• Title/Summary/Keyword: Ginsenoside extract

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Ginsenoside Composition Changes in Ginseng Extracts by Different Ascorbic Acid Treatments

  • Ko, Sung-Kwon;Cho, Ok-Sun;Bae, Hye-Min;Sohn, Uy-Dong;Im, Byung-Ok;Cho, Soon-Hyun;Yang, Byung-Wook;Chung, Sung-Hyun;Shin, Wang-Soo;Lee, Boo-Yong
    • Food Science and Biotechnology
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    • v.17 no.4
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    • pp.883-887
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    • 2008
  • The purpose of this study was to develop a new preparation process for chemical transformation of ginseng saponin glycosides to prosapogenins. Ginseng and ginseng extracts were processed under several treatment conditions using ascorbic acid solution. Treating with ascorbic acid at pH 2-3 and above $80^{\circ}C$ increased the ginsenoside $Rg_3$ content of samples to over 3% as compared to other pH levels and temperatures. In addition, ginseng and ginseng extracts that were processed under a high ascorbic acid solution treatment condition (pH 2.0, 5 hr) contained more ginsenoside $Rg_3$ (approximately 16 times) than those processed under a low ascorbic acid solution treatment condition (pH 3.0, 5 hr). The highest quantity of ginsenoside $Rg_3$ (3.434%) occurred when a sample of fine ginseng root extract (AG2-9) was processed with the ascorbic acid solution at pH 2.0 for 9 hr. However, there was no change in the amount of ginsenoside $Rg_3$ when fine ginseng root extracts were processed with ascorbic acid solution at pH 2.0 for over 9 hr. In conclusion, the results indicated that ascorbic acid treatment of ginseng extracts can produce a level of ginsenoside $Rg_3$ that is over 90-fold the amount found in commercial red ginseng.

Optimization for Preparation of Malic acid-catalyzed Ginsenoside Rg3 by Response Surface Methodology (반응 표면 분석법을 이용한 홍삼 사포닌으로부터의 사과산 활용 진세노사이드 Rg3 전환 최적화)

  • Ki Seong Kim;Junseong Park
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.49 no.4
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    • pp.375-383
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    • 2023
  • Malic acid-catalyzed transformation has been developed to produce ginsenoside Rg3 which is increasingly in demand as a functional ingredient. The optimization of the conversion of red ginseng saponin (RGS) to ginsenoside Rg3 by acid catalyzed transformation was carried out using Box-Behnken design (BBD) based on Response Surface Analysis (RSM). The main independent variables were malic acid concentration, temperature, and reaction time. Conversion of ginsenoside Rg3 was performed according to BBD model and optimization conditions were analyzed. The concentration of the converted ginsenoside Rg3 ranged from 1.548 mg/L to 4.558 mg/L, and the highest production was obtained under the condition of reacting 1% malic acid, 50 ℃ and 9h. Consequently, The independent variables affecting the production of ginsenoside Rg3 were identified in the following order: malic acid concentration, reaction time and temperature. In addition, it was confirmed that the interaction between malic acid concentration and reaction time had a greater influence than the temperature.

Beneficial effects of fermented black ginseng and its ginsenoside 20(S)-Rg3 against cisplatin-induced nephrotoxicity in LLC-PK1 cells

  • Han, Myoung-Sik;Han, Im-Ho;Lee, Dahae;An, Jun Min;Kim, Su-Nam;Shin, Myoung-Sook;Yamabe, Noriko;Hwang, Gwi Seo;Yoo, Hye Hyun;Choi, Suk-Jung;Kang, Ki Sung;Jang, Hyuk-Jai
    • Journal of Ginseng Research
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    • v.40 no.2
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    • pp.135-140
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    • 2016
  • Background: Nephrotoxicity is a common side effect of medications. Panax ginseng is one of the best-known herbal medicines, and its individual constituents enhance renal function. Identification of its efficacy and mechanisms of action against drug-induced nephrotoxicity, as well as the specific constituents mediating this effect, have recently emerged as an interesting research area focusing on the kidney protective efficacy of P. ginseng. Methods: The present study investigated the kidney protective effect of fermented black ginseng (FBG) and its active component ginsenoside 20(S)-Rg3 against cisplatin (chemotherapy drug)-induced damage in pig kidney (LLC-PK1) cells. It focused on assessing the role of mitogen-activated protein kinases as important mechanistic elements in kidney protection. Results: The reduced cell viability induced by cisplatin was significantly recovered with FBG extract and ginsenoside 20(S)-Rg3 dose-dependently. The cisplatin-induced elevated protein levels of phosphorylated c-Jun N-terminal kinase (JNK), p53, and cleaved caspase-3 were decreased after cotreatment with FBG extract or ginsenoside 20(S)-Rg3. The elevated percentage of apoptotic LLC-PK1 cells induced by cisplatin treatment was significantly abrogated by cotreatment with FBG and the ginsenoside 20(S)-Rg3. Conclusion: FBG and its major ginsenoside 20(S)-Rg3, ameliorated cisplatin-induced nephrotoxicity in LLC-PK1 cells by blocking the JNKep53ecaspase-3 signaling cascade.

Quality Characteristics of Ginseng Coffee Treated by Coating of White Ginseng Extract

  • Kim, Kyung-Tack;Lee, Young-Chul;Cho, Chang-Won;Rhee, Young-Kyoung;Bae, Hye-Min
    • Journal of Ginseng Research
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    • v.34 no.1
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    • pp.1-7
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    • 2010
  • The quality attributes of coffee treated with different concentrations of white ginseng extract were examined. Increased concentration of white ginseng extract was associated with higher color values (Hunter L. a, b scale). The crude saponin contents of untreated roasted coffee beans (control) and those coated with $5^{\circ}$ Brix (WGC-1) and $20^{\circ}$ Brix white ginseng extract (WGC-2) were 8.29%, 8.74%, and 8.93%, respectively. The total ginsenoside contents of WGC-1 and WGC-2 were 0.3 mg/g and 0.6 mg/g, respectively. In the case of major ginsenosides, the contents of ginsenosides $Rg_1,\;Rg_2,\;Rb_1,\;Rb_2,\;Rg_2,\;Rh_1$, and $Rg_3$ increased directly with the concentration of white ginseng extract. Total sugar and acidic polysaccharide contents also increased directly with the concentration of white ginseng extract. The coffee beans coated with ginseng extract scored significantly higher ginseng taste scores than the control (p<0.005) in sensory evaluation. In terms of coffee taste, WGC-2 had significantly lower scores than the commercial coffee bean. In the consumer sensory evaluation, overall preference did not differ significantly among the treatments.

Studies on the Extraction Condition and Utilization of Optimum Active Ingredients and Bark Extract from Red Ginseng Residue and Mugwort Bark Extract (홍삼박 및 인진쑥박으로 부터 활성성분 극대화 추출조건 및 박 추출물의 활용성 연구)

  • Kim, Hyun Kyoung
    • The Journal of the Convergence on Culture Technology
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    • v.4 no.4
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    • pp.317-324
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    • 2018
  • This study was carried out to investigate the optimum conditions for extraction of ginsenoside active ingredients from red ginseng residue and mugwort bark extract produced by manufacturing alcoholic and water extract from red ginseng residue and mugwort bark extract. Extraction efficacy of ginsenoside active ingredients from extracted red ginseng residue and mugwort bark extract was higher than that before extracting. We suggests that red ginseng residue and mugwort bark extract produced by manufacturing alcholic and water extract of red ginseng and mugwort has higher potencies in the utilization of waste materials.

Saponin Analysis and Red Ginseng Production using the Simplified Method of Korean Ginseng (Panax ginseng C.A.Meyer) (고려인삼(Panax ginseng C.A.Meyer)의 간이법에 의한 홍삼제조 및 사포닌 성분분석)

  • In Jun-Gyo;Kim Eun-Jeong;Lee Bum-Soo;Park Myung-Han;Yang Deok-Chun
    • Korean Journal of Plant Resources
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    • v.19 no.1
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    • pp.133-138
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    • 2006
  • In order to enhance the components of bioactive ginsenosides and the manufacturing process of red ginseng, we developed the simplified method for red ginseng production. The red ginseng extract was prepared from red ginseng produced with the simplified method, and the production rate of extract ($62^{\circ}$ brix) was more than 60%. The ginsenosides of red ginseng were purified and analyzed by HPLC using ELSD. Ginsenoside-$Rg_3,\;Rh_2$ and $Rh_1$, specific artifacts found only in red ginseng, were detected by HPLC. Especially, contents of ginsenoside-$Rg_3$ and Rh1 were detected high than two times in red ginseng produced the simplified method compared to commercial products.

Korean Red Ginseng extract and ginsenoside Rg3 have anti-pruritic effects on chloroquine-induced itch by inhibition of MrgprA3/TRPA1-mediated pathway

  • Lee, Wook-Joo;Kim, Young-Sik;Shim, Won-Sik
    • Journal of Ginseng Research
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    • v.42 no.4
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    • pp.470-475
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    • 2018
  • Background: It was previously found that Korean Red Ginseng water extract (KRGE) inhibits the histamine-induced itch signaling pathway in peripheral sensory neurons. Thus, in the present study, we investigated whether KRGE inhibited another distinctive itch pathway induced by chloroquine (CQ); a representative histamine-independent pathway mediated by MrgprA3 and TRPA1. Methods: Intracellular calcium changes were measured by the calcium imaging technique in the HEK293T cells transfected with both MrgprA3 and TRPA1 ("MrgprA3/TRPA1"), and in primary culture of mouse dorsal root ganglia (DRGs). Mouse scratching behavior tests were performed to verify proposed antipruritic effects of KRGE and ginsenoside Rg3. Results: CQ-induced $Ca^{2+}$ influx was strongly inhibited by KRGE ($10{\mu}g/mL$) in MrgprA3/TRPA1, and notably ginsenoside Rg3 dose-dependently suppressed CQ-induced $Ca^{2+}$ influx in MrgprA3/TRPA1. Moreover, both KRGE ($10{\mu}g/mL$) and Rg3 ($100{\mu}M$) suppressed CQ-induced $Ca^{2+}$ influx in primary culture of mouse DRGs, indicating that the inhibitory effect of KRGE was functional in peripheral sensory neurons. In vivo tests revealed that not only KRGE (100 mg) suppressed CQ-induced scratching in mice [bouts of scratching: $274.0{\pm}51.47$ (control) vs. $104.7{\pm}17.39$ (KRGE)], but also Rg3 (1.5 mg) oral administration significantly reduced CQ-induced scratching as well [bouts of scratching: $216.8{\pm}33.73$ (control) vs.$115.7{\pm}20.94$ (Rg3)]. Conclusion: The present study verified that KRGE and Rg3 have a strong antipruritic effect against CQ-induced itch. Thus, KRGE is as a promising antipruritic agent that blocks both histamine-dependent and -independent itch at peripheral sensory neuronal levels.

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

  • Lee Sae-Bom;Lee Gee-Dong;Kwon Joong-Ho
    • Journal of Ginseng Research
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    • v.23 no.3 s.55
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    • pp.164-171
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    • 1999
  • Microwave-assisted extraction, which is known to rapidly extract target compounds from natural products, was monitored by response surface methodology (RSM) while extracting ginsenosides by using microwave extraction system (MES) equipped with closed vessels, and was confirmed on its extraction efficiency. On the whole, coefficients of determinations $(R^2)$ of the models on ginsenoside contents of extracts with various extraction conditions were above 0.83 (p<0.1). $Ginsenoside-Rb_2,\;-Rc,\;-Re\;and\;-Rg_1$ were maximized in $140^{\circ}C$ of extraction temperature and $50\~75\%$ range of ethanol concentration. Unknown compound peak on HPLC chromatogram observed at extraction temperature over $120^{\circ}C$, increased at the extraction temperature of $150^{\circ}C$. The extraction temperature of $ginsenoside-Rb_2$ and -Re increased from $129^{\circ}C\;to\;147^{\circ}C$ with including unknown compound, and $R^2$ of the models on ginsenoside contents of extracts increased with including unknown compound into ginsenoside $Rb_2$ and Re. Contents of unknown compound were minimized in $67.33\%$ of ethanol concentration, $99.34^{\circ}C$ of extraction temperature and 3.65 min of extraction time. Ginsenoside contents extracted by microwave system for 8 min showed a similar tendency to those of the current extraction method for 40 hrs.

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Effect of $\alpha$-Amylase on the Qualities of Red Ginseng Extract

  • Kim, Na-Mi;Lee, Jong-Soo;Lee, Byung-H.
    • Journal of Ginseng Research
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    • v.24 no.3
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    • pp.153-156
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    • 2000
  • In order to improve the qualities of red ginseng extract and decrease precipitate formation in ginseng drink, red ginseng extract were hydrolyzed with ${\alpha}$-Amylase and characteristics of the hydrolyzed ginseng extract were investigated. 1.08% of isomaltose were produced and glucose content was increased from 2.83% to 11.03% in the hydrolyzed red ginseng extract. Total ginsenoside content of the hydrolyzed ginseng extract were decreased from 1,661 mg/100g extract to 1,389 mg/100g extract. The hydrolyzed ginseng extract enhanced the growth of Lactobacillus casei, Lactobacillus rhamnosus and Lactobacillus helveticus. Bitterness and astringency of the hydrolyzed ginseng extract were lower than those of the ginseng extract Precipitate formations in ginseng drink prepared with the hydrolyzed ginseng extract were significantly reduced in the storage conditions of 40$^{\circ}C$ for 4 weeks compared to those of control.

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