• 제목/요약/키워드: Ginsenoside Rh2 (G-Rh2)

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인삼 1차 부산물의 생산량 및 기능성 성분 특성 (Yield and Quality Characteristics of Ginseng's First Byproducts)

  • 김관후;성봉재;김선익;한승호;김현호;이가순
    • 한국약용작물학회지
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    • 제19권5호
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    • pp.313-318
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    • 2011
  • This study was carried out to utilize the byproducts (flower, immature and mature berry, leaf and stem) of ginseng. Yield of byproducts were $32.7{\pm}9.8g$ in flower, $68.2{\pm}2.2g$ in immature berry, $48.5{\pm}4.3g$ in mature berry, $316.2{\pm}20.5g$ in leaf, and $296.6{\pm}15.4g$ in stem per $3.3m^2$ ($180{\times}90cm$, ginseng root $675.5{\pm}35.7g$/drybasis. The total saponin contents of ginseng byproducts and root are $52.36{\pm}1.24$, $68.71{\pm}1.98$, $168.89{\pm}0.57$, $68.26{\pm}1.32$, $7.85{\pm}0.61$ and $35.08{\pm}0.96$ mg/g, respectively. The main ginsenoside of all byproducts was Re and the highest content was $132.23{\pm}1.56$ mg/g in mature berry. But flower and berry was not detected Rf and Rh1, respectively. Total polyphenolic compound content on mature berry was the highest, $2.242{\pm}0.140%$, after, immature berry > leaf > flower > root > stem order. The DPPH radical scavenging activity on mature berry was the highest, $0.115{\pm}0.004$ mg/mL($IC_{50}$), and the others were the same order of polyphenolic compound and ginsenoside content on byproducts.

Comparative Studies of Panax ginseng and Panax quinquefolium on TCDD-induced Toxicity in Rats

  • Wee Jae Joon;Choi Seung Hoon;Park Kyeong Mee;Kyung Jong Su;Kang Dae Young;Song Tae Won
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2002년도 학술대회지
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    • pp.227-237
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    • 2002
  • One prominent characteristic of2,3,7,8-tetrachlorodibenzop-dioxin (TCDD) toxicity in rats is a reduction of body weight accompanied by an altered serum lipid profile such as hyperlipidemia. A single administration of TCDD (50 ug/kg) resulted in a decrease of body weight and increase of serum cholesterol in rats. TCDD-induced weight loss and serum cholesterol elevation was reduced in rats administered with water extract (100 mg/kg) or saponin fraction (40 mg/kg) of Panax ginseng C.A.Meyer. In contrast, the administration of Panax quinquefolium did not inhibit the TCDD-induced weight loss and serum cholesterol elevation. Histological examinations of liver and testis revealed the administration of saponin fraction of Panax ginseng attenuated the TCDD-induced hispathologicallesions whereas the administration of saponin fraction of Panax quinquefolium did not. High performance liquid chromatographic analysis demonstrated high percentiles of ginsenoside Rg and ginsenoside $Rh_1$ were evident in saponin fraction of Panax ginseng. Results indicate that the protective effects of Panax ginseng, not Panax quinquefolium, on the TCDD-induced toxicity might be resulted from different compositions of saponins in Panax ginseng.

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Caspase-3-mediated cleavage of Cdc6 induces nuclear localization of truncated Cdc6 and apoptosis

  • Yim, Hyung-Shin;Jin, Ying-Hua;Park, Byoung-Duck;Lee, Seung-Ki
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2-2
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    • pp.71.1-71.1
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    • 2003
  • We show that Cdc6, an essential initiation factor for DNA replication, undergoes caspase-3-mediated cleavage in the early stages of apoptosis in HeLa cells and SK-HEP-1 cells induced by etoposide, paclitaxel, ginsenoside Rh2, or TRAIL. The cleavage occurs at the SEVD$\^$442//G motif and generates an N-terminal truncated Cdc6 fragment (p49-tCdc6) that lacks the carboxy-terminal nuclear export sequence (NES). Cdc6 is known to be phosphorylated by cyclin A-Cyclin A-dependent kinase 2 (Cdk2), an event that promotes its exit from the nucleus and probably blocks it from initiating inappropriate DNA replication. (omitted)

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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.

Biotransformation of Ginsenoside Rb1, Crocin, Amygdalin, Geniposide, Puerarin, Ginsenoside Re, Hesperidin, Poncirin, Glycyrrhizin, and Baicalin by Human Fecal Microflora and Its Relation to Cytotoxicity Against Tumor Cells

  • Kim, Young-Suk;Kim, Jung-Jin;Cho, Ki-Ho;Jung, Woo-Sang;Moon, Sang-Kwan;Park, Eun-Kyung;Kim, Dong-Hyun
    • Journal of Microbiology and Biotechnology
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    • 제18권6호
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    • pp.1109-1114
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    • 2008
  • To understand the role of intestinal microflora in the biological effect of functional herbs, which have been used in Korea, Japan, and China as traditional medicines, and suggest new bioactive compounds transformed from herbal constituents, the metabolic activities of the functional herb components (ginsenoside Rb1, crocin, amygdalin, geniposide, puerarin, ginsenoside Re, poncirin, hesperidin, glycyrrhizin, and baicalin) toward their bioactive compounds (compound K, crocetin, benzaldehyde, genipin, daidzein, ginsenoside Rh1, ponciretin, hesperetin, 18b-glycyrrhetic acid, and baicalein) were measured in fecal specimens. The metabolic activities of these components were $882.7{\pm}814.5$, $3,938.1{\pm}2,700.8$, $2,375.5{\pm}913.7$, $1,179.4{\pm}795.7$, $24.6{\pm}10.5$, $11.4{\pm}10.8$, $578.8{\pm}206.1$, $1,150.0{\pm}266.1$, $47.3{\pm}58.6$, and $12,253.0{\pm}6,527.6\;{\mu}mol/h/g$, respectively. No differences were found in the metabolic activities of the tested components between males and females, although these metabolic activities between individuals are extensively different. The metabolites of functional herb components showed more potent cytotoxicity against tumor cells than nonmetabolites. These findings suggest that intestinal microflora may activate the pharmacological effect of herbal food and medicines and must be the biocatalytic converter for the transformation of herbal components to bioactive compounds.

홍삼 농축액과 쌀막걸리의 동시 발효를 통한 홍삼 식초의 제조 및 품질평가 (Manufacture of the Red Ginseng Vinegar Fermented with Red Ginseng Concentrate and Rice Wine, and its Quality Evaluation)

  • 김동국;백무열;김혜경;함영태;김병용
    • 한국식품과학회지
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    • 제44권2호
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    • pp.179-184
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    • 2012
  • 홍삼 특유의 prosapogenin 성분을 극대화 시키기 위해 홍삼의 증숙, 건조 및 추출 공정을 최적화하여 식초에 첨가할 홍삼 농축액을 제조하였다. 농축액을 0-1%의 범위로 첨가한 홍삼 발효 쌀 식초의 경우 정치 배양 20일차에 초산발효가 종료 되었으며 홍삼 농축액의 함유량이 높을수록 pH 감소속도가 늦고 감소량 또한 control에 비해 적음을 확인 할 수 있었다. 산도의 경우 농축액 농도 별 초산 생성 속도에는 차이는 있으나 농축액 함유량이 산도 변화 량에 큰 영향을 미치지 않았다. 1%의 홍삼 농축액을 후 첨가한 식초의 경우 71.75 mg/g의 조사포닌 함량을 가진 반면에 0-1% 범위의 농축액을 주모에 첨가하여 초산 발효를 동시에 진행한 경우 발효 진행 중 상당한 조사포닌 손실이 있음을 확인하였다. 이 두 식초를 가지고 관능검사를 진행한 결과 향기, 맛 및 전체적인 평가에서 농축액과 초산발효를 동시에 진행시킨 홍삼발효식초가 더 좋은 선호도를 나타내었다.

덖음 처리 시간을 달리한 맥문동을 첨가한 생맥산의 이화학적 특성 (Physicochemical characteristics of Sengmaksan added with Liriope platyphylla roasted for different times)

  • 김경화;강민정;강재란;신정혜
    • 한국식품저장유통학회지
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    • 제25권1호
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    • pp.62-70
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    • 2018
  • 생맥산의 이화학적 특성 및 생리활성을 향상시키기 위해 주 재료 중 하나인 맥문동을 0(S-0, 대조군), 30(S-30), 60(S-60), 90(S-90)분간 건열 덖음 처리하여 생맥산을 제조한 후 유효성분 및 항산화 활성을 분석하였다. 생맥산의 색도 중 L 값은 S-0에서 가장 높았으며, 덖음 처리 시간이 증가함에 따라 유의적으로 감소하였다. 생맥산의 a 값과 b 값은 대조군보다 덖음 처리한 맥문동 첨가군들에서 낮았지만, 덖음 처리 시간에 따른 경향성을 보이지는 않았다. 생맥산의 가용성 고형분의 함량($7.10{\pm}0.0^{\circ}Brix$)과 환원당 함량($37.32{\pm}0.05g/100g$)은 S-60에서 가장 높고, pH와 산도는 모든 조건에서 유의적인 차이가 없었다. 생맥산의 총 페놀 화합물 함량은 맥문동의 덖음 처리 시간이 증가함에 따라 유의적으로 증가하여 S-90에서 $345{\pm}0.34mg/100g$으로 정량되었으며, 총 플라보노이드 함량은 S-0에서 가장 높고 S-60에서 감소하였지만 S-90과 유의적인 차는 없었다. 생맥산의 총 안토시아닌 함량은 오미자에서 용출된 것이기 때문에 대조군과 덖음 처리한 맥문동 첨가군에서 차이가 없었다. 생맥산의 총 진세노사이드(Ro, Rb2, Re, Rf, Rg1, Rg2, Rg3, Rh1, Rh2) 함량은 차이가 없었지만, Ro, Re, Rf, Rb2, Rh2, Rg3는 S-0과 S-90을 비교하였을 때 당과 물 분자의 제거 정도에 따라 고분자에서 저분자 진세노사이드로 변형되어 그 함량이 증가하거나 감소하였다. 생맥산의 DPPH와 ABTS 라디칼 소거능 및 FRAP법에 따른 항산화 활성은 맥문동의 덖음 처리 시간이 증가함에 따라 뚜렷하게 증가하는 경향이었다. 이상의 결과로부터 생맥산의 유효성분은 맥문동을 1시간 정도로 적절히 덖음 처리하였을 때 가장 높고, 항산화 활성은 맥문동의 덖음 처리 시간이 증가할수록 높아지는 것을 확인할 수 있었다.

식물공장에서 생산된 새싹인삼의 크기에 따른 진세노사이드 함량 및 항산화 활성 비교 (Comparison of ginsenoside contents and antioxidant activity according to the size of ginseng sprout has produced in a plant factory)

  • 황승하;김수철;성진아;이희율;조두용;김민주;정재각;정은혜;손기호;조계만
    • Journal of Applied Biological Chemistry
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    • 제64권3호
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    • pp.253-261
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    • 2021
  • 본 연구에서는 식물공장을 통해 생산된 새싹인삼을 크기에 따라 분류하고 이를 지상부와 지하부로 나누어 진세노사이드 함량과 항산화 활성을 비교하였다. 지상부의 경우 총 phenolic 함량은 중간 크기인 M에서 5.16 GAE mg/g로 가장 높았으며 가장 큰 크기인 L에서 2.23 GAE mg/g으로 가장 낮은 함량을 보였다. 지하부 역시 M 크기에서 가장 높은 함량을 보였으나, 큰 차이를 보이지 않았다. 한편, 총 flavonoid 함량 역시 지상부(5.16 RE mg/g) 와 지하부(1.28 RE mg/g) 모두 M 크기에서 높은 함량을 보였다. 지상부의 주요 진세노사이드는 Re (20.33-24.15 mg/g) > Rd (11.36-27.42 mg/g) > Rg1 (4.48-5.54 mg/g) 순 있었고 지하부는 Rb1 (5.09-8.61 mg/g) > Re (4.48-5.54 mg/g) > Rc (3.11-4.11 mg/g) 순 있었다. M 크기의 경우 Re와 Rd는 각각 지상부에서 24.15 mg/g과 27.42 mg/g 및 지하부에서 5.20 mg/g과 1.43 mg으로 약 4배와 19배 높은 함량을 보였다. 지상부에는 F3 및 Rh1이 검출되었으나, 지하부에서는 검출되지 않았다. DPPH (74.95%)와 ABTS (94.47%), hydroxyl (70.39%) 라디칼 소거 활성 및 FRAP (2.169) 활성은 다른 크기들보다 M 크기에서 가장 높은 활성을 보였다.

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.

Changes of Ginsenoside Content by Mushroom Mycelial Fermentation in Red Ginseng Extract

  • Bae, Song-Hwan;Lee, Hyun-Sun;Kim, Mi-Ryung;Kim, Sun-Young;Kim, Jin-Man;Suh, Hyung-Joo
    • Journal of Ginseng Research
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    • 제35권2호
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    • pp.235-242
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    • 2011
  • To obtain microorganisms for the microbial conversion of ginsenosides in red ginseng extract (RGE), mushroom mycelia were used for the fermentation of RGE. After fermentation, total sugar contents and polyohenol contents of the RGEs fermented with various mushrooms were not a significant increase between RGE and the ferments. But uronic acid content was relatively higher in the fermented RGEs cultured with Lentus edodes (2155.6 ${\mu}g/mL$), Phelllinus linteus (1690.9 ${\mu}g/mL$) and Inonotus obliquus 26137 and 26147 (1549.5 and 1670.7 ${\mu}g/mL$) compared to the RGE (1307.1 ${\mu}g/mL$). The RGEs fermented by Ph. linteus, Cordyceps militaris, and Grifola frondosa showed particularly high levels of total ginsenosides (20018.1, 17501.6, and 16267.0 ${\mu}g/mL$, respectively). The ferments with C. militaris (6974.2 ${\mu}g/mL$), Ph. linteus (9109.2 ${\mu}g/mL$), and G. frondosa (7023.0 ${\mu}g/mL$) also showed high levels of metabolites (sum of compound K, $Rh_1$, $Rg_5$, $Rk_1$, $Rg_3$, and $Rg_2$) compared to RGE (3615.9 ${\mu}g/mL$). Among four different RGE concentrations examined, a 20 brix concentration of RGE was favorable for the fermentation of Ph. linteus. Maximum biotransformation of ginsneoside metabolites (9395.5 ${\mu}g/mL$) was obtained after 5 days fermentation with Ph. linteus. Maximum mycelial growth of 2.6 mg/mL was achieved at 9 days, in which growth was not significantly different during 5 to 9 days fermentation. During fermentation of RGE by Ph. linteus in a 7 L fermenter, $Rg_3$, $Rg_5$, and $Rk_1$ contents showed maximum concentrations after 5 days similar to flask fermentation. These results confirm that fermentation with Ph. linteus is very useful for preparing minor ginsenoside metabolites while being safe for foods.