• Title/Summary/Keyword: Ginsenosides $ST_1-ST_2$

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SOIL AND MULCH EFFECTS ON GINSENOSIDES IN AMERICAN GINSENG PLANTS (토양과 부초가 미국 인삼 진세노사이드에 미치는 영향)

  • Zito Santo W.;Konsler Thomas R.;Staba E.John
    • Proceedings of the Ginseng society Conference
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    • 1984.09a
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    • pp.57-62
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    • 1984
  • Four year old American ginseng plants (Panax quinquefolium L.) were grown in control and treated field plots in North Carolina, USA. Soil pH (4.4, 5.5, and 6.5), soil phosphate (19, 89 and 232 ppm) and mulch treatments (wheat straw, pine needle straw, poplar bark, oak bark, pine bark and hardwood leaves) were studied for their effects on total dry weight, total ginsenosides and 5 individual ginsenosides (A1, Rg1, Rd, Re, and Rb2). The leaf and root tissue were analyzed for ginsenosides by high pressure liquid chromatography (HPLC). The oak and poplar bark mulch treatments appeared to have the best effect upon the growth and production of roots while not significantly decreasing the ginsenoside content of the roots. The oak mulch showed a statistical increase in the ginsenoside content of the leaves.

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General Feature and Ginsenoside Content of 6 years Old Ginseng (Panax ginseng C. A. Meyer) Root (6년근(年根) 인삼(人蔘)의 등급별(等及別) 품위(品位) 및 ginsenoside 함량)

  • Cho, Hyun-Kyung;Park, So-Hee;Jung, Chung-Sung;Jo, Jae-Sun
    • Journal of the Korean Society of Food Culture
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    • v.16 no.5
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    • pp.478-482
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    • 2001
  • This study was conducted to investigate the difference of general feature and ginsenoside content of 6 years old ginseng root among different grade of roots. Total weight of a 1st grade-6 years old ginseng root was 115.1g and weight, length, diameter and specific gravity of main root were 64.68g, 8.39cm, 3.31cm and 0.96, respectively. Main root of 1st grade ginseng root was larger in size and specific gravity and more heavy than that of End or 3rd grade of the roots. Though crude saponin contents were not so different among the different grade of roots, but ginsenoside Rb1, Rg1 and Re content were higher in 1st grade of root than that of 2nd or 3rd grade of root. Those ginsenosides were located mainly in periderm and cortex.

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

  • Kim, Do-Wan;Kim, Yu-Jin;Lee, Yun-Jin;Min, Jin-Woo;Kim, Se-Young;Yang, Deok-Chun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.6
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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.

Growth and Ginsenoside Content in Different Parts of Ginseng Sprouts Depending on Harvest Time (수확시기에 따른 새싹삼의 부위별 생육 및 Ginsenoside 함량 변화)

  • Jang, In Bae;Yu, Jin;Suh, Su Jeoung;Jang, In Bok;Kwon, Ki Beam
    • Korean Journal of Medicinal Crop Science
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    • v.26 no.3
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    • pp.205-213
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    • 2018
  • Background: Since the revised Ginseng Industrial Act was passed, ginseng sprouts have become a new medicinal vegetable for which there is high consumer demand. However, the existing amount of research and data on ginseng production has not kept pace with this changed reality. Methods and Results: In this study we analyzed the changes in the amounts of ginsenosides in different parts of growing ginseng sprouts during the period from when organic seedlings were planted in nursery soil until 8 weeks of cultivation had elapsed, which was when the leaves hardened. In the leaves, ginsenoside content increased 1.62 times with the panaxadiol (PD) system and 1.31 - 1.56 times with the panaxatriol (PT) system from 7 to 56 days after transplantation. During the same period, the total ginsenoside content of the stems decreased by 0.66 - 0.91 times, and those of the roots increased until the $21^{st}$ day, and then underwent steep declines. The effect of fermented press cake extract (FPCE) and tap water (TP) on the total amount of ginsenoside per plant were similar, and could be represented with the equations $y=1.4330+0.2262x-0.0008x^2$ and $y=0.9555+0.2997x-0.0031x^2$ in which y = ginsenoside content x = amount of and on the total amounts of FPCE or TP, respectively after 26.4 days, however, the difference between ginsenoside content with FPCE and TP widened. Conclusions: These results suggested that the amounts of ginsenosides in different parts of ginseng varied with the cultivation period and nutrient supply. These findings also provide fundamental data on the distribution of ginsenosides among plant parts for 2-year-old ginseng plants in the early-growth stage.

Difference of the Ginsenosides Contents According to the Planting Location in Panax ginseng C. A. Meyer (인삼의 재식 위치에 따른 진세노사이드 함량 차이)

  • Li, Xiangguo;Nam, Ki-Yeul;Choi, Jae-Eul
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.54 no.2
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    • pp.159-164
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    • 2009
  • The difference of ginsenosides content according to placement of ginseng planting (line) under shading net in 5-year-old ginseng roots were examined. The total saponin ($Rb_1$, $Rb_2$, Rc, Rd, Re, and $Rg_1$) contents were 15.01 mg/g and 21.79 mg/g in the main roots, 35.93 mg/g and 43.32 mg/g in the lateral roots, 87.85 mg/g and 105.51 mg/g in the fine roots for the front $1st{\sim}2nd$ lines in Yunpoong and Landrace variety (purple-stem variant), respectively. In the middle $3rd{\sim}5th$ lines the total saponin contents were 18.73 mg/g and 23.19 mg/g in the main roots, 44.92 mg/g and 43.50 mg/g in the lateral roots, 92.97 mg/g and 110.70 mg/g in the fine roots in Yunpoong and Landrace variety, respectively. In the rear $6th{\sim}7th$ lines the total saponin contents were 21.88 mg/g and 26.68 mg/g in the main roots, 38.41 mg/g and 44.89 mg/g in the lateral roots, 101.03 mg/g and 107.06 mg/g in the fine roots in Yunpoong and Landrace variety, respectively. The differences in total and individual ginsenosides content in the main, lateral and fine roots among the lines were not significant but total ginsenosides contents in the main roots were different in case of Yunpoong variety. The ratios of protopanaxadiol (PD) type saponin to protopanaxatriol (PT) type saponin in roots were lower in the front lines compared to the middle and rear lines and the ratios were significantly different among the parts of roots.

Characterization and optimization for beverage manufacture using Korean red ginseng extract (기호성 개선 인삼농축액 제조를 위한 추출 조건 설정)

  • Choi, Ji-Won;Oh, Mi-Jin;Ha, Sang Keun;Park, Yongkon;Park, Ho-Young
    • Food Science and Preservation
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    • v.23 no.3
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    • pp.319-325
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    • 2016
  • This study was designed to develop a manufacturing process for ginseng concentrate with reduced unpleasant aroma and bitter taste. Two types of ginseng, white and red, were extracted under six different conditions (the 1st to the 6th step) of temperature ($65{\sim}95^{\circ}C$) and ethanol concentration (0~70%). Six extracts of each ginseng were evaluated by a sensory test, and assayed for crude saponin, ginsenosides, and acidic polysaccharides. The content of crude saponin in the extracts decreased with extraction time. There was no significant difference in the crude saponin content between white and red ginseng extracts. The yield of red ginseng extract was higher (45%) than that of white ginseng. No significant difference was observed in the acidic polysaccharide content between red and white ginseng extracts. $Rg_3$, a specific ginsenoside in red ginseng, was detected in the 1st to 6th extracts of red ginseng. Bitterness, astringency, and sourness of ginseng extracts decreased as the extraction steps proceeded. The composite of the 1st, 2nd, and 6th step extracts decreased bitterness and astringency, and the highest overall acceptance. Compared with commercial beverages, the composition of the three extracts is the desirable method to decrease the bitter and astringent tastes, and the overall unpleasant flavor of ginseng.

Crop Rotation of the Korean ginseng (Panax ginseng C.A.Meyer) and the Rice in Paddy Field (고려인삼(高麗人蔘)의 답전윤환재배(畓田輪換栽培) 효과(效果))

  • Jo, Jae-Seong;Kim, Choong-Soo;Won, Jun-Yeon
    • Korean Journal of Medicinal Crop Science
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    • v.4 no.1
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    • pp.19-26
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    • 1996
  • The crop rotation of rice and ginseng in paddy field has very important meaning because up-land field suitable for ginseng cultivation is now being insufficient day by day in main ginseng production area. This studies were conducted to define basic problems related to ginseng cultivation and replanting in paddy field. In Keumsan district, the most serious problem on ginseng cultivation in paddy field was excess of mineral salts left behind in the soil of rice cultivation. The amounts of organic matters, CEC and the mineral elements including potassium were higher in the soil of paddy ginseng field compared to those of upland. Plant growth of 3 and 4 year old ginseng and root yield of four year old ginseng cultivated in paddy field of 1st and replanting were not decreased compared to those of 1st - planting of up-land field, but those were significantly decreased in replanted compared to those of first planted upland field. Crop rotation with ginseng and rice in paddy field seemed to be a good way to avoid hazards of continuous cropping of ginseng with it's outyield of root and less infection of diseases. Amounts of crude saponin and ginsenosides of ginseng cultivated in paddy field were not differ from those of upland field.

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Penile Blood Change after Oral Medication of Korean Red Ginseng in Erectile Dysfunction Patients (발기부전환자에서 홍삼 복용후의 음경혈류와 발기력 변화)

  • Choi, Hyung-Ki;Choi, Yeong-Jin;Kim, Jang-Hwan
    • Journal of Ginseng Research
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    • v.27 no.4
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    • pp.165-170
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    • 2003
  • The clinical efficacies of Korean Red Ginseng for improving sexual function has been reported only by self-reporting questionnaires.AVS-Penogram is a method evaluating natural penile blood flow changes by Gamma-camera after intravenous injection of Techmetium 99$\^$m/-RBC and also stimulating by erotic video tape. To more objectively evaluate the efficacies of Korean Red Ginseng for erectile function, we applied AVS-Penogram as a objective diagnostic tool. AVS-Penogram studies were done in 28 patients with erectile dysfunction after administration of Red Ginseng(19) or placebo(9) group. The pattern of AVS-Penogram before medication were normal type in 4, impossible in 2, unstable in 20, delayed in 1, and mixed in 1. The unstable type were the most prevalent observed in 71.4% of all patients. The patterns of AVS-penogram were 2.2. 13.1 in Red Ginseng group, while in placebo group normal 2, unstable 7. After 4 weeks in Red Ginseng group, there were 3 cases of improved penogram findings, while only 1 in placebo group. There were no statistical significancies in the type of penogram changes on both group. But the maximum radioactivity were improved in 11 patients(57.9%) in Red Ginseng group, while 2(22.2%) in placebo group. There were statistical significancies in comparing the maximal radioactivity of penogram on both group. These AVS-Penogram findings shows, encouraging results of by increased penile blood flow Korean Red Ginseng our medication. Further study is more needed to reconfirm these results by more concentrated active formulations of sapanonin St other active ginsenosides. These promising results will lead to develop a new remedy for erectile dysfunction by Korean Red Ginseng

Extraction Characteristics of Saponin and Acidic Polysaccharide Based on the Red Ginseng Particle Size (홍삼의 입자크기에 따른 사포닌 및 산성다당체의 추출 특성)

  • Cho, Chang-Won;Kim, Sang-Wook;Rho, Jeong-Hae;Rhee, Young-Kyung;Kim, Kyung-Tack
    • Journal of Ginseng Research
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    • v.32 no.3
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    • pp.179-186
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    • 2008
  • Effect of pulverization on total solid, crude saponin, and acidic polysaccharide contents of dried red ginseng main root were tested. Several particle size samples, including red ginseng main root (non pulverized), $10{\sim}40$ mesh powder, $40{\sim}100$ mesh powder, and >100 mesh powder were used in the extraction. The sequential solvent extraction method (1st: 70% EtOH at $70^{\circ}C$ for 12 hr, 2nd: 70% EtOH at $70^{\circ}C$ for 12 hr, 3rd: water at $70^{\circ}C$ for 12 hr) was applied to extract the saponins and acidic polysaccharide. Extraction yield of total solid of pulverized red ginseng ($10{\sim}40$ mesh size) was increased to 20% compared with that of non-pulverized. Especially, the crude saponin content of pulverized red ginseng ($10{\sim}40$ mesh size) showed an increase of 47% over non-pulverized. No difference in the component ratio was observed by pulverization, when the individual ginsenosides were quantified by HPLC. Also, extraction yield of acidic polysaccharide of pulverized red ginseng ($10{\sim}40$ mesh size) was increased 57% compared with that of non-pulverized. The results suggested that pulverization might be useful for increasing the extraction yield of red ginseng components.