• Title/Summary/Keyword: ginsenoside contents

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저온에서 추출시간에 따른 홍삼 부위별 ginsenoside 함량 비교 (Difference of Ginsenoside Yields in Red Ginseng Parts According to Extraction Time at Low Temperature)

  • 한진수;강선주;남기열;최재을
    • 한국작물학회지
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    • 제55권4호
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    • pp.299-305
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    • 2010
  • 본 연구는 홍삼의 가능성 식품개발을 위한 기초 자료로 활용하기 위하여 추출 시간에 따른 홍삼 부위별 ginsenoside의 함량 변화를 비교하였다. 동체, 지근 및 세근의 총 ginsenoside 최고 함량은 동제 21시간, 지근 18시간, 세근 12시간 추출하였을 때 각각 23.04, 65.68 295.92 mg/100 ml이었고, 추출시간이 증가할수록 ginsenoside의 총량은 감소하였다. Ginsenoside $Rg_1$$Rb_1$의 최고 함량은 동제 21시간, 지근 15시간, 세근 12시간 추출하였을 때 각각 5.76, 28.39, 117.83 mg/100 ml 이었고, $Rb_2$와 Re의 함량은 동체 21시간, 지근 18시간, 세근 9시간 추출하였을 때 각각 5.76, 28.39, 117.83 mg/100 ml이었다. 홍삼으로부터의 총 ginsenoside의 추출비율은 동체 21.3%, 지근 21.1%, 세근 67.1%이었다.

가압조건의 마이크로웨이브 추출에서 Ginsenosides의 추출특성 모니터링과 추출효율 비교 (Monitoring of Extraction Characteristics and Comparison of Extraction Efficiencies for Ginsenosides in the Microwave-Assisted Process Under Pressure)

  • 이새봄;이기동;권중호
    • Journal of Ginseng Research
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    • 제23권3호
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    • pp.164-171
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    • 1999
  • 가압형 마이크로웨이브 추출장치를 이용하여 추출조건(에탄올농도, 추출온도 및 추출시간)에 따른 인삼 ginsenosid서 추출특성을 반응표면분석에 의해 모니터링하고, 마이크로파 추출법의 추출효율을 확인하였다. 조건별 추출물의 ginsenoside함량에 대한 회귀식의 $R^2$는 대부분 0.830이상으로 $10\%$이내의 수준에서 유의성이 인정되었다. $Ginsenoside-Rb_2$ -Rc, -Re 및 $-Rg_1$은 추출온도가 높을수록 증가하여 $140^{\circ}C$에서 가장 높게 나타났으며, 에탄을 농도가 $50\~75\%$에서 가장 높은 추출율을 보였다. Ginsenoside의 HPLC 패턴은 MAP 추출온도 $120^{\circ}C$에서 unknown peak가 확인되었으며, $150^{\circ}C$추출에서는 unhown peak가 증가되었다. $Ginsenoside-Rb_2$와 -Re 함량에 미지화합물(unknown peak)을 포함하였을 때 는 최대의 추출온도가 $129^{\circ}C$에서 $147^{\circ}C$로 증가하였고, 동시에 추출시간과 $R^2$가 증가하였다. MAP 추출에서 unknown화합물의 함량이 최소가 되는 조건은 에탄올 농도 $67.33\%$, 추출온도 $99.34^{\circ}C$, 추출시간 3.65분이었다. 추출효율의 확인시험에서 8분간의 MAP추출법은 현행 추출법(40시간) 매우 유사한 수준의 ginsenoside 추출효율을 나타내었다.

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직파 4 ~ 6년생 인삼의 연근 및 직경에 따른 Ginsenoside 함량 비교 (Comparison of Ginsenoside Content According to Age and Diameter in Panax ginseng C. A. Meyer Cultivated by Direct Seeding)

  • 한진수;탁현성;이강선;김정선;최재을
    • 한국약용작물학회지
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    • 제21권3호
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    • pp.184-190
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    • 2013
  • This study was carried out to investigate ginsenoside content in different root parts and the correlation between root diameter and ginsenoside composition of Panax ginseng C. A. Meyer cultivated by direct seeding. The unit contents of ginsenoside were 29.65, 28.76, 26.34 mg/g, respectively in 4, 5, 6 years old. However, the total contents of ginsenoside were 431.97, 606.56, 657.80 mg/root, respectively. Total ginsenoside content of fine root was higher than that of main root and lateral root. These tendencies were related to decrease by the increase of root diameter. When diameter of main root and lateral root were the same in different ages, the total ginsenoside content was higher in the order of 4 > 5 > 6 years old roots. Except for ginsenoside-Rg1, other ginsenosides components (PD/PT and total ginsenosides) had highly negative correlation with the root diameter within whole root, main root, lateral root and fine root, which indicated that ginsenoside content is correlated to root diameter. As results, it is suggested that ginsenoside content can be predicted.

Comparing eight types of ginsenosides in ginseng of different plant ages and regions using RRLC-Q-TOF MS/MS

  • Dai, Yu-Lin;Qiao, Meng-Dan;Yu, Peng;Zheng, Fei;Yue, Hao;Liu, Shu-Ying
    • Journal of Ginseng Research
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    • 제44권2호
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    • pp.205-214
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    • 2020
  • Background: This article aims to compare and analyze the contents of ginsenosides in ginseng of different plant ages from different localities in China. Methods: In this study, 77 fresh ginseng samples aged 2-4 years were collected from 13 different cultivation regions in China. The content of eight ginsenosides (Rg3, Rc, Rg1, Rf, Rb2, Rb1, Re, and Rd) was determined using rapid resolution liquid chromatography coupled with quadrupole-time-of-flight tandem mass spectrometry (RRLC-Q-TOF MS/MS) to comparatively evaluate the influences of cultivation region and age. Results: Ginsenoside contents differed significantly depending on age and cultivation region. The contents of ginsenosides Re, Rc, Rg1, Rg3, and Rf increased with cultivation age, whereas that of ginsenoside Rb1 peaked in the third year of cultivation. Moreover, the highest ginsenoside content was obtained from Changbai (19.36 mg/g) whereas the lowest content was obtained from Jidong (12.05 mg/g). Ginseng from Jilin Province contained greater total ginsenosides and was richer in ginsenoside Re than ginseng of the same age group in Heilongjiang and Liaoning provinces, where Rb1 and Rg1 contents were relatively high. Conclusion: In this study, RRLC-Q-TOF MS/MS was used to analyze ginsenoside contents in 77 ginseng samples aged 2-4 years from different cultivation regions. These patterns of variation in ginsenoside content, which depend on harvesting location and age, could be useful for interested parties to choose ginseng products according to their needs.

인삼의 연근과 직경에 따른 뿌리 조직의 비율 및 Ginsenoside 함량 변화 (Comparison of Ginsenoside Content and Ratio of Root Tissue According to Root Age and Diameter in Panax ginseng C. A. Meyer)

  • 한진수;탁현성;이강선;김정선;라정우;최재을
    • 한국약용작물학회지
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    • 제21권5호
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    • pp.342-347
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    • 2013
  • This study was carried out to investigate change of ginsenoside contents according to tissue ratio in ginseng root by age and diameter. The epidermis-cortex and xylem-pith extent, fresh weight, dry weight of ginseng increased with the root age increase. They increased higher in xylem-pith than in epidermis-cortex. The ratio of epidermis-cortex decreased and xylem-pith increased as the main root diameter increased. In case of same diameter, the xylem-pith ratio increased by the increase of root age. The epidermis-cortex ratio was 4 > 5 > 6 years, respectively. The total 10 ginsenosides of epidermis- cortex increased with the root age increase. However, the total ginsenoside of xylem-pith decreased and it was 2~5 times lower than epidermis-cortex. The most of ginsenoside contents existed in epidermis-cortex. The diameter decrease in main root is related to the increase of epidermis-cortex ratio. It leads to increase of ginsenoside contents. In order to select high level of ginsenoside cultivar, it suggested that it should be selected main root having narrow diameter and lower epidermis- cortex ratio.

Production of Ginsenoside-Rg3 from Lipomyces starkeyi Grown on Ginseng-Steaming Effluent

  • Jang, Jeong-Hoon;Kim, Na-Mi;Lee, Jong-Soo
    • Mycobiology
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    • 제38권2호
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    • pp.153-155
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    • 2010
  • To produce ginsenoside-$Rg_3$ enriched yeast from ginseng-steaming effluent (GSE), Lipomyces starkeyi, which tends to grow well in GSE, was cultured in sterilized GSE and its growth and production of ginsenoside-$Rg_3$ were determined. Growth of L. starkeyi was 86.1 mg per g GSE and its ginsenoside-$Rg_3$ contents was 0.013 mg per g GSE.

백삼 및 홍삼 농축액의 사포닌 분석 (Analysis of Ginsenosides of White and Red Ginseng Concentrates)

  • 고성권;이충렬;최용의;임병옥;성종환;윤광로
    • 한국식품과학회지
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    • 제35권3호
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    • pp.536-539
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    • 2003
  • 백삼 가공품과 홍삼 가공품의 사포닌 분포 내용과 함량을 비교하기 위하여 시판되고 있는 백삼 농축액(WGC)과 홍삼 농축액(RGC)을 각각 1종 선정하여 조 사포닌의 함량과 개별 ginsenoside의 함량분포를 조사하였다. Shibata의 방법과 우리나라 식품공전에 따라 측정한 조 사포닌의 양은 WGC가 각각 10.65와 21.77%이었으며 RGC는 5.80와 10.94%이였고, HPLC에 의한 총 사포닌의 양은 WGC가 7.40와 10.64%, RGC는 3.31와 3.13%로서 백삼 농축액의 사포닌 함량이 홍삼 농축액의 경우 보다 전반적으로 높았다. HPLC로 분석한 인삼 사포닌, ginsenoside $Rb_1,\;Rb_2,\;Rc,\;Rd,\;Re,\;Rf,\;Rg_1,\;20(S)\;Rg_3,\;20(R)Rg_3,\;20(S)\;Rh_1$ 그리고 $20(R)\;Rh_1$ 이었으며 대부분 홍삼농축액 보다는 백삼농축액의 함량이 높았으며, 특히 ginsenoside $Rb_1,\;Rg_1$ 그리고 $Rb_2$은 백삼 농축액에 3배 이상 더 함유되어 있었다. 또한 protopanaxadiol group과 protopanaxatriol group의 비율(PD/PT)에 있어서는 농축액간의 차이는 크지 않았다. 홍삼의 특유 사포닌으로 알려진 20(S)- 및 20(R)-ginsenoside $Rg_3$가 WGC와 RGC에 비슷하게 분포하는 것으로 확인되었다. 20(S)-ginsenoside $Rg_3$의 조 사포닌 조제법에 따라 RGC에서 0.48과 0.47% WGC에 0.40와 0.53%, 20(R)-ginsenoside $Rg_3$도 RGC에 0.10과 0.11%, WGC에 0.14와 0.22%이었다.

Effects of Interactions Among Age, Cultivation Method (Location) and Population on Ginsenoside Content of Wild Panax Quinquefolium L. One Year after Transplanting from Wild

  • Lim, Wan-Sang
    • 한국약용작물학회지
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    • 제13권5호
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    • pp.254-261
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    • 2005
  • To evaluate the effects of cultivar, environment, age and cultivation times on ginsenoside content among 8 wild populations of American ginseng (Panax quinquefolium), the concentrations of 6 ginsenosides in root were determined at the time of collection (T0) of plants from the wild and 1 year after (T1) transplanting the roots to each of two different forest garden locations. Both location and population had significant effects on root and shoot growth. Overall, ginsenoside Rb1 was most abundant. The second most abundant ginsenoside were Re and Rg1, however the contents of them were not significantly different from each other. Concentrations of Rg1 and Re were inversely related. Ginsenoside Re was influenced by population and location. Ginsenoside Rg1, Rb1, Rc, Rb2 and Rd were influenced by population, location and age. Ginsenoside levels were consistently lower but growth was consistently higher at the more intensively managed garden location.

인삼의 가공방법에 따른 일반성분 및 Ginsenoside 함량 변화 (Changes of Chemical Compositions and Ginsenoside Contents of Different Root Parts of Ginsengs with Processing Method)

  • 최재을;남기열;이상국;김복용;조황식;황광보
    • 한국약용작물학회지
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    • 제18권2호
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    • pp.118-125
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    • 2010
  • This study was carried out to determine changes in general chemical composition, free sugars, physicochemical properties of extract, and ginsenoside contents depending upon processing methods. Ginseng roots harvested from the same field were employed for the processing into white ginseng (WG), taegeuk ginseng (TG), red ginseng A (RGA, steamed one time), and red ginseng B (RGB, steamed three times). The fat content decreased by increasing duration of treatment and number of steaming treatment. On the other hand, there was no significant variation in contents of ash and carbohydrate depending on processing methods. Contents of sucrose and maltose was higher in Taegeuk and red ginseng than those of white ginseng. Steamed ginseng root (taegeuk and red ginseng root) showed higher amount of water extractable solid than the unsteamed white ginseng, but the variation of crude saponin content was not distinctive depending on processing methods. The contents of total ginsenosides increased by the order of white, taegeuk, red A, and red B root. In summary, chemical composition and total ginsenoside content were different according to part of root and processing methods, thus implies the importance of quality control as well as pharmacological activity of ginseng root.

팽화에 의한 인삼 유효성분의 변화 (Changes in Effective Components of Ginseng by Puffing)

  • 김지혜;안순철;최성원;허남윤;김병용;백무열
    • Applied Biological Chemistry
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    • 제51권3호
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    • pp.188-193
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    • 2008
  • 수삼을 수분함량 별로 건조한 다음 원형이 변하지 않는 팽화 인삼을 제조할 수 있는 최적의 압력조건을 찾아 팽화 인삼을 제조하고 각 조건 별 시료의 추출수율, 조사포닌, ginsenoside함량 변화를 관찰하였다. 팽화 처리 후 외관상의 가장 큰 변화는 갈변과 부피팽창이었다. 추출수율 측정 결과, 대조군은 37.6%, 팽화 인삼의 경우 $50.0{\sim}62.1%$의 범위로 측정되었다. 조사포닌 함량의 경우 대조군은 11.0 mg/g ginseng, 팽화 인삼은 $19.6{\sim}48.8mg/g$ ginseng의 범위로 측정되었다. 팽화 인삼에서는 홍삼 특유 사포닌인 ginsenoside-Rg3가 검출되었다. Ginsenoside-Rg3의 생성량은 팽화 압력이 증가함에 따라 유의적으로 증가하는 경향을 나타내었다. Ginsenoside-Rg3를 제외한 나머지 기본 ginsenoside와 total ginsenoside함량은 대조군에 비해 모두 증가하였지만, 팽화 압력이 증가함에 따라 그 양이 감소하는 경향을 나타내었다. 따라서 본 연구 결과 인삼을 적절한 조건에서 팽화처리하였을 경우 추출수율, 조사포닌 및 조사포닌 함량의 증진과 일부 ginsenoside의 변형을 확인할 수 있었다.