Padmanaban, Mohanan;Young Hun, Song;Byeol, Ryu;Kyo Bin, Kang;Sang Hyun, Sung;Tae-Jin, Yang
    • Journal of Ginseng Research
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    • 제47권1호
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    • pp.44-53
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    • 2023
  • Background: The genus Panax in the Araliaceae family has been used as traditional medicinal plants worldwide and is known to biosynthesize ginsenosides and phytosterols. However, genetic variation between Panax species has influenced their biosynthetic pathways is not fully understood. Methods: Simultaneous analysis of transcriptomes and metabolomes obtained from adventitious roots of two tetraploid species (Panax ginseng and P. quinquefolius) and two diploid species (P. notoginseng and P. vietnamensis) revealed the diversity of their metabolites and related gene expression profiles. Results: The transcriptome analysis showed that 2,3-OXIDOSQUALENE CYCLASEs (OSCs) involved in phytosterol biosynthesis are upregulated in the diploid species, while the expression of OSCs contributing to ginsenoside biosynthesis is higher in the tetraploid species. In agreement with these results, the contents of dammarenediol-type ginsenosides were higher in the tetraploid species relative to the diploid species. Conclusion: These results suggest that a whole-genome duplication event has influenced the triterpene biosynthesis pathway in tetraploid Panax species during their evolution or ecological adaptation. This study provides a basis for further efforts to explore the genetic variation of the Panax genus.

3T3-L1 지방세포에서 루페올의 IRS-1의 인산화 조절을 통한 TNF-α 유도 인슐린 저항성 개선 효과 (Lupeol Improves TNF-α Induced Insulin Resistance by Downregulating the Serine Phosphorylation of Insulin Receptor Substrate 1 in 3T3-L1 Adipocytes)

  • 이현아;한지숙
    • 생명과학회지
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    • 제33권11호
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    • pp.859-867
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    • 2023
  • 루페올은 5환성 트리테르펜의 일종으로 많은 질병에 치료 효과가 있는 것으로 보고되었으나, 인슐린 저항성에 미치는 영향은 명확하지 않다. 본 연구에서는 3T3-L1 지방세포에서 루페올의 IRS-1 인산화 억제능을 통해 인슐린 저항성 개선효과를 조사하였다. 3T3-L1 세포를 배양하고 TNF-α를 24시간 동안 처리하여 인슐린 저항성을 유도하였다. 서로 다른 농도의 루페올(15, 30 μM) 또는 100 nM의 rosiglitazone을 처리한 세포를 배양한 후, 용해된 세포를 이용하여 western blotting을 시행하였다. 실험결과 루페올은 지방세포에서 TNF-α에 의해 유발되는 인슐린 신호전달의 음성 조절자와 염증 활성화 단백질 kinase에 대한 개선 효과를 나타냈다. 인슐린 신호전달의 음성 조절자인 PTP-1B와 JNK의 활성 및 IKK와 염증활성화 단백질키나아제의 활성을 억제하였다. 또한, 루페올은 IRS-1의 serine 인산화는 하향 조절하고 tyrosine 인산화는 상향 조절하였다. 그 후, 하향 조절된 PI3K/AKT 경로가 활성화되고, GLUT 4의 세포막 전위가 자극되어, 결과적으로 인슐린 저항성이 유도된 3T3-L1 지방세포에서에서 세포내 포도당 흡수가 증가하였다. 본 연구결과, 루페올은 3T3-L1 지방세포에서 인슐린 신호전달 및 염증 활성화 단백질 kinsase들의 음성 조절인자를 억제하여, IRS-1의 serine 인산화를 하향 조절함으로써 TNF-α 유발 인슐린 저항성을 개선할 수 있을 것으로 사료된다.

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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복령피 추출물의 멜라닌 생성 저해 효과 (The Inhibitory Effects of Poria cocos Bark Extract on Melanogenesis)

  • 이응지;배성윤;손락호;이용화
    • 대한화장품학회지
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    • 제35권3호
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    • pp.243-250
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    • 2009
  • 천연 미백 소재 개발을 위하여 복령피 추출물과 복령피 추출물에서 분리한 활성 물질의 멜라닌 생성에 연관된 생리 활성을 분석하였다. 복령피 추출물은 $100{\mu}g$/mL 이하에서 세포 독성이 없는 것으로 확인 되었으며 free radical 소거능(DPPH)과 superoxide radicals 소거능 결과는 각각 $IC_{50}=19.4{\pm}2.21{\mu}g$/mL, $IC_{50}=103{\pm}3.33{\mu}g$/mL을 나타내었다. $50{\mu}g$/mL 농도에서 B16 melanoma 세포 내 tyrosinase의 활성을 34 % 저해 하였으며, 세포 내 멜라닌 생합성 저해 효과는 $50{\mu}g$/mL 농도의 복령피 추출물을 72 h 동안 처리한 세포에서 51 % 억제율을 보이는 것으로 나타났다. 이러한 복령피 추출물의 활성 물질을 분리하여 $^1H$-NMR, $^{13}C$-NMR, Mass analysis 등의 기기 분석을 실시한 결과 triterpene류의 3-$\beta$-hydroxylanosta-7,9(11),24-trien-4-oic acid로 동정되었고 $100{\mu}g$/mL 이하에서 세포 독성이 없는 것으로 확인 되었다. 3-$\beta$-hydroxylanosta-7,9(11),24-trien-4-oic acid의 free radical 소거능과 superoxide radicals 소거능 결과는 각각 $IC_{50}=4.3{\pm}0.15{\mu}g$/mL, $IC_{50}=54{\pm}1.67{\mu}g$/mL을 나타내었다. $10{\mu}g$/mL 농도에서 세포내 tyrosinase의 활성을 43 % 저해 하였으며, 멜라닌 저해 효과를 확인한 결과 $IC_{50}=3.6{\mu}g$/mL으로 나타났다. Western blot을 이용하여 tyrosinase, tyrosinase related protein-1 (TRP-1), TRP-2 단백질의 발현 감소를 확인하였다. 복령피 추출물과 3-$\beta$-hydroxylanosta-7,9(11),24-trien-4-oic acid는 우수한 미백 효능을 갖는 화장품 소재로의 개발 가능성이 클 것으로 기대된다.

인삼 모상근의 생장과 Ginsenoside 생합성에 미치는 석결명의 영향 (The Effect of Haliotidis Concha on the Growth and Ginsenoside Biosynthesis of Korean Ginseng Hairy Root)

  • 정대영;김유진;심주선;이정혜;정석규;김세영;인준교;이범수;양덕춘
    • Journal of Ginseng Research
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    • 제33권3호
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    • pp.206-211
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    • 2009
  • 인삼 모상근의 생장과 ginsenosides의 함량을 증가시키기 위하여 생장조절제가 첨가되지 않은 1/2 MS 배지에 석결명의 농도와 처리시기를 달리하여 인삼 모상근 KGHR-8 세포주를 30일간 배양하였다. 실험 결과, 고체배양에서 10 mg/L 석결명을 첨가하였을 때 생장량이 가장 높으며, 300 mg/L 이상 처리구는 대조군에 비해 생장이 낮았다. 액체배양시 10, 15 mg/L 석결명을 첨가하였을 때 생장량이 증가하였고 ginsenoside 함량은 10, 15 mg/L 처리구에서 각각 8.8%, 11.8% 증가를 보였다. 석결명의 최적 처리시점을 구명하고자 첨가시점을 달리하여 인삼 모상근의 생장량을 조사한 결과, 대조군보다 14일 후 10 mg/L 석결명을 접종한 처리구에서 생체중량 22.9%, 건조중량 20.7%으로 가장 높은 인삼 모상근의 생장 증가를 보였다. 또한, 광조사 효과를 조사하기 위해 암실과 광조사 처리구로 나누어 30일간 배양한 결과, 대조군과 비교하여 광조사 처리구에서는 18% 정도 생장량이 증가하였고 암실 처리구에서 거의 차이가 없었다. RT-PCR 결과에서는 10, 20 mg/L 석결명 처리구가 대조군에 비해 사포닌 생합성 관련 유전자인 squalene synthase, squalene epoxidase, dammarenediol synthase, cycloartenol synthase 및 $\beta$-amyrin synthase의 전사량이 증가하였다. Bioreactor (2L)를 이용하여 인삼 모상근을 배양한 결과 처리구가 대조군에 비해 5% 증가를 보였으며, ginsenosides 함량도 2.63 g으로 대조군에 비해 증가하였다. 따라서 석결명은 이차 대사산물인 사포닌의 생산에 영향을 미치는 elicitor로써 역할을 하는 것으로 판단된다.