• 제목/요약/키워드: ginsenoside Rh4

검색결과 124건 처리시간 0.021초

Cosmetic Potential of Enzymatic Treated Ginseng Leaf

  • Lee, Hyun-Sun;Lee, Hyun-Jung;Cho, Hye-Jin;Park, Sung-Sun;Kim, Jin-Man;Suh, Hyung-Joo
    • Journal of Ginseng Research
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    • 제34권3호
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    • pp.227-236
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    • 2010
  • The objective of this study was to evaluate the potential use of ginseng leaf as a cosmetic material. In this research, we employed enzymatic treated ginseng leaf by using Ultraflo L to improve the recovery of ginsenosides from the ginseng leaf and studied the biological activities and skin safety of the enzymatic treated ginseng leaf for use as a cosmetic material. The total ginsenoside contents of the non-enzymatic treated ginseng leaf (NEGL) and Ultraflo L treated ginseng leaf (UTGL) were 271 and 406 mg/g, respectively. The level of metabolite ginsenosides (sum of Rg2, Rg3, Rg5, Rk1, compound K, Rh1, Rh2, and F2) was higher in UTGL (93.1 mg) compared to NEGL (62.4 mg) in one gram ginseng leaf extract. The increase in amounts of ginsenoside types in UTGL compared to NEGL was generally 140% to 157%. UTGL exhibited relatively higher 2,2-diphenyl-2-picrylhydrazyl hydrate ($IC_{50}$, 2.8 mg/mL) and 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt ($IC_{50}$, 1.6 mg/mL) radical scavenging activities compared to NEGL (4.8 mg/mL and 2.2 mg/mL). The UTGL group showed normalized hydrogen peroxide, lipid peroxidation and visual wrinkling grade induced-UVB exposure. The UTGL did not induce any adverse reactions such as erythema and edema on intact skin sites; however, some guinea pigs treated with UTGL on abraded skin sites showed very slight erythema. The primary irritation index (PII) score of UTGL was 0.05 and it was classified as a practically non-irritating material (PII, 0 to 0.5). In skin sensitization tests with guinea pigs, UTGL had a positive rate of skin sensitization at 40%, and the mean evaluation score was 0.4.

Gypenoside V로부터 minor ginsenosides의 생산 (Production of Minor Gisenosides from Gypenoside V)

  • 손나리;민진우;장미;김효연;전지나;양덕춘
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2010년도 정기총회 및 추계학술발표회
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    • pp.20-20
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    • 2010
  • Panax ginseng C.A Meyer is frequently taken orally as a traditional herbal medicine in Asian countries. The major components of ginseng are ginsenoside, which are pharmaceutical activity. The six major ginsenosides, including Rb1, Rb2, Rc, Rd, Re and Rg1 account for 90% of total ginsenosides. Even though the minor ginsenosides, including Rg3, Rh2 and compound K has high pharmacetical activities, the price of minor ginsenosides is too high. Therefore we isolated the gypenoside V and made it converted to minor ginsenosides. In the plant Gynostemma pentaphyllum Makino, gypenosdie V was presented as dominant saponin (content about 2.4%), and was similar to protopanaxadol type ginsenosides such as ginsenoside Rb1. In this study, we confirmed that the coversion of gypenoside V to minor ginsenosides after using the various treatment such as heating, acid treatment, commercial edible enzyme, and lactobacillus. Consequently, we optimizied the transformation of gypenoside V to minor ginsenoside using Thin Layer Chromatography (TLC), High Performance Liquid Chromatography (HPLC), Time-of-flight Mass Spectrometry (LC/TOF/MS).

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20년 이상 장기저장된 홍삼의 이화학적 특성변화 및 품질안정성 (The Changes of Physicochemical Characteristics and Quality Stability of Korean Red Ginseng (Panax ginseng C.A. Meyer) Stored over 20 Years)

  • 곽이성;한민우;배봉석;안남근;유혜영;박철수;백인호;조병구
    • 생약학회지
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    • 제48권4호
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    • pp.329-338
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    • 2017
  • This study was investigated the changes of quality stability and physicochemical characteristics of the Korean red ginsengs stored for a long times over 20 years. The Korean red ginsengs were stored for 4 to 22 years in canned packaging with polypropylene film and wooden box at room temperatures. The unusal phenomena such as discoloration and pin hole in packaging were not observed. General bacteria showed the vlaues of below 100 CFU/g, coliform groups and molds were not found in any samples stored for 22 year. Any samples also were not detected in mycotoxins. The contents of moisture, ash and crude saponin were the levels of 10.6~11.1%, 3.8~4.2% and 4.1~4.7% during the whole storage periods, respectively. The contents of maltol, which has been known as characteristic flavour and antioxidant of Korean red ginseng, showed remarkably increasing tendency from 0.10 mg/g for 4 years to 2.53 mg/g for 22 years during the storage. The contents of AFG (arginyl-fructosyl-glucose), arginine and free sugar were slightly decreased. Acidic polysaccharide and ginsenoside were not changed significantly during the storage periods. The contents of acidic polysaccharide and total ginsenosides were the 75.1~76.3 mg/g and 15.1~16.6 mg/g, respectively. The sums of ginsenoside-Rg1,-Rb1 and -Rg3s were the ranges of 9.3~9.9 mg/g and PD (ginsenoside-Rb1, -Rb2,-Rc,-Rd,-Rg3s,-Rg3r)/PT (ginsenoside-Rg1,-Rg2,-Re,-Rf,-Rh1) saponin ratios were the levels of 1.4~1.5. These results suggest that Korean red ginsengs stored for long periods show relatively stable quaility stabilities and not significantly changed the contents of ginsenoside and polysaccharide during the storage up to 22 years.

Hepatoprotective effect of ultrasonicated ginseng berry extract on a rat mild bile duct ligation model

  • Nam, Yoonjin;Ko, Sung Kwon;Sohn, Uy Dong
    • Journal of Ginseng Research
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    • 제43권4호
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    • pp.606-617
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    • 2019
  • Background: The Panax ginseng berry extract (GBE) is well known to have an antidiabetic effect. The aim of this study is to evaluate and investigate the protective effect of ultrasonication-processed P. ginseng berry extract (UGBE) compared with GBE on liver fibrosis induced by mild bile duct ligation (MBDL) model in rats. After ultrasonication process, the composition ratio of ginsenoside in GBE was changed. The component ratio of ginsenosides Rh1, Rh4, Rg2, Rg3, Rk1, Rk3, and F4 in the extract was elevated. Methods: In this study, the protective effect of the newly developed UGBE was evaluated on hepatotoxicity and neuronal damage in MBDL model. Silymarin (150 mg/kg) was used for positive control. UGBE (100 mg/kg, 250 mg/kg, 500 mg/kg), GBE (250 mg/kg), and silymarin (150 mg/kg) were orally administered for 6 weeks after MBDL surgery. Results: The MBDL surgery induced severe hepatotoxicity that leads to liver inflammation in rats. Also, the serum ammonia level was increased by MBDL surgery. However, the liver dysfunction of MBDL surgery-operated rats was attenuated by UGBE treatment via myeloid differentiation factor 88-dependent Toll-like receptor 4 signaling pathways. Conclusion: UGBE has a protective effect on liver fibrosis induced by MBDL in rats through inhibition of the TLR4 signaling pathway in liver.

홍삼과 백삼의 비교 고찰 (The Comparative Understanding between Red Ginseng and White Ginsengs, Processed Ginsengs (Panax ginseng C. A. Meyer))

  • 남기열
    • Journal of Ginseng Research
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    • 제29권1호
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    • pp.1-18
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    • 2005
  • 인삼(Panax ginseng C.A. Meyer)은 가공방법fl 따라 크게 백삼과 홍삼으로 분류된다. 가공 공정 면에서 홍삼은 생 인삼(수삼)을 그대로 건조한 백삼과는 다르게 일정한 온도조건 하에서 수증기로 쪄서 건조 한 인삼으로 두 종류의 인삼간에는 열처리 공정에 차이점이 있다. 품질 안정성 면에서 홍삼은 열처리과정에서 효소의 불 활성화와 자체 항산화 물질의 증가로 저장성이 양호하고, 호화전분이 되어 끓일 때 내용성분이 잘 우러나오고 소화 흡수도 양호한 것으로 여겨진다. 성분 면에서 홍삼제조 시 열처리(steaming처리)와 가수분해 반응에 의해 화학성분의 구조적 변환이 일어나 홍삼특유의 암세포증식억제 활성 성분인 $ginsenosides-Rh_2,\;-Rh_4,\;-Rs_3,\;-Rs_4,\;-Rg_5$, 암세포 전이 억제 및 혈관확장 효과 등을 나타내는 $ginsenoside-Rg_3$ 등이 생성된다는 것이 밝혀졌다. 또한 비사포닌계 생리활성물질로 암세포 증식억제 활성을 가진 polyacetylenic alcobol의 구조적 변환에 의해 panaxytriol 등이 생성되고, 그리고 maillard 반응 생성물로 항산화 활성 성분인 maltol과 당과 아미노산이 결합된 아미노산 유도체인 arginyl-fructsyl-glucose등이 생성된다. 한편 홍삼과 백삼 및 이들 제품의 수출과 관련하여 각 수출 대상국의 진세노사이드 수준의 품질관리기준에 대한 충분한 분석화학적 정보의 확보가 필요하며, 금후 이에 적합한 품질기준의 설정 보완이 필요할 것이다. 특히 홍삼의 경우 찌는 온도와 시간의 장단에 따라, 또는 그 농축액 제조 시 추출 및 농축 조건(온도와 시간)에 따라 인삼의 품질 지표 성분으로 이용되고 있는 ginsenosides를 비롯한 상당한 성분의 변환이 일어날 수 있으므로 이를 고려한 품질관리방법의 고안이 필요할 것으로 사료된다. 효능 면에서 홍삼과 백삼의 차별성에 대해서는 in vitro 혹은 in vivo 시험에서 노화억제효과와 관련된 항산화 활성을 비롯해서 혈액순환개선 효과, 암 발생 억제력 등의 약리 활성이 홍삼이 백삼보다 상대적으로 우수한 것으로 보고되었다. 아울러 한방의학에서 일반적으로 허를 보 하는 힘은 홍삼이 강한 것으로 인식되고 있다. 그러나 아직 실제 임상실험에 의한 비교 평가는 미흡한 실정이며, 특히 경구투여 후 체내 동태측면에서 그 효과의 차별성에 대한 연구는 거의 이루어지지 않았다. 금후 홍삼과 백삼의 효과 우열의 측면이 아닌 그 용도와 적응증에 차이가 있는지에 초점을 맞추어 보다 과학적 평가가 이루어져야 할 것이다. 결론적으로 가능한 동일한 재배조건에서 생산된 원료수삼으로 제조된 홍삼과 백삼의 원 생약과 그 추출 분획물, 또는 성분을 시료로 하여 화학성분 조성을 비교하고 이와 연계한 실험적 효능연구의 확충과 특히 임상적 효능 비교연구를 통해 과연 그 적응증에 차이가 있는지에 대한 보다 많은 과학적 검토가 이루어져야 할 것이다.

Effects of Ginsenosides and Their Metabolites on Voltage-dependent Ca2+ Channel Subtypes

  • Lee, Jun-Ho;Jeong, Sang Min;Kim, Jong-Hoon;Lee, Byung-Hwan;Yoon, In-Soo;Lee, Joon-Hee;Choi, Sun-Hye;Lee, Sang-Mok;Park, Yong-Sun;Lee, Jung-Ha;Kim, Sung Soo;Kim, Hyoung-Chun;Lee, Boo-Yong;Nah, Seung-Yeol
    • Molecules and Cells
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    • 제21권1호
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    • pp.52-62
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    • 2006
  • In previous reports we demonstrated that ginsenosides, active ingredients of Panax ginseng, affect some subsets of voltage-dependent $Ca^{2+}$ channels in neuronal cells expressed in Xenopus laevis oocytes. However, the major component(s) of ginseng that affect cloned $Ca^{2+}$ channel subtypes such as ${\alpha}_{1C}$(L)-, ${\alpha}_{1B}$(N)-, ${\alpha}_{1A}$(P/Q)-, ${\alpha}_{1E}$(R)- and ${\alpha}_{1G}$(T) have not been identified. Here, we used the two-microelectrode voltage clamp technique to characterize the effects of ginsenosides and ginsenoside metabolites on $Ba^{2+}$ currents ($I_{Ba}$) in Xenopus oocytes expressing five different $Ca^{2+}$ channel subtypes. Exposure to ginseng total saponins (GTS) induced voltage-dependent, dose-dependent and reversible inhibition of the five channel subtypes, with particularly strong inhibition of the ${\alpha}_{1G}$-type. Of the various ginsenosides, $Rb_1$, Rc, Re, Rf, $Rg_1$, $Rg_3$, and $Rh_2$, ginsenoside $Rg_3$ also inhibited all five channel subtypes and ginsenoside $Rh_2$ had most effect on the ${\alpha}_{1C}$- and ${\alpha}_{1E}$-type $Ca^{2+}$ channels. Compound K (CK), a protopanaxadiol ginsenoside metabolite, strongly inhibited only the ${\alpha}_{1G}$-type of $Ca^{2+}$ channel, whereas M4, a protopanaxatriol ginsenoside metabolite, had almost no effect on any of the channels. $Rg_3$, $Rh_2$, and CK shifted the steady-state activation curves but not the inactivation curves in the depolarizing direction in the ${\alpha}_{1B}$- and ${\alpha}_{1A}$-types. These results reveal that $Rg_3$, $Rh_2$ and CK are the major inhibitors of $Ca^{2+}$ channels in Panax ginseng, and that they show some $Ca^{2+}$ channel selectivity.

Ginsenosides의 처리온도(處理溫度) 및 시간(時閭)에 따른 반응속도론적(反應速度論的) 연구(硏究) (Kinetic Studies on the Thermal Degradation of Ginsenosides in Ginseng Extract)

  • 최진호;김두하;성현순;김우정;오성기
    • 한국식품과학회지
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    • 제14권3호
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    • pp.197-202
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    • 1982
  • 인삼제품제조용(人蔘製品製造用)엑기스의 숙성중(熟成中)에 일어나는 ginsenosides의 분해(分解)에 미치는 온도(溫度)의 영향(影響)을 구명(究明)하기 위하여 숙성온도(熟成溫度) 및 시간(時間)에 따른 ginsenosides의 함량변화(含量變化)로써 분해속도상수(分解速度常數) 및 반감기(牛減期)를 구(求)하였고 분해속도상수(分解速度常數)와 온도(溫度)에 대(對)한 Arrhenius plot에 의하여 활성화(活性化)에너지 및 $Q_{10}$ value를 구(求)하여 ginsenosides의 분해속도상수(分解速度常數)의 온도의존성(溫度依存性)에 대(對)한 관계식(關係式)을 설정(設定)하였다. 가. ginsenosides의 분해반응(分解反應)은 1차반응(次反應)을 나타냈으며 분해시(分解時)의 반감기(半減期)가 $100^{\circ}C$에서 34시간(時間), $90^{\circ}C$에서 70시간(時間), $80^{\circ}C$에서는 131시간(時間)이므로 ginsenosides의 함량변화(含量變化)만을 고려(考慮)한다면 $80^{\circ}C$이하(以下)의$70^{\circ}C$ 부근에서 숙성(熟成)함이 바람직하다. 나. 숙성중(熟成中)에 ginsenoside-Re가 감소(減少)하는 대신 $ginsenoside-Rg_2$가 증가(增加)하고 $ginsenoside-Rg_1$이 감소(減少)하는 대신 $ginsenoside-Rh_1$이 증가(增加)하므로 ginsenosides의 상호변환관계(相互變換關係)가 인정(認定)되었다. 다. ginsenosides의 분해시(分解時)의 온도상화(速度常數)가 $80^{\circ}C$에서 $5.30{\times}10^{-3}\;hr^{-1}$, $90^{\circ}C$에서 $9.90{\times}10^{-3}\;hr^{-1}$, 100"C에서는 $20.50{\times}10^{-3}\;hr^{-1}$으로서 숙성온도(熟成溫度)가 $10^{\circ}C$높아질 때마다 분해속도상수(分解速度常數)가 약(約) 2배(培) 증가(增加)하였고 또 $Q_{10}$ value도 $2.01{\sim}3.49$로서 숙성온도(熟成溫度)가 높아질수록 ginsenosides는 상대적(相對的)으로 불안정(不安定)하였다. 라. ginsenosides분해시(分解時)의 활성화(活性化)에너지 ($E_a$)는 $16.8{\sim}30.1$ kcal/mole의 범위 안에 있으며 ginsenoside-Re 및 $-Rg_1$$ginsenoside-Rb_1,\;-Rb_2$, -Rc 및 -Rd 보다 훨씬 높으므로 troil saponin이 diol saponin보다 온도(溫度)의 영향(影響)을 더 많이 받고 있었다. 마. total ginsenosides의 분해반응시(分解反應時)의 활성화(活性化)에너지($E_a$)는 17.7kcal/mole이었고 분해속도상수(分解速度常數)의 온도의존성(溫度依存性)은 $k=4.574{\times}10^8{\exp}(-8898.8/T)$의 관계식(關係式)으로 표시(表示)할 수 있다

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Seven New Ginsenosides From a New Processed Ginseng

  • Park, Jeong-Hill;Kim, Jong-Moon;Han, Sang-Beom;Kim, Na-Young;Lee, Seung-Ki;Kim, Nak-Doo;Park, Man-Ki;Han, Byung-Hoon
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1998년도 Proceedings of UNESCO-internetwork Cooperative Regional Seminar and Workshop on Bioassay Guided Isolation of Bioactive Substances from Natural Products and Microbial Products
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    • pp.175-175
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    • 1998
  • We reported a new processed ginseng with increased biological activities which is named as “sun ginseng (SG)”. Study on the saponin constituents of SG led to the isolation of seven new ginsenosides named as ginsenoside Rk$_1$, Rk$_2$, Rk$_3$, Rs$_4$, Rs$\_$5/, Rs$\_$6/ and Rs$\_$7/. Ginsenoside Rk$_1$, Rk$_2$ and Rk$_3$ were the Δ$\^$20(21),24(25)/-diene dammarane compounds, while ginsenoside Rs$_4$, Rs$\_$5/, Rs$\_$6/ and Rs$\_$7/ were mono-acetylated compounds. Many other ginsenosides which were reported as minor constituents of red ginseng were also isolated, which include 20(S)-Rg$_3$, 20(R)-Rg$_3$, Rg$\_$5/, Rg$\_$6/, F$_4$, Rh$_4$, 20(S)-Rs$_3$ and 20(R)-Rs$_3$. The major ginsenosides of SG were 20(S)-Rg$_3$, 20(R)-Rg$_3$, Rk$_1$ and Rg$\_$5/.

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Changes in the ginsenoside content during the fermentation process using microbial strains

  • Lee, So Jin;Kim, Yunjeong;Kim, Min-Gul
    • Journal of Ginseng Research
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    • 제39권4호
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    • pp.392-397
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    • 2015
  • Background: Red ginseng (RG) is processed from Panax ginseng via several methods including heat treatment, mild acid hydrolysis, and microbial conversion to transform the major ginsenosides into minor ginsenosides, which have greater pharmaceutical activities. During the fermentation process using microbial strains in a machine for making red ginseng, a change of composition occurs after heating. Therefore, we confirmed that fermentation had occurred using only microbial strains and evaluated the changes in the ginsenosides and their chemical composition. Methods: To confirm the fermentation by microbial strains, the fermented red ginseng was made with microbial strains (w-FRG) or without microbial strains (n-FRG), and the fermentation process was performed to tertiary fermentation. The changes in the ginsenoside composition of the self-manufactured FRG using the machine were evaluated using HPLC, and the 20 ginsenosides were analyzed. Additionally, we investigated changes of the reducing sugar and polyphenol contents during fermentation process. Results: In the fermentation process, ginsenosides Re, Rg1, and Rb1 decreased but ginsenosides Rh1, F2, Rg3, and Compound Y (C.Y) increased in primary FRG more than in the raw ginseng and RG. The content of phenolic compounds was high in FRG and the highest in the tertiary w-FRG. Moreover, the reducing sugar content was approximately three times higher in the tertiary w-FRG than in the other n-FRG. Conclusion: As the results indicate, we confirmed the changes in the ginsenoside content and the role of microbial strains in the fermentation process.

Microbial Conversion of Ginsenoside from the Extract of Korean Red Ginseng (Panax ginseng) by Lactobacillus sp.

  • Cho, Hye-Jin;Jung, Eun-Young;Oh, Sung-Hoon;Yoon, Brian;Suh, Hyung-Joo;Lee, Hyun-Sun
    • Preventive Nutrition and Food Science
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    • 제15권2호
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    • pp.105-112
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    • 2010
  • Thirty-four strains of Lactobacillus species were isolated from soil and eight of these isolates (M1-4 and P1-4) were capable of growing on red ginseng agar. The M1 and P2 strains were determined to be L. plantarum and other strains (M2, M3, M4, P1, P3 and P4) were determined to be L. brevis. Fermentation of red ginseng extract (RGE) with strains M1, M2, P2 and P4 resulted in a low level of total carbohydrate content (174.3, 170.0, 158.8 and 164.8 mg/mL, respectively). RGE fermented by M3 showed a higher level of uronic acid than the control. The polyphenol levels in RGE fermented by M1, P1 and P2 (964.9, 941.7 and $965.3\;{\mu}g/mL$, respectively) were higher than the control ($936.8\;{\mu}g/mL$). Total saponin contents in fermented RGE (except M1) were higher than the control. RGE fermented by M2 and M3 had the highest levels of total ginsenosides (31.7 and 32.7 mg/mL, respectively). The levels of the ginsenoside Rg3 increased from 2.6 mg/mL (control) to 3.0 mg/mL (M2) or 3.1 mg/mL (M3). RGE fermented by M2 and M3 also had the highest levels of Rg5+Rk1 (7.7 and 8.3 mg/mL, respectively). Metabolite contents of ginsenoside (sum of CK, Rh1, Rg5, Rk1, Rg3 and Rg2) of M2 (13.0 mg/mL) and M3 (13.9 mg/mL) were also at a high level among the fermented RGE. Protopanaxadiol and protopanaxatriol content of ginsenoside of M2 (10.9 and 5.4 mg/mL, respectively) and M3 (11.0 and 5.7 mg/mL, respectively) were at higher levels than other fermented RGE.