• Title/Summary/Keyword: crude saponin content

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Chemical Components of Rusty Root of Ginseng (적변인삼의 화학적 성분에 관한 연구)

  • 이태수;목성균
    • Journal of Ginseng Research
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    • v.19 no.1
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    • pp.77-83
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    • 1995
  • This study was conducted to investigate the chemical components of rusty root for seeking the cause of rust. Na, Fe contents were higher in various tissues of six-year-old rusty root than healthy root. Contents of total sugar in epidermis of rusty root was low but crude lignin and suborn contents were high. Crude lipid content increased with the rate of rusty symptoms in each part of root respectively. Pentadecanoic, stearic, oleic, lignoseric acid contents increased in cortex of tap root with the rate of rusty symptoms but decreased in pith. Total ginsenoside and crude saponin contents increased , in pith and cortex of tap root with the rate of rusty symptoms but decreased in lateral and fine root.

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An Rapid Extraction of Ginseng Saponin Compounds (인삼사포닌 화합물의 신속한 추출)

  • Kwak, Yi-Seong;Kim, Mi-Ju;Kim, Eun-Hee;Kim, Yeoung-Ae
    • Korean Journal of Food Science and Technology
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    • v.29 no.6
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    • pp.1327-1329
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    • 1997
  • A new rapid saponin extraction method was developed with using of organic solvent and waring blonder. There was a good correlation between previous distillation method and this method in f major ginsenosides ($Rb_1$, $Rb_2$, Rc, Rd, Re, Rg1) contents. When the ratio of methanol and chloroform was 7:3, this method showed similar saponin contents (total major. ginsenosides contents) comparing with distillation method. Contents of total major ginsenosides were 2.41% in this method and 2.54% in distillation method. However, crude saponin content of this method was higher than that of distillation method.

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Effect of Controlled Atmosphere and Modified Atmosphere Storage on the Apparent Quality and Saponin Component of Fresh and Red Ginseng (CA 및 MA 저장이 수삼 및 홍삼의 외관품질 및 사포인 조성에 미치는 영향)

  • 전병선;성현순
    • Journal of Ginseng Research
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    • v.19 no.1
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    • pp.62-72
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    • 1995
  • During the controlled atmosphere storage (CA), fresh ginseng showed good appearance in quality, and other deterioration of freshness was not observed until 12 weeks. On the other hand, MA storage had kept freshness only in treatment of 1 until 8 weeks. There was no significant difference between treated and non-treated sample with preservatives, and not treated sample was not infected with various different fungi. Moisture contents and hardness of ginseng in all treatments were not changed much until 12 weeks, and surface shrinkage did not occur either. But shear stress increased somewhat in all treatments after 12 weeks. The granule of microstructure in tissue diminished slightly. The apparent Quality of red ginseng was good until 4 weeks of treatment. But as time passed, white skin and wrinkled skin were generated and darkened in its color. B-1 in CA and E-1 in MA were found to be the most favorable one. The content of crude saponin did not change significantly during storage of CA or MA by preservation conditions and period. Though a small increase in saponin content from 4.92% to 5.43% was recognized in B-1, which was treated with preservative and 6.0% In B-2, control, this could rather explain increment of soluble component by butanol. Thus, there was no change in total contents of ginsenoside pattern and composition of each content. The Rbl content in B-1 and B-2 were 0.98%, and 0.97%, respectively, whereas that of control was 0.96%. E-1 of MA, treated with preservative was 5.32% after 12 weeks, but was 5.73% in control, indicating that ginsenosides pattern was quite similar to that of CA storage.

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Identification of Sugar from Korean Ginseng Saponins by Acid-hydrolysis (인삼(人蔘) Saponin 산가수분해물(酸加水分解物)의 당류(糖類)에 관(關)한 연구(硏究))

  • Yim, Kook-Yi
    • Journal of Nutrition and Health
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    • v.10 no.1
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    • pp.26-33
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    • 1977
  • In order to identify the sugars of saponin originated from Korean ginseng, experimentations were made on the four kinds of ginseng. The results are summarized as follows. 1. The starch content of Ginseng-tail, White-ginseng 3 and 6 years old-whole ginseng were 10.4, 31.5, 8.2, 25.6% and total sugar of its were 37.0, 61.5, 64.5, 62.5% and free sugar were 7.6, 10.5, 11.3, and 10.7% respectively. 2. Saponins were separated from Ginseng-tail, White-ginseng, 3 and 6 years old-whole ginseng by modified SHIBATA method. looms of crude saponin was used for the Thin layer Chromatography (TLC) and thirteen to twelve spots of saponin were isolated by double development $(Solvent:\;CHCL_3\;:\;MeOH\;:\;H_2O=65\;:\;35\;:\;10)$ and by two dimensional development. $(Solvent:\;nBuOH\;:\;HOAC\;:\;H_2O=4\;:\;1\;:\;5)$ The Pattern of spot was not significantly different according to Ginseng sample. 3. Glucose was identified from the acid-hydrolyzate of Ginsen-tail saponin by paper chromatography and isolated the unknown chromatogram seems to be pentose.

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Chemical Components of Red, White and Extruded Root Ginseng (홍삼 . 백삼 및 압출성형 건조수삼의 성분특성)

  • Ha, Dae-Chul;Ryu, Gi-Hyung
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.34 no.2
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    • pp.247-254
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    • 2005
  • The objective of this study is to compare the chemical properties of red ginseng, white ginseng, and extruded ginseng. Six kinds of samples were prepared and examined their chemical components. The comparison among crude ash, crude lipid, and total sugar resulted insignificant difference. White ginseng had lower content of reducing sugar than those of extruded ginseng and red ginseng. Total amino acid was found relatively low in treatment A (sliced whole root and dried at 7$0^{\circ}C$). Total amino acid of treatment C (extruded dry whole root ginseng slices, moisture content 30%, barrel temperature 11$0^{\circ}C$, and screw speed 200 rpm) was higher than that of treatment B (extruded dry whole root slices, moisture content 25%, barrel temperature 11$0^{\circ}C$, and screw speed 200 rpm). Crude saponin of treatments A, B, C, D (white ginseng with skin), E (skinless white ginseng), and F (red ginseng) were 4.02, 4.77, 4.12, 3.56, 3.25, and 4.02%, respectively. Ginsenoside was contained similarly as crude saponin. The amount of ginsenoside in the treatment of A, B, C, D, E, and F was recorded respectively at 6.031, 8.108, 6.876, 7.978, 5.591, and 9.834 mg/g. A specific component in red ginseng, $R_{g3}$ was detected in treatment F. Maltol was detected in treatment Band F. Acidic polysaccharide was increased 2∼3% by extrusion process. In conclusion, extruded ginseng had similar components to those of red ginseng.

Physicochemical Characteristics of 3-Year-Old Ginseng by Various Seeding Density in Direct-Sowing Culture (파종밀도에 따른 직파재배 3년근 인삼의 수량 및 품질 특성)

  • Seong, Bong-Jae;Kim, Gwan-Hou;Kim, Hyun-Ho;Kim, Sun-Ick;Han, Seung-Ho;Lee, Ka-Soon
    • Korean Journal of Medicinal Crop Science
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    • v.18 no.1
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    • pp.22-27
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    • 2010
  • This study was carried out to investigate the physicochemical characteristics of 3-year-old ginseng (for Samgyetang product) cultured by various seeding density in direct-sowing culture. Ginsengs were cultured by the seeding density, 275, 300, 330 352 and 396 seeds per Kan, $180{\times}90cm$ area. Survived rate (82.1%) were the highest in plot of 352 seeds sowed, length and leaf width were high in plot of 300 and 352 seeds. Root yield grain was increased with increase of the seeding density in direct-sowing culture except 352 seeds sowed. Average root weight and diameter were the highest in plot of 352 seeds sowed, 31.6 g and 18.4 mm, respectively. Crude saponin and each ginsenosides content were the highest in plot of 275 seeds sowed. Rg1 content was decreased, Rc and Rb2 content were increased with increase of the seeding density. Total soluble sugar content was the highest in plot of 330 seeds sowed and the lowest in plot of 396 seeds sowed, and oligo- and disaccaride content were high in plot of 330 and 352 seeds sowed. Reological characteristics of ginsengs cultivated according to various seeding density, hardness and springness were high and maximum fracture force was low with decrease of the seeding quantity.

Studies on the Constituents of Gynostemma pentaphyllum Makino (덩굴차(Gynostemma pentaphylum Makino)의 성분에 관한 연구)

  • Lee, Heon-Ok;Ko, Young-Su
    • Korean journal of food and cookery science
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    • v.6 no.4 s.13
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    • pp.69-83
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    • 1990
  • Gynostemma pentaphyllum Makino is a kind of perennial liana plant belonging to the Cucurbitaceae family. Since it was first discovered and reported to the Japanese academy in 1977, it came to be widely known to China and Southeast Asia areas as well as Japan. In Korea its name began to appear in the first half of 1980's, and it is now being nationwidely cultivated and popularized as tea stuffs. Gynostemma pentaphyllum Makino has remarkably strong propagation power. In addition. since it contains a great quantity of beneficial components, especially saponin it is believed to have excellent medical effects, too. This study was undertaken to examine the value of Gynostemma pentaphyllum Makino as a health-promotint tea, by investigating the components creating the flaver of tea and the saponin ingredient making medical effects as well as by inspecting whether Gynostemma pentaphyllum Makino products show different component arrangements according to their growing districts. As raw materials of the experiment, three kinds of Gynostemma pentaphyllum Makino samples produced in Suwon, Geochang and Uleungdo were taken. To accomplish the formerly stated goals, the contained quantity of the proximate composition, free sugar, reducing sugar, free amino acid, minerals, tannin, caffeine and vitamin C were measured respectively and compared between the samples, while the saponin content was compared with heat extracted from panax ginseng. The results of the experiment are as follows: 1. In the case of the proximate composition, the crude fat content was the highest in the Gymostemma pentaphyllum Makino material from Geochang (1.62%), the second in that from Suwon (1.56%), and the lowest in that from Uleungdo (1.0%). In addition the Geochang: produced sample had the greatest quantity of the crude protein and ash contents: the order of the crude Protein content was the Geochang produced (17.83%), the Suwon-produced (15.87%), and the Uleungdo-produced(12.28%), while that of the ash content was the Geochang-produced (14.80%), the Uleungdo-produced(10.17%), and the Suwon-produced(9.34%). 2. As for the reducing sugar contents, the Suwon-produced scored the highest of the three (3.3%), while the Geochang-produced was 1.3% and the Uleungdo-produced 0.5%. The total content of free sugar was 1.07% (the Suwon-produced), and 0.49% (the Geochang-produced) respectively but the sample from Uleungdo showed almost no free sugar content. The contained quantity of fructose and glucose was the highest among the kinds of free sugar both in the Suwon-produced and in the Geochang-produced. 3. The content of amino acid was the highest in the Suwon-produced(1.41%), the second in the Geochang-produced(1.37%), and the lowest in the Uleungdo-produced(0.53%). In the experiment, sixteen kinds of amino acid were extracted-Asp. Thr. Ser. Glu. Gly. Ala. Val. Het. Ileu. Leu. Tyr. Phe. Lys. His. Arg. Try. All of them except glutamic acid and methionine showed the highest quantity score in the Suwon-produced, while the glutamic acid content was the higest in the Uleungdo-produced and the methionine content in the Geochang-produced. The sequential arrangement of the sixteen contents according to their magnitude ranged from glycine, aspartic acid, and glutamic acid (the highest) to tryptophan, serine and lysine (the lowest). 4. Ten kinds of mineral were detected-Ca, Mn, Cd, K, Na, Pb, Mg, Fe, Zn, Cu. Among them, the content of Cd, Na, Mg, Zn and Fe was the highest in the Geochang-produced and that of K in the Suwon-produced. 5. The Geochang-produced materials contained much a larger quantity of tannin (6.3%) than the Suwon-produced (2.6%). Neither caffeine nor vitamin C was detected in the three kinds of materials. 6. In the case of the saponin content the Geochang-produced showd 2.39%, the Uleungdo-produced 1.77% and the Suwon-produced 1.49% respectively. However, it was found also that the saponin content of Gymostemma pentaphyllum Makino was the same kind as that of panax ginseng.

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Effect of Substrate on the Production of Korean Ginseng(Panax ginseng C.A. Meyer) in Nutrient Culture (한국인삼 양액재배시 배지의 영향)

  • Dong Sik Yang;Gung Pyo Lee;Park, Kuen Woo
    • Journal of Bio-Environment Control
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    • v.11 no.4
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    • pp.199-204
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    • 2002
  • To overcome a decrease of Korean ginseng production caused by successive cropping, we have tried to develop a nutrient culture system for Korean ginseng production. For determining the optimal substrate, mixture of sand and TKS-2 (S+T), peatmoss (P), reused rockwool (RR), and granular rockwool (GR) were investigated. The overall physico-chemical properties of RR fell into the reported optimal range for the ginseng cultivation. However, bulk density of S+T was a little higher than that of soil in Korean ginseng fields. The top fresh weight of the ginseng was high in RR and S+T substrates. The root fresh and dry weights in the RR were remarkably greater than that in the conventional soil (CS) of Korean ginseng fields. In terms of ginseng quality, the vitamin C content of ginseng root in nutrient culture was higher than that in CS. However, the contents of crude saponin and total ginsenosides in ginseng between in the nutrient culture and in the soil culture did not show any significant differences.

Changes in Physicochemical Compounds with Heating Treatment of Ginseng (가열처리에 따른 인삼의 이화학적 성분변화)

  • Yoon, Sung-Ran;Lee, Myung-Hee;Park, Jung-Hyun;Lee, In-Seon;Kwon, Joong-Ho;Lee, Gee-Dong
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.34 no.10
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    • pp.1572-1578
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    • 2005
  • Response surface methodology was used for monitoring changes in physicochemical properties with heating condition of ginseng which was sliced and freeze-dried. As heating temperature and time increased, soluble solid content decreased and browning color increased. Also, acidic polysaccharide and total phenolics increased with the increase in heating temperature and time. Heating condition for maximum soluble solid content was 146.05$^{\circ}C$ in heating temperature and 18.16 min in heating time. Maximum value of crude saponin content was 64.40 mg/g in 160.00$^{\circ}C$ and 20.00 min. Crude saponin content was influenced by heating time but the other properties were influenced by heating temperature.

Changes of composition during storage of Ginseng drink product (인삼드링크제품의 저장중 성분변화)

  • Joo, Hyun-Kyu;Jung, Dong-Kon;Kim, Nam-Dae
    • Applied Biological Chemistry
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    • v.34 no.4
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    • pp.339-343
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    • 1991
  • The objective of this study was to evalute changes of $CO_2$ pressure, pH, precipitation, brix, free sugar, colority, crude saponin and ginsenoside contents of Ginseng Drink Product for ten months at different temperatures $(room\;temp.,\;35^{\circ}C$ and $50^{\circ}C)$. The results are as follows : $CO_2$ pressure was decreased after nine month storage at room temp., six months at $35^{\circ}C$ and three months at $50^{\circ}C$. pH and brix nearly constant at various storage temperatures and periods. Precipitation was appeared after five months storage at room temp., two months at $35^{\circ}C$ and one month at $50^{\circ}C$. Sucrose content was decrease, while glucose and fructose contents were increased at high temperature and long period of stroage. Colority and panaxatrial(PT) saponin contents were increased, while panaxadiol(PD) saponin was increased at high temperature and long period of stroage.

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