• Title/Summary/Keyword: Ginseng marc

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Preparation of Ginseng Concentrate with High Content of Acidic Polysaccharide from White Tail Ginseng Marc (백삼 알코올 추출박을 이용한 산성다당체 다량 함유 백삼 농축액 제조)

  • 강태화;박경준;강성태
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.33 no.4
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    • pp.736-740
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    • 2004
  • Preparation of ginseng concentrate with high content of acidic polysaccharide from white tail ginseng marc that was obtained after preparation of white tail ginseng extract. As a result of extraction of white tail ginseng under various concentrations of ethanol (0∼90%), both amount of acidic polysaccharide and extraction yield decreased by increasing the ethanol concentration. However, acidic polysaccharide extracted by water from white tail ginseng marc was increased in accordance with the increase of ethanol concentration. The optimal condition for the extraction of acidic polysaccharide from the marc was treatment of $\alpha$-amylase in 390∼650 unit/g residue/15 mL of distilled water for 5 min at 4$0^{\circ}C$. The amount of acidic polysaccharide in water extract of the marc was increased from 8.3% to 10.5% by the treatment of $\alpha$-amylase. A new ginseng extract mixture was manufactured by mixing 50% ethanol extract of white tail ginseng and water extract of alcoholic residue in the ratio of 8:2 (w/w). Crude saponin content and acidic polysaccharide content were 10.5% and 17%, respectively. The mixture had a same crude saponin content and twice acidic polysaccharide content comparing to 50% ethanol extract of white tail ginseng. It suggests that preparation of new ginseng concentrate with high content of acidic polysaccharide from white tail ginseng marc has high potencies in the utilization of waste material.

Changes in Physicochemical Components of Ginseng Marc by Roasting Process (볶음처리에 의한 인삼박의 이화학적 성분변화)

  • 박명한;김교창
    • Journal of Ginseng Research
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    • v.19 no.2
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    • pp.144-152
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    • 1995
  • This study was carried out in order to utilize ginseng marc (GM), a byproduct produced during the preparation of ginseng extract. For the utilization of GM as coffee-replacing beverage, GM was roasted at 140-23$0^{\circ}C$, for 10-30 min to generate coffee-like flavor and taste. The physicochemical changes in GM induced by roasting process was measured. Weight and moisture contents of GM abruptly decreased while roasting at various temperature and period of time, and the amount of water-extracted solid substances decorated beyond 23$0^{\circ}C$. Among the proximate components, total and free sugar decreased remarkably, while crude fat content increased. Crude protein content did not change by the roasting process. pH derides to pH 4.9 after 30 min at 20$0^{\circ}C$, but increased at higher temperatures. Hunter color L value of the GM powder decreased, whereas a and b values, increased up to 10 times as compared to that of the control. The brown color(O, D 490 nm) in 50% ethanol extract of the roasted GM was 46 times higher than that of the control.

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Effects of Soil Microbial Agent with Red Ginseng Marc on Growth of Watermelon -A Field Study- (홍삼박을 활용한 토양미생물제제가 수박의 생육에 미치는 영향 -현장연구를 중심으로-)

  • Ryu, Hyo-Seung;Lee, Jong-Wha;Kim, Chang-Man;Choi, In-Hag
    • Journal of Environmental Science International
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    • v.24 no.12
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    • pp.1705-1710
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    • 2015
  • The aim of the present study was to determine the effects of soil microbial agent with red ginseng marc on growth of watermelon during 5 months. The three treatments were distributed in a completely randomized design with four replicates per plot. After 1 week in planting dates, the growth of watermelon (full length, stem thichness, leaf length and lead width) showed no significant difference in all treatments. During elongation stage (20 days), soil microbial agent with red ginseng marc was increased by 5% in leaf thickness (May 23) and 7~14% in leaf length (May 16 and 23) when compared to other treatments. For changes in fruit bearing thickness, there were no differences among treatments. Characteristics of watermelon in harvest season have an effect on harvest and length, stalk length, naval length, weight, sugar content and yield, except for harvest and width. In particular, yields increased with treatments with two soil microbial agent (7~12%), indicating that soil microbial agent with red ginseng marc showed higher yield than the other treatments. In conclusion, red ginseng marc-treated soil microbial agents have a positive effect on the harvest season of watermelon and can provide useful information for the selection of the functional microbial properties and the registration of microbial fertilizer.

Physicochemical Properties of Pekin Duck Breast Meat from Ducks Fed Diets Containing Different Types of Sipjeondaebo-Tang by- Products and Red Ginseng Marc with Fermented Red Koji (십전대보탕 부산물과 발효홍국 홍삼박의 혼합제재를 여러 가지 제형에 따라 오리사료에 첨가 시 오리 가슴육의 변화)

  • Lee, Gee-Dong;Choi, In-Hag
    • Journal of Environmental Science International
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    • v.29 no.3
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    • pp.319-323
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    • 2020
  • This study investigated the physicochemical properties of Pekin duck breast meat obtained from ducks fed diets consisting different types of sipjeondaebo-tang by-products and red ginseng marc with fermented red koji during storage. A total of 180 Pekin ducks (0-day old) were divided into four groups, each consisting of three replicates (15 ducks per pen). This study investigated diets with four types of treatments: control (basal diet),1% blend powder, pelleted 1% blend, and coated pellets of 1% blend; the blend was a mixture of sipjeondaebo-tang by-products powder and red ginseng marc with fermented red koji. There was no significant difference (p>0.05) in duck breast meat pH on storage days 3 and 7, TBARS on storage days 0 through 7, and DPPH radical scavenging on storage days 0 and 7. However, the pH values on storage day 0 and DPPH radical scavenging on storage day 3 were significantly different (p<0.05) in the meats from control and treated diet fed ducks. Especially, on storage day 7, the breast meat from ducks treated with different types of sipjeondaebo-tang by-products and red ginseng marc with fermented red koji showed lower TBARS values and increased DPPH radical scavenging activity compared to the control. In conclusion, addition of different types of sipjeondaebo-tang by-product and red ginseng marc with fermented red koji to 1% blend might be helpful in increasing antioxidant effects and reducing product wastage.

Separation and Characteristics of the Extract Solution from Ginseng Marc by Roasting Process (볶음처리로 생성된 인삼박 추출액의 분리와 특성)

  • 박명한;김영호
    • Journal of Ginseng Research
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    • v.19 no.2
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    • pp.153-159
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    • 1995
  • Roasting ginseng marc was roasted at different temperatures (140, 170, 200, 23$0^{\circ}C$) and for different periods (10, 20, 30 min) produced aqueous soluble brown pigments, gel filtration of which over Sephadex G-50 yielded 3 fractions A, B, C. The treatment at higher temperature and for longer time lead to increase of peak A and decrease of peak C. The contents of the brown pigments and the degree of brown color increased about 4 times and over 6 times, respectively, by roasting at 23$0^{\circ}C$ and for 30 min as compared to the control. 5-Hydroxymethyl furfural in aqueous and 50% ethanol extracts of treated samples at 23$0^{\circ}C$ and for 30 min was increased to 3.6 times and 8 times, respectively, and carbonyl compound in both aqueous and 50% ethanol extracts was increased 3 times. Also pyroxene-like substance was increased apparently in both aqueous and 50% ethanol extracts of treated samples.

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Red Ginseng Marc and Steamed Extraction Powder Enhance Proliferation and Inflammatory Cytokine Modulation in Canine PBMCs Stimulated by IL-2

  • Ju-Hyun An;Qiang Li;Su-Min Park;Kyoung-Bo Kim;Yeong-Deuk Yi;Yong-Bum Song;Woo-Jin Song;Hwa-Young Youn
    • Journal of Veterinary Clinics
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    • v.40 no.1
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    • pp.1-7
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    • 2023
  • The growing market for companion animals, combined with their increasing lifespan, has generated an increased interest in companion animal immunity enhancers. Ginsenoside, a saponin component of ginseng and an essential ingredient of red ginseng marc (produced during red ginseng production), is effective in improving immunity. In this experiment, a powder mixture of red ginseng marc and steamed red ginseng extract powder (RGME) was orally administered to dogs for eight weeks. Subsequently, blood samples were collected and tested every four weeks. In addition, canine peripheral blood mononuclear cells (cPBMCs) were stimulated with or without interleukin-2 (IL-2) to evaluate their proliferation and cytokine secretion abilities. Proliferation assay suggests that the administration of RGME effectively enhanced numbers of cPBMCs under IL-2 stimulation. Furthermore, in the RGME group, a significant increase in the concentration of interferon gamma released from cPBMCs under IL-2 stimulation was observed. In conclusion, RGME might be an effective health supplement for improving immunity in dogs.

Enzyme Hydrolysates of Ginseng Marc Polysaccharides Promote the Phagocytic Activity of Macrophages Via Activation of TLR2 and Mer Tyrosine Kinase

  • Seo, Jeong Yeon;Choi, Ji Won;Lee, Jae Yeon;Park, Young Shik;Park, Yong Il
    • Journal of Microbiology and Biotechnology
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    • v.28 no.6
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    • pp.860-873
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    • 2018
  • Although ginseng marc is a by-product obtained during manufacturing of various commercial ginseng products and has been routinely discarded as a waste, it still contains considerable amounts of potential bioactive compounds, including saponins and polysaccharides. Previously, we reported that ginseng oligosaccharides derived from ginseng marc polysaccharides by enzymatic hydrolysis exert immunostimulatory activities in macrophages and these activated macrophages are in turn able to inhibit the growth of skin melanoma cells by inducing apoptosis. In the present study, a more detailed investigation of the immunostimulatory activity and underlying action mechanisms of an enzymatic hydrolysate (GEH) containing these oligosaccharides derived from ginseng marc polysaccharides was performed. The levels of proinflammatory cytokines and anti-inflammatory cytokines were measured in GEH-stimulated RAW264.7 macrophages using RT-PCR analysis and ELISA. The expression levels of Toll-like receptor 2 (TLR2) and TLR4, Dectin-1, and MerTK were measured by RT-PCR analysis or western blot analysis, and the phagocytic activities of GEH-challenged bone marrow-derived macrophages toward apoptotic Jurkat cells were assayed using fluorescence microscopy. GEH induced the production of both proinflammatory cytokines $TNF-{\alpha}$ and IL-6, and anti-inflammatory cytokine IL-10 in RAW 264.7 cells. The expression of the TLR2 and MerTK mRNAs was increased upon GEH treatment. Phagocytosis of apoptotic Jurkat cells was enhanced in GEH-treated macrophages. Based on the results, this enzymatic hydrolysate (GEH) containing oligosaccharides exerts immunostimulatory effects by maintaining the balance between M1 and M2 cytokines, facilitating macrophage activation and contributing to the efficient phagocytosis of apoptotic cells. Therefore, the GEH could be developed as value-added, health-beneficial food materials with immunostimulatory effects.

Potential of Red Ginseng Marc for Ethanol Production as a Fermentation Medium (에탄올 발효 배지로서 홍삼박의 활용)

  • Kim, Dong Chung;In, Man-Jin
    • Journal of Applied Biological Chemistry
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    • v.56 no.4
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    • pp.245-247
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    • 2013
  • The potential of the red ginseng marc (RGM) for the production of bio-ethanol using enzymatic hydrolysis and fermentation without any additional nutrients was investigated. Reducing sugar content in RGM treated with Viscozyme and Flavourzyme was 101.1 g/L and was much higher than that (7.2 g/L) in intact RGM. When enzymatically hydrolyzed red ginseng marc (ERGM) was fermented with commercially available dry yeast at $25^{\circ}C$ for 7 days, the final ethanol concentration reached 29.3 g/L with ethanol yield at 0.274 g of ethanol per 1 g of solubilized total sugar. Ethanol concentration and ethanol yield of ERGM were drastically increased over 1000% and 50%, respectively than those of RGM.

Biological Activities and Metabolite Analysis of Various Extracts and Fractions from Red Ginseng Marc

  • Lee, Dong Gyu;Jang, Ik Soon;Kang, Young-Hwa
    • Korean Journal of Plant Resources
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    • v.33 no.6
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    • pp.597-603
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    • 2020
  • Red ginseng marc (RGM) has been used on primary industries using fertilizer or forage, and it mostly has been dumped. To improve utilization of RGM, the biological activities of RGM were examined. RGM was extracted and fractionated using various solvents and their biological activities were compared. The hexane fraction from the methanol extract of RGM (RGMMH) showed strong anti-cancer activity (58.56 ± 6.04% at 100 ㎍/mL) and anti-inflammatory effect (65.72 ± 1.33% at 100 ㎍/mL). But, oil extract of RGM extracted with hexane (RGMH) showed low activities (anti-cancer: 16.42 ± 3.33%, at 100 ㎍/mL, anti-inflammatory activity: 29.46 ± 2.10%, at 100 ㎍/mL). Their metabolites were analyzed using HPLC. Panaxydol known as anti-cancer compound of RGM was one of major compounds in RGMMH. Meanwhile, panaxydol was detected in trace amount in red ginseng marc oil (RGMH). In addition, RGMMH and RGMH showed big differences in HPLC profiling. This research suggests optimal extraction method of RGM oil.

In Vitro Antioxidant and Anticancer Potential of n-Hexane Extract from Ginseng Marc (인삼박 n-Hexane 추출물의 in vitro 항산화 및 항암 활성)

  • In, Man-Jin;Chae, Hee Jeong;Kim, Dong Chung
    • Journal of Applied Biological Chemistry
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    • v.57 no.3
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    • pp.247-250
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    • 2014
  • A lipid-soluble extract in ginseng marc was prepared by n-hexane extraction to evaluate its antioxidant and anticancer potential. A hexane extract of ginseng marc (HEGM) possessed a 2,2-diphenyl-1-picryl-hydrazyl free radical scavenging activity which was related to the amount of total phenolics. Also, HEGM showed a potent inhibitory activity on human non-small cell lung cancer (A549, $GI_{50}=34.0{\mu}g/mL$) and colon cancer (SNU-C4, $GI_{50}=45.2{\mu}g/mL$) cells proliferation in vitro in a concentration-dependent manner as did the hexane extract of ginseng with $GI_{50}$ values of $20.0{\mu}g/mL$ in A549 and $37.0{\mu}g/mL$ in SNU-C4. These results imply that HEGM can be utilized as an antioxidant and anticancer substance.