• Title/Summary/Keyword: White Ginseng

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Determination of Ginseng Yakju Quality using Different Percentages and Application Dates of Ginseng (인삼 첨가 비율 및 첨가 시기에 따른 인삼 약주 품질 특성)

  • Kong, Moon-Hee;Jeong, Seok-Tae;Yeo, Soo-Hwan;Choi, Ji-Ho;Choi, Han-Seok;Han, Gui-Jeong;Jang, Mi-So;Chung, Ill-Min
    • Journal of the East Asian Society of Dietary Life
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    • v.21 no.2
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    • pp.207-214
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    • 2011
  • We investigated the quality characteristics of fermented ginseng Yakju produced using different percentage contents and application dates of ginseng. Although the pH of fermented ginseng Yakju was not significantly different among the various treatment groups, the total acidity was changed depending on the percentage of ginseng content. the application date of ginseng did not influence the total acid content. The amount of volatile acids was higher at a 0.2~0.3% content of white or red ginseng than in other treatment groups. The ginsenoside contents of white and red ginseng used for making ginseng Yakju were 3,555.0 and 4,447.4 ppm, respectively. In ginseng Yakju, total ginsenoside contents were detected at very small amounts of <10 ppm. A total of 15 volatile components were detected in ginseng Yakju. Higher levels of methanol were produced at early application dates. In sensory evaluations, the preference for aroma was higher at white ginseng levels of 0.5% and 1.0% than for other treatment groups, and the taste was judged to be best at a white ginseng content of 0.3%. In the red ginseng treatment group, a red ginseng content of 0.3% was most preferred for both aroma and taste. The taste preference for white ginseng was at 4 days after application, while the taste of the red ginseng treated group was good at the beginning of fermentation.

Quality Evaluation of Fresh ginseng by Soft X-ray and iodine Test. (연X선 및 요드반응에 의한 수삼의 품질평가)

  • Park, Hoon;Cho, Byung-Goo;Lee, Mee-Kyung
    • Journal of Ginseng Research
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    • v.8 no.2
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    • pp.167-171
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    • 1984
  • Soft X-ray is useful to identify the quality of fresh ginseng causing the inside cavity or white pan of red ginseng. The portion of low mass density identified by the difference in absorption of soft X-ray showed lower dry matter density and less or no response to iodine test indicating less accumulation or excess consumption of starch. The inside white part of red ginseng absorbed less X-ray than the normal part did. Probability for identification of the inside cavity or white at fresh ginseng was rather high (80-90%) in screen observation than f'3m reading and seemed to be increased further by using the developed screen and with training. The inside white of red ginseng appeared to be due to starch deficiency. Dry matter density appeared to be better than fresh weight density for the quality criterion.

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Comparison of Malonyl Ginsenoside Contents in Parts of Korean Ginseng (고려인삼의 부위별 Malonyl Ginsenoside 함량 비교 분석)

  • Park, Young Sik;Oh, Myeong Hwan;Lee, Hwan;Jung, Jong Tae;Jo, Yun Ho;Pyo, Mi Kyung
    • Korean Journal of Pharmacognosy
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    • v.48 no.1
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    • pp.82-87
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    • 2017
  • Malonyl ginsenoside content of the Panax ginseng C.A. Meyer is known to account for 35% to 60% of total ginsenosides content. However, its distribution by ginseng part has not been studied. In this study, four kinds of malonyl ginsenosides were compared in Korean white ginseng part using the purified malonyl ginsenoside standards in our laboratory. White ginseng was prepared by the freeze drying ($-70^{\circ}C$, 48 h) or air drying ($50^{\circ}C$, 48 h) methods form 4-year-old ginseng. Malonyl ginsenoside content of main, lateral, and fine root, and of the main root without skin and its skin was compared. Malonyl ginsenosides (m-Rb1, m-Rb2, m-Rc and m-Rd) content (58%, 19.17 mg/g) in total ginsenosides of air dried white ginseng was decreased about 4% compared to its content of freeze dried white ginseng (62%, 20.40 mg/g). Malonyl ginsenoside content was the highest in fine root, compared to the main or lateral root. Malonyl ginsenosides content in skin of main root was 20.08 mg/g, while its content of the main root without skin was 2.58 mg/g. These results are expected to help establishment of quality specification and processing process in Korean white ginseng.

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.

Cytotoxicity of White and Red Ginseng against Cancer Cells and Their Effects on the Cell Cycle (백삼과 홍삼의 암세포에 대한 세포독성 및 세포주기에 미치는 영향)

  • 정노팔;송선옥;최상운
    • Journal of Ginseng Research
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    • v.24 no.4
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    • pp.183-187
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    • 2000
  • The present study was performed to evaluate the cytotoxicity of white and red ginseng extracts against cancer cells in vitro. We also examined the effects of those ginseng extracts on the cell cycle by using flow cytometry. We divided each white and red ginseng into two parts, main body and rhizome, and tested the cytotoxicity of each fraction against various mouse-originated cancer cells and mouse peritoneal macrophages. The red ginseng was more cytotoxic to the cancer cells in comparison with white ginseng, and the rhizome fractions were more cytotoxic than the mainbody fractions in the both of white and red ginseng. Among the cells tested, RAW264.7 cancer cells were most sensitive to all the ginseng fractions. In cell cycle analysis, all the fractions of white and red ginseng arrested the cell cycle at G$_2$/M phase.

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First Report of Sclerotinia White Rot Caused by Sclerotinia nivalis on Panax ginseng in Korea

  • Cho, Hye Sun;Shin, Jeong-Sup;Kim, Jae-Hyun;Hong, Tae-Kyun;Cho, Dae-Hui;Kang, Je Yong
    • Research in Plant Disease
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    • v.19 no.1
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    • pp.49-54
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    • 2013
  • Sclerotinia white rot disease was observed on 5 and 6-year-old ginseng (Panax ginseng) roots in Hongchun, Cheorwon, and Yanggu, Gangwon Province, Korea from 2006 to 2010. Symptoms included a brownish watery soft rot of the roots, and black sclerotia were often found on the rotten roots. The causal agent of the disease was identified as Sclerotinia nivalis based on cultural characteristics and sequence analyses of the internal transcribed spacer region of rDNA and ${\beta}$-tubulin gene with 100% sequence similarity. Pathogenicity tests were performed on 2-year-old ginseng roots with mycelium plugs without wounds. A watery soft rot of the roots and black sclerotia were observed 10 days after inoculation. These symptoms were identical to those observed on naturally infected roots. The same fungus was re-isolated from the lesions induced by artificial inoculation. This is the first report of sclerotinia white rot caused by S. nivalis on P. ginseng in Korea.

Ultrastructure of Fresh Root Turned into Inside White of Red Ginseng (홍삼 내백부의 수삼 미세구조)

  • Cho, Byung-Goo;Park, Hoon;Lee, Jun-Seong
    • Journal of Ginseng Research
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    • v.18 no.3
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    • pp.187-190
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    • 1994
  • The pith and xylem parts of fresh root that turned into inside-white during processing for red ginseng was investigated under scanning electron microscope in comparison with the sa31e position of fresh root processed into normal reddening. In the inside-white part starch storage cells remain mostly in vacancy or with small number of starch granules and with large hollow by missing cell membranes between cells. Many starch seed granules appeared on the surface of storage cell wall in the inside-white part. Fresh root sample showed better picture than dried powder.

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Studies on Hypotensive Mechanism of Ginseng Components (인삼성분(人蔘成分)의 혈압강하기전(血壓降下機轉)에 관한 연구(硏究))

  • Kim, Nak-Doo;Kim, In-Chull
    • Korean Journal of Pharmacognosy
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    • v.9 no.1
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    • pp.41-47
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    • 1978
  • Total saponins and ether extracts of red and white ginseng were obtained and their effects on blood pressure in cat and their histamine liberating activities in rabbits were measured. 1) Ether extract of red ginseng showed a transient hypotensive effect and subsequently showed a remarkable and persistent hypotensive effect, whereas other three fractions, such as saponin fractions of red and white ginseng and ether extract of white ginseng showed only a initial transient hypotensive effects. 2) Histamine levels liberated into blood after administration of each fractions measured by the bioassay with guinea pig ileum. Ether extract of red ginseng immediately increased histamine contents in plasma but the histamine levels decreased to normal level within 10min in spite of decreased blood pressure was sustained. Although white ginseng saponin lowered blood pressure immediately when it is administered, histamine release was observed after 10min. The results suggest that hypotensive effects of ginseng seems to have no correlation with the histamine liberating activity. Ginseng appears to show hypotensive effect via some other mechanisms.

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Effect of Shading on the Quality of Raw, Red and White Ginseng and the Contents of Some Minerals in Ginseng Roots (해가림 종류가 수삼, 홍삼 및 백삼의 품질과 무기물 함량에 미치는 영향)

  • 김영호;유연현
    • Journal of Ginseng Research
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    • v.14 no.1
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    • pp.36-43
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    • 1990
  • The quality of raw, red and white ginseng and the contents of some minerals were examined using 6-year-old ginseng roots produced in different shades, thatch and polyethylene net (P..E.). The yield of first and second grade ginseng roots was higher in the thatch shade than in the P.E. shade. The smaller sizes of ginseng routs were probably due to loss of ginseng yield called by alternaria blight in the third and fourth years, and lower quality was dale to more rusty roots in the P.E. shading. For red ginseng. rates of heaven and earth grades were higher in the P.E. than thatch shade. producing red ginseng with less inside cavity Production of white ginseng was higher in the thatch shade than in the P.E. shade. showing a higher yield, better piece grade, lower inside crack and better quality index in the thatch. The contents of some minerals such as K, Ca, Mg and Mn of fine ginseng roots differed between the two shades, some of which had a significant correlation with the quality indices of white ginseng. Keywords Thatch shade, polyethylene shade, alternaria blight, rulsty root, quality of ginseng.

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Quality Characteristics of Yanggaeng with White, Red and Black Ginseng Powder (백삼, 홍삼, 흑삼 분말을 이용한 양갱 제조 및 품질 특성)

  • Kim, Ae-Jung;Lee, Sun-Hee;Jung, Eun-Kyung
    • Journal of the East Asian Society of Dietary Life
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    • v.23 no.1
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    • pp.78-84
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    • 2013
  • Powders prepared from three different varieties of Korean ginseng (white, red and black) are consumed daily by many Koreans as a functional food material. These variants exert a variety of physiological effects. The principal objective of this study was to evaluate the quality characteristics of Yanggaeng prepared with three different types of ginseng powder. We conducted tests for ginsenosides content, Hunter's color values, mechanical characteristics, and sensory evaluation analysis. The ginsenosides of black ginseng were higher than those of white and red ginseng. The lightness of the black ginseng Yanggaeng was significantly less than the white, red, and control samples (p<0.05). We noted significant differences in Hunter's a and b values. With regard to the mechanical properties of the samples, we noted significant differences in gumminess (p<0.05), but no differences in hardness, springiness, chewiness, and cohesiveness were detected. The results of sensory evaluation showed that there were significant differences in the color, flavor, and overall quality of the samples (p<0.05), but there were no significant differences in taste and texture. Overall, red ginseng Yanggaeng appeared to have the most commercial value for improving the Yanggaeng product.