• Title/Summary/Keyword: crude saponin

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The Effect of Ginseng Extracts on the Photooxidation of Liposome II. The effecton the changes of fluidity and lysis (Liposome의 광산화반응에 미치는 인삼추출물의 영향 제2보 유동성 및 Lysis에 미치는 영향)

  • 백태홍;이준홍
    • Journal of Ginseng Research
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    • v.14 no.3
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    • pp.385-390
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    • 1990
  • To investigate the effect of ginseng extracts on the changes of flllidity and lysis of liposome reverse phase evaporation vesicle (REV) was employed as model membrane and methylene blue was used as photosensitizer. Fluoresence polarization (P vaule) that represented fluidity of liposome was increased by photooxidation. All of the ginseng saponin inhibited the increasing rate of P value; the order of effect was ginseng water extract>biol saponin>triol saponin>crude saponin. In trapped G-6-P% measurement for lysis of liposome, ginseng water extract and crude saponin promoted the lysis of liposome. Therefore, we thought that ginseng extracts acted as both antioxidant and detergent.

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A Study on the Saponin Contents and Antioxidant Activity of the Ginseng and Extruded Ginseng by Using Different Solvents for Extraction (추출 용매에 따른 인삼과 압출 성형 인삼의 사포닌 함량 및 항산화 활성 연구)

  • Kim, Sung-Hwan
    • The Korean Journal of Food And Nutrition
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    • v.24 no.4
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    • pp.528-534
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    • 2011
  • This study was conducted to investigate the changes in saponin content and antioxidant activity of crude ginseng and extruded ginseng by using different solvent extraction methods. Each of the fractions was first extracted by 80% ethanol followed by ether treatment to remove the lipid components. Water soluble components were separated by ethylacetate and water saturated butanol. Four fraction, including 80% ethanol, ethylacetate, butanol and water were obtained from crude and extruded ginsengs to analyze saponin content and antioxidant activity. Saponin content and antioxidant capacity of each of the four fractions were measured by LC/MS analysis and ORAC(Oxygen Radical Absorbance Capacity) assay, respectively. It was found that a major portion of saponin was present in ethyl acetate and water saturated butanol fractions. When extracted by 80% ethanol, ginsenoside Rb1 and Rg1 were mostly found in crude ginseng, while ginsenoside Re and Rb1 were detected in extruded ginseng. Even though Rh1 and Rg3 were found in a very small quantity in crude ginseng, there was a significant quantity of both in extruded ginseng when extracted by 80% ethanol. Similar tendency was also observed in extruded ginseng fraction when extracted with ethyl acetate and butanol. In crude ginseng, the level of Rg1 was the highest among other ginsenosides upon extraction by ethyl acetate, while Rh1 and Rg3 were predominantly found by employing similar solvent extraction in the extruded ginseng. Also, Rg1, Re and Rb1 were also found in the extruded ginseng with small quantity. Rg1, Re and Rb1 were found in crude ginseng by butanol extraction, while Rb1 and Re were extracted from the extruded ginseng. Overall, there was no difference in the saponin content between crude ginseng and extruded ginseng when extracted by butanol and water, but twice as much of saponin was obtained by 80% ethanol extraction and 6 times more saponin were obtained in ethyl acetate fraction in the extruded ginseng. Antioxidant capacity of crude ginseng as determined by ORAC assay was higher in 80% ethanol(high in many different kinds of biological compounds) and water saturated butanol(high in polar saponin) fractions than the ethyl acetate and water fractions. No difference in antioxidant capacity was observed between crude and extruded ginseng. However, antioxidant capacity of ethyl acetate and water fractions in extruded ginseng was significantly higher than crude ginseng($P$ >0.05). All the fractions in both, crude and extruded ginseng possessed antioxidant capacity and even water fractions that contained almost no saponin had some antioxidant capacity. While determining correlation coefficient between fractions in extruded ginseng by Pearson correlation, it was observed that 80% ethanol fraction was in correlation with ethyl acetate($P$ >0.01) and ethanol($P$ >0.001) and in the case of ethylacetate, correlation was observed only with butanol fraction($P$ >0.05).

Mineral and Saponin Component in white Sesame, black Sesame and Perilla Seed (흰깨, 검은깨, 들깨 중의 무기질 및 Saponin 함량)

  • 김혜자
    • Journal of the Korean Home Economics Association
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    • v.24 no.3
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    • pp.79-84
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    • 1986
  • the purpose of this paper is to study on the proximate composition, mineral and saponin content in white sesame, black sesame, and perilla seed. For this purpose, we have compared six different materials: white-raw-sesame, white-roast-sesame, black-raw-sesame, black-roast-sesame, raw-perilla seed and roast perilla seed, and have come to the following results. The crude fat content was the highest in white-raw-sesame(55.3%). In all the six samples, the crude fat content in raw seeds was all higher than that in roast seeds. The crude protein content was the highest in the roast perilla seed(24.6%), and in the six samples, the crude protein content in roast seeds all higher than that in roast seeds. The total sugar content was found to be the highest in the roast perilla seed(8.29%). The reducing sugar content was higher in raw perilla seed(1.57%) than in other sample materials. The ash content was the highest in black raw-sesame(5.93%), and that percentage rates was the same as that of FAO and of Japan. Minerals like Cd. Mn. Cu. Na. Mg. Pb. and Ca. were found to be contained more in black sesame than in other sample materials. The minerals contained most in white sesame were Zn.(61.6ppm) and Fe(49.4ppm), and K was contained a little more in perilla seed than in the others. The sample materials which contain saponin most were white-roast-sesame(0.34%) and black-roast-sesame(029%).

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Effect of ginseng Saponin on the fatty acid composition of the lipids of Rhodotorula glutinis. (인삼 Saponin이 Rhodotorula glutinis의 지방산 조성에 미치는 영향)

  • 이시경;주현규
    • Microbiology and Biotechnology Letters
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    • v.13 no.2
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    • pp.109-114
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    • 1985
  • This study was attempted to observe the effect of crude ginseng saponin on the cell growth, lipid contents of Rhodotolula glutinis cells and fatty acid composition of the lipids from the yeast. The results obtained were as follows; The weight of dry yeast cells was increased by the addition of ginseng saponin and was noticeably increased in the treatment containing 10$^{-2}$ % ginseng saponin. With the increase of ginseng saponin concentration, lipids contents in Rhodotorula glutinis were increased but it's contents were decreased at the concentration of 10$^{-1}$ % ginseng saponin. The crude lipids of Rhodotorula glutinis were identified to be composed of palmitic, stearic, oleic, linoleic acid. Un-saturated fatty acid contents were greater than those of saturated fatty acids. Fatty acid contents were increased in the order of oleic, linoleic, palmitic and stearic acid, but palmitic acid was increased more than linoleic acid in the lipids of cells obtained at the higher than 10$^{-2}$ % ginseng saponin. As the ginseng saponin concentration was increased fatty acid contents were also increased, while they were considerably decreased in case of the addition of 10$^{-1}$ % ginseng saponin concentration.

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Hypoglycemic and Hypolipidemic Effects of Crude Saponin Fractions from Panax ginseng and Gynostemma pentaphyllum (인삼 및 틀의 초 saponin분획의 항당뇨 및 항고지혈 효과)

  • 장윤정;김중권;이명수;함인혜;김기호;김홍진
    • YAKHAK HOEJI
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    • v.45 no.5
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    • pp.545-556
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    • 2001
  • Crude saponin fractions were isolated using non-ionic resin chromatography from Ginseng Radix Alba (PG) and Gynostemmae Herba+ (GP). These saponin fractions were orally administered to strep- tozotocin (STZ)-induced diabetic rats for 2 weeks and to high-fat diet-induced obese rats for 4 weeks. Treatment with either PG saponin or GP saponin at a dose of 1 mg/kg significantly decreased the plasma glucose level to that of glibenclamide treated or normal groups. The increased plasma triglyceride (TG) level in diabetic rats was decreased by 50% with PG or GP saponin treatment. Combined administration of PG and GP saponins with different ratios (total dose of 1 mg/kg) also had the similar effects on the blood glucose and TG levels with that of PG or GP alone. Treatments with GP (1 mg/kg) or GP (0.5 mg/kg) and PG (0.5 mg/kg) together significantly suppressed the rise in TG levels induced by high-fat diet whereas slightly suppressed the rise in the total cholesterol level. The body weight gain was also decreased both in the two saponin treated groups. These results demonstrate that either alone or mixture of PG and GP have similar degree of effects on hyperglycemia and hyperlipidemia.

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Effects of red ginseng-crude saponin on plasma liqid levels in rats fed on a diet high in cholesterol and triglyceride

  • Moon, Chang-Kiu;Kang, Nae-Young;Yun, Yeo-Pyo;Lee, Soo-Hwan;Lee, Hyun-Ah;Kang, Tak-Lim
    • Archives of Pharmacal Research
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    • v.7 no.1
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    • pp.41-45
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    • 1984
  • The effect of Red ginseng saponin on plasma lipid levels in Wistar rats fed on a diet high in cholesterol and triglyceride was determined. A dose of Red ginseng-crude saponin (150 mg/kg/day) was administered orally for 4 weeks to Wistar rats fed on a diet containing 2% cholesterol and 10% olive oil. Plasma levels of total cholesterol, HDL-cholesterol and triglyceride were measured and lipoproteins were analyzed by using electrophoretic technique. Red ginseng saponin showed no significant changes of HDL-cholesterol level but it lowered plasma levels of total cholesterol and elevate those of triglyceride intensively.

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Extract Yields and Saponin Contents of Red Ginseng Extracts prepared with various Concentrations of Ethanol (홍삼의 알콜 농도별 추출 엑스의 수율과 사포닌 함량)

  • Ko, Sung-Ryong;Kim, Seok-Chang;Choi, Kang-Ju
    • Korean Journal of Pharmacognosy
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    • v.23 no.1
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    • pp.24-28
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    • 1992
  • Red ginseng extracts were prepared with various concentrations of ethanol. Extract yields were examined and saponins in the extracts were identified and determined by TLC and HPLC, respectively. Yields of the extracts, $19.7{\sim]50.3%$, were the highest in water extract and showed significant decrease with the increase of ethanol concentration used for extraction. Contrary to the extract yields, saponin yields from red ginseng were conspicuously increased with the increase of ethanol concentration and were $3.47{\sim}5.13%$ of crude saponins and $1.28{\sim}1.93%$ of six major ginsenosides. Saponin contents in the red ginseng extracts were $6.9{\sim}24.2%$, of crude saponin and $2.57{\sim}9.22%$, of six major ginsenosides.

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Effect of Crude saponin from Red-ginseng efflux on Blood biochemical parameters in Rats Acutely Exposed to 2,3,7,8-tetrachlorodibenzo-ρ-dioxin (TCDD) (홍삼유출액으로부터 분리한 조사포닌이 TCDD (2,3,7,8-Tetrachlorodibenzo-ρ-dioxin)로 급성독성을 유도한 흰쥐의 혈액 생화학지수에 미치는 영향)

  • Kwak, Yi-Seong;Kyung, Jong-Soo;Song, Young-Bum;Wee, Jae-Joon;Park, Jong-Dae
    • Journal of Ginseng Research
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    • v.30 no.1
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    • pp.8-14
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    • 2006
  • This study was carried out to investigate the protective effect of crude saponin from red ginseng efflux (RGE-CS) on biochemical parameters in male rats acutely exposed to 2,3,7,8-tetrachlorodibenzo-$\rho$-dioxin (TCDD). Forty male rats ($200{\pm}20g$) were divided into 4 groups. Normal control group (NC) received vehicle and saline; only TCDD-treated group (TT) received TCDD ($5{\mu}g/kg$, single dose) intrperitoneally; RGE-CS 20 received 20 mg/kg of crude saponin i.p. for 4 weeks from 1 week before TCDD-exposure; RGE-CS 40 also received 40 mg/kg of crude saponin i.p. for 4 weeks from 1 week before TCDD-exposure. Body weight of TT group was significantly decreased after TCDD-exposure. However, body weight of crude saponin groups increased throughout the experimental period, although the increasing rate was slower than that of NC group. Decrease in body weight was not observed during the experimental period in RGE-CS 40. Increases in triglyceride (TG), total cholesterol (TC), low-density lipoprotein (LDL), AST, ALT and $Fe^{2+}$ levels by TCDD intoxication were significantly attenuated by the RGE-CS treatment. Decrease in glucose, amylase, lactate dehydrogenase (LDH) and creatinine kinase (CK) by TCDD also were inhibited by the RGE-CS. These results suggest that saponin from red-ginseng efflux might be a useful protective agent against TCDD, an endocrine disrupter.

The Effect of Honey Concentration on the Quality of Honeyed Ginseng in the Process of Manufacturing Honeyed Ginseng (봉밀의 농도가 인삼정과의 품질에 미치는 영향)

  • Kim, Hae-Jung;Jeong, Dong-Sin;Ju, Hyeon-Gyu
    • Journal of Ginseng Research
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    • v.9 no.1
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    • pp.128-134
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    • 1985
  • In order to study the effect of honey concentration on the quality of honeyed ginseng in the process of manufacturing honeyed ginseng, honeyed ginseng was manufactured under the various condition of honey concentration, 40 brix, 50 brix, 60 brix and 70 brix and the approximate composition, the yield and organoleptic test of them were investigated. The results obtained were as follows. 1. The higher honey concentration was used, the yield of honeyed ginseng was increased. 2. The higher honey concentration was used, the amount of total sugar was increased while the amount of crude saponin, crude protein. crude fat, crude fiber and crude ash was decreased. 3. Free sugars of honeyed ginseng consist of rhamnose, xylose, fructose, glucose, sucrose and maltose, 4. The amount of saponin lost in the process of manufacturing honeyed ginseng was 2.5%-5.0%, therefore honey concentration was not so effective on the loss of saponin. 5. According to organoleptic test, H-3 and H-2 treating honey concentration at 60 brix and 50 brix was the best and better of all.

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Study on 'Chu-Suk'(VI) -Prosapogenin in Pods of Gleditschia officinalis- (추석(秋石)에 관(關)한 연구(硏究)(VI) -조협 꼬투리의 Prosapogenin에 관하여-)

  • Lee, Eun-Ock;Yu, Chae-Seun
    • Korean Journal of Pharmacognosy
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    • v.9 no.2
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    • pp.93-97
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    • 1978
  • From the crude saponin obtained from the pods of Gleditschia officinalis seven spots were identified by TLC and quantity of gleditschia B was the highest among them. Ten kinds of prosapogenins were identified from the partial hydrolysates of crude saponin and found that prosapogenin E contain oleanolic acid as a sapogenin and prosapogenin F does echinocystic acid as the sapogenin. Hydrolysis of crude saponin yield glucose and rhamnose and the same sugar were also identified from the mixture of prosapogenin E and F.

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