• 제목/요약/키워드: Radioprotective ginseng protein

검색결과 13건 처리시간 0.022초

Gel filtration에 의한 한방사선 인삼단백 분획의 정제 (Further Purification of Radioprotective Ginseng Protein Fraction by Gel Filtration)

  • 김춘미;박경애
    • Journal of Ginseng Research
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    • 제13권2호
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    • pp.254-259
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    • 1989
  • A radioprotective ginseng protein fraction was obtained from Korean white ginseng powder by the following isolation and purification procedures: Tris-HCI buffer extraction, 70% ammonium sulfate fractionation, CM-rellulosr column chromatography, heat inactivation and Sephadex G-75 column chromatography. This fraction was further purified by Sepharose 4B and Sephadex G-150 column chromatographies. Three fractions obtained were subjected to Native-PAGE and SDS-PAGE using gradient gels and the silver staining method. Molecular weights of the native proteins and their subunits were estimated.

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Effects of Radioprotective Ginseng on Protein UV induced Sister Chromatid Exchanges

  • Kim, Choon-Mi;Choi, Jeong-Eun
    • Archives of Pharmacal Research
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    • 제11권2호
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    • pp.93-98
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    • 1988
  • To elucidate the reaction mechanism of ginseng protein on its antiradiation activity, its effects were studied on sister chromatid exchanges (SCE) induced by UV irradiation in CHO-KI cells. When cells were irradiated with 254 nm UV light at the dose of 0 to 8erg$\textrm{mm}^2$, the frequencies of CSE were increased more than two fold. However, when radio protective ginseng protein was added to the cells before the after UV irradiation, SCE frequencies were decreased significantly at all UV doses in both cases with no significant differences. As the amount of ginseng protein was varied from 100 to 500 .mu.g/ml, with UV irradiation at 60 erg$\textrm{mm}^2$, SCE frequencies dropped sharply at the first two concentrations and then reached a sort of plateau in both cases of pre-and post-treatment. When the ginseng protein was treated alone without UV irradiation, there were no changes in SCE frequencies no matter when the protein was added. There results suggest that the ginseng protein could reduced DNA damages, which may play an important role in the reaction mechanism of radioprotective activity of the protein.

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항 방사선 인삼단백분획의 DNA수복능력 증진효과 (DNA Repair Enhancement by Radioprotective Ginseng Protein Fraction)

  • 김춘미;최미경
    • 약학회지
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    • 제36권5호
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    • pp.449-454
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    • 1992
  • The effect of radioprotective ginseng protein fraction on DNA repair capacity was determined by measuring the amount of $^{3}H-thymidine$ incorporated into DNA in the process of repair synthesis for UV damaged DNA. CHO-Kl cells were prepared whose semiconservative replication was inhibited by trimethylpsoralen plus near-UV(PUVA) treatment. When the cells were exposed to UV light alone, the DNA repair capacity was increased at first and then decreased as UV dose increased. However, when the ginseng fraction was treated to the cells, the DNA repair capacity was kept increasing regardless of UV dose increment. When the concentration of protein contained in the added fraction was increased gradually, the repair capacity was also increased almost linearly showing dose-response relationship of the effect. These results suggest that the enhancement of DNA repair capacity of the cell can be one of the mechanisms of radioprotection by the ginseng fraction.

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방사선 방어작용이 있는 인삼 단백분획의 CHO-KI 세포에 대한 세포 독성 (Cytotoxic Effect of Radioprotective Ginseng Protein Fraction on CHO-KI Cells)

  • 김춘미;윤석란
    • 약학회지
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    • 제32권5호
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    • pp.313-318
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    • 1988
  • Radioprotective ginseng protein fraction was isolated from Korean white ginseng and its cytotoxic effect on CHO-K1 cells was studied by the method of measuring the relative cell survival and total cellular protein content (FRAME method). When ginseng protein at the dose of 300, 600, 900, $1200{\mu}g/ml$ was treated to cells for 24 hrs, the relative survival was significantly decreased at the concentration of above $600{\mu}g/ml$, indicating the presence of cytotoxic effect of the protein at certain concentration. When cellular protein content was measured after ginseng protein at the dose of 300, 600, 900, $1200\;{\mu}g/ml$ was treated, the amount of cellular protein was significantly reduced at the concentration above $600{\mu}g/ml$ in the case of 24 hr treatment and at all concentrations including $300{\mu}g/ml$ in the case of 72 hr treatment. The data suggest that the protein may inhibit cell growth, resulting in the reduction of live cells in culture. $ID_{50}$ value which is the concentration of ginseng protein that reduces the total cellular protein content to 50% of the control was calculated as 2276.86 and $1323.32\;{\mu}g/ml$ in groups treated for 24 and 72 hr, respectively. Since $ID_{50}$ value of above $1000{\mu}g/ml$ indicates very weak cytotoxicity, the ginseng protein seems to exert very weak cytotoxic effect on CHO-K1 cells.

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항방사선 인삼분획의 butanol 추출물과 수용성 성분이 세포 생존율에 미치는 영향 (Effects of Butanol Extract and Water-Soluble Constituent of Radioprotective Ginseng Fractioil on Cell Survival)

  • 김춘미;최향옥
    • Journal of Ginseng Research
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    • 제15권3호
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    • pp.167-170
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    • 1991
  • Radiation protective fraction was Isolated and partially purified from Korean white ginseng. The effect of the fraction was studied on the cell survival of W-damaged CHO-Kl cells. As a result, it was found that the fraction increased the survival rate of damaged cells significantly within the dose range of which cytotoxicity did not appear This fraction was separated into two parts by adding butanol, namely the precipitated protein component and the butanol extract. Damaged cells were treated with each of these components and their survival rates were measured. The protein component demonstrated significant increase in the survival rates, while the butanol extract showed no such increment. These results suggest that the radiation protective effect of the ginseng fraction is originated from the butanol-precipitated protein component, not from the butanol-soluble compounds.

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Effects of Ginseng Protein on Relative Survival and Chromosome Aberration of UV Irradiated Cells

  • Kim, Choon-Mi;Park, So-Young
    • Archives of Pharmacal Research
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    • 제11권3호
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    • pp.225-229
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    • 1988
  • A ginseng protein fraction which has been reported to have radiation protective effect was purified from Korean ginseng and its effects on relative survival and chromosome aberration were studied in UV irradiated CHO-K1 cells. When the protein fraction $(100\;{\mu}g/ml)$ was added to the cells before UV irradiation at 4\;J/$m^2$,, the survival rates were increased to 53.8% from 40.6% in control. Addition of the protein $(100\;{\mu}g/ml)$ after UV irradiation at 4 and $8\;J/m^2$ raised the rates to 85.4 and 24.0% from 79.2 and 11.5% in control, respectively. When the ginseng protein $(800\;{\mu}g/ml)$ was added to the cells exposed to UV light at 10, 20, $30\;J/m^2$, the frequencies of chromosome aberration (CA) were reduced significantly to almost same level regardless of the UV dose increment and there was no significant difference between pre- and post-treatment. When the concentration of ginseng protein was increased from 200 to $800\;{\mu}g/ml$, at UV dose of 10, 20, $30\;J/m^2$ each, the CA frequencies were decreased consistently as the dose of ginseng protein increased, at all UV doses tested. Similar effects were observed in both cases of pre- and post-treatment. The data suggest that the protein may reduce cell damage caused by UV light, especially damage to DNA molecule, or play a role in repair processes of damaged DNA, to increase cell survival and reduce chromosome aberrations.

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Effect of Ginseng on Calretinin Expression in Mouse Hippocampus Following Exposure to 835 MHz Radiofrequency

  • Aryal, Bijay;Maskey, Dhiraj;Kim, Myeung-Ju;Yang, Jae-Won;Kim, Hyung-Gun
    • Journal of Ginseng Research
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    • 제35권2호
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    • pp.138-148
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    • 2011
  • Exponential rise in the use of mobile communication devices has generated health concerns due to radiofrequency (RF) exposure due to its close proximity to the head. Calcium binding proteins like calretinin regulate the levels of calcium ($Ca^{2+}$) which plays an important role in biological systems. Ginseng is known for maintaining equilibrium in the human body and may play a beneficial radioprotectant role against electromagnetic field (EMF) exposure. In the present study, we evaluated the radioprotective effects of red ginseng (RG) extract in a mouse model. Calretinin (CR) expression was measured using a free-floating immunohistochemical method in the hippocampus of mice after 835 MHz EMF exposure for 5 h/d for 5 d at specific absorption rate=1.6 W/kg for the different experimental groups. The control animals were treated with NaCl while the experimental animals received 10 mg/kg ginseng, or 30 mg/kg; EMF exposed mice were also treated with NaCl, 10 mg/kg ginseng (E10), or 30 mg/kg (E30). Decreases in CR immunoreactivity (IR) along with loss of CA1 and CA3 interneurons and infragranular cells were observed in the ENaCl group while such losses were not observed in the E10 and E30 groups. CR IR significantly increased in the RG-treated group compared to control and EMF-exposed groups treated with NaCl. The study demonstrates that RG extract can serve as a radioprotective agent that maintains $Ca^{2+}$ homeostasis and prevents neuronal loss in the brain hippocampal region caused by RF exposure.

Reduced glutathione 및 인삼추출액(人蔘抽出液)이 X-선전신조사(線全身照射)를 입은 마우스 간조직(肝組織) 및 혈중(血中) NP-SH 및 NP-SS에 미치는 영향(影響) (Effects of Reduced Glutathione and Ginseng Extract on Non-Protein Sulfhydryl, and Non-Protein Disulfide of Mouse Liver and Blood Following Whole Body X-Irradiation)

  • 오장석
    • The Korean Journal of Physiology
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    • 제6권2호
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    • pp.57-63
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    • 1972
  • In an attempt to better understand the radioprotective effect of reduced glutathione(GSH), and to observe a possible radioprotective effect of Ginseng extract, whole body X-irradiation of 1,200 r was administered to the mouse either independently or immediately following the injection of GSH or Ginseng extract to the mouse intraperitoneally. The non-protein sulfhydryl (NP-SH) and non-protein disulfide (NP-SS) levels of the liver, and NP-SH level of NP-SH of the blood of the mouse were measured at 30, 60 and 120 minutes, and results were compared with the normal. The results thus obtained are summarized as follows; 1) The normal values of NP-SH and NP-SS of the mouse liver were $5.90{\pm}0.46\;{\mu}\;mol/gm\;wet\;wt.,\;and\;3.02{\pm}0.42\;{\mu}\;mol/ml$ wet wt., respectively, and the normal value of NP-SH of NP-SH of the mouse blood was $3.98{\pm}1.29\;{\mu}\;mol/ml$ 2) The injection of both GSH and Ginseng extract produced the highest values of NP-SH in the liver at 30 minutes, but a gradual decrease to the normal was observed thereafter. When X-irradiation alone was applied, the liver NP-SH value was lower than the normal at 60 minutes post-irradiation and thereafter. When Ginseng extract was injected immediately prior to X-irradiation, the liver NP-SH was lower than the normal throughout the experiment with the lowest value at 60 minutes. However, the combination of GSH and X-irradiation produced higher than the normal values throughout the entire experiment. 3) The liver NP-SS value was most significantly elevated at 30 minutes after the injection of GSH, hut the recovery to the normal was observed thereafter. The injection of Ginseng extract produced slightly higher liver NP-SS values at 30 and 60 minutes, but the value at 120 minutes was similar to the normal. The single application of X-irradiation resulted in the lower then normal liver NP-SS values throughout the entire experiment. When GSH was injected price to X-irradiation, the liver NP-SS values were higher than the normal at 30 and 60 minutes followed b the recovery to the normal at 120 minutes. The combination of Ginseng extract and X-irradiation showed generally lower liver NP-SS values throughout the experiment. 4) The blood NP-SH showed the higher than the normal values in all the experimental groups except when GSH was injected prior to X-irradiation alone produced e significantly elevated blood NP-SS value at 30 minutes post-irradiation.

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