• Title/Summary/Keyword: SCK tumors

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Improving Oxygenation in the Murine Tumors by a perfluorochemical Emulsion (Fluosl-DA $20\%$ (Carbogen 흡입하에서 Fluosol-DA 20%의 투여가 이식동물 종양의 산소분압에 미치는 영향)

  • Lee Intae;Kim Gwi E.;Song Chang W.
    • Radiation Oncology Journal
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    • v.8 no.1
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    • pp.1-6
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    • 1990
  • In the present study, a perfluorchemical emulsion (Fluosol-DA $20\%$) did not alter $D_o\;and\;D_q$ values on cell survival curve, indicating that the lack of a direct effect of Fluosol-DA $20\%$ on cellular radiosensitivity in vitro. The effect of Fluosol-DA $20\%$ injection in combination with carbogen breathing was determined on the hypoxic cell fraction in SCK tumors. The hypoxic cell fraction in control SCK tumors was 0.39. This value decreased to 0.05 when the mice were i.v. injected with 12 ml/kg of Fluosol-DA $20\%$ in a carbogen atomosphere. The measured mean and median $PO_2$ values with a microelectrode in the control tumors was 9 mmHg and 4 mmHg, respectively. The treatment of the SCK tumors in the host mice with injected Fluosol-DA $20\%$ in combination with carbogen breathing increased the mean and median $PO_2$ values to 67 mmHg and 62 mmHg, respectively. Using carbogen breathing alone caused a moderate increase of tumor $PO_2$. But Fluosol-DA $20\%$ injection alone caused little change $PO_2$ in the tumor. It was concluded that the combination of Fluosol-DA injection and carbogen breathing is an effective means to improve oxygenation of tumors.

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Cytocidal Effect of Hyperthermia on Tumor Cells in vivo (In vivo 腫瘍細胞에 미치는 溫熱處理의 細胞致死效果)

  • Kang, Man-Sik;Rhee, Jeong-Gile;Seymour H. Levitt;Chang W. Song
    • The Korean Journal of Zoology
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    • v.24 no.2
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    • pp.59-64
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    • 1981
  • The cytocidal effect of hyperthermia on subcutaneous SCK tumor cells growing in vivo was significantly greater than that on the SCK tumor cells cultured in vitro. When the tumors were left in situ after heating, the cell survival progressively decreased, and the functional intratumor vascular volume also decreased. The radiation survival curves of tumor cells heated either 30 min before or after X-irradiation in vivo were steeper than the radiation survival curves of unheated control tumors. It is concluded that the cytocidal effect of hyperthermia on tumor cells in vivo is greater than that in vitro due possibly to the intratumor environment.

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Antitumor effect of Ganoderma lucidum : Cytotoxicity and Tumor Growth Delayt(1) (영지버섯의 항암효과 :세포독성과 종양의 성장억제에 미치는 영향(1))

  • Kwon, Hyoung-Cheol;Kim, Jung-Soo;Choi, Ki-Chul;Choi, Dong-Seong;Song, Chang-Won
    • Radiation Oncology Journal
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    • v.12 no.3
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    • pp.301-305
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    • 1994
  • Purpose :. To investigate the effect of aqueous extract of Ganoderma lucidum(G.I.) on the surival of tumor cells in vitro and on the growth of tumors in vivo. Materials and Methods : Dried G.I. was made into powder, extracted with distilled water, filtered and diluted from a maximum concentration of 100 mg/ml in sequence. The cytotoxicity of G.I, in vitro was evaluated from its ability to reduce the clonogenicity of SCK tumor cells. For the tumor growth delay study, about $2{\times}10^5$$ of SCK tumor cells were subcutaneously inoculated in the legs of A/J mice. The first experimental group of mice were injected i.p. with 0.2ml of 250 mg/kg of G.I. from the first day after tomor inoculation for 10 days. The second experimental group of mice were injected i.p. with 0.2ml of 250 mg/kg of G.I. either once a day for 10 days or twice a day for 5 days beginining from the 7th day after tumor inoculation Results : 1. Cytotoxicity in vitro;survival fraction, as judged from the curve, at G.I. concentration of 0.5, 1,5, 10, 25, 50 and 100 mg/ml were 1.0, $0.74{\pm}0.03$, $0.18{\pm}0.03$, $0.15{\pm}0.02$, $0.006{\pm}0.002$, 0.015 and 0.0015, respectively. 2. Tumor growth delay in vivo; a) the time required for the mean tumor volume to grow to $1,000mm^3$ was 11 days in the control group and 14 days in the experimental group. b) the time required for tumor volume to increase 4 times was 11 days in the control group while it was 10.5 and 12 days in the groups injected with G.I. once a day and twice a day from the 7th day after tumor inoculation respectively. Conclusion : Aqueous extracts of G.I. showed a marked cytotoxicity on the SCK mammary cells in vitro. Tumor growth delay was statistically signiricant when G.I. in-jection was started soon after tumor inoculation, but it was not significant when injection was started after the tumors were firmly established.

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Studies on the Biological Action of Hyperthermia on Tumor Cell Mortality (1) (腫瘍細胞가 致死에 미치는 溫熱處理의 生物學的 作用에 관한 硏究(1))

  • Kang, Man-Sik;Lee, Chung-Choo
    • The Korean Journal of Zoology
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    • v.26 no.2
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    • pp.69-81
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    • 1983
  • The biological effect of hyperthermia on the SCK tumor cells in vitro were analyzed in several respects. A comparision of the survival curve of SCK tumor cells in vitro and in vivo following hyperthermia demonstrated that the cytocidal effect of heating is far greater on the cells in vivo than on the cells in vitro. The pH change in the SCK tumor upon being heated at $43.5^\\circC$ started out at 7.05 and increased to 7.18 during the first 7 min of heating and then rapidly declined to 6.67 by 30 min. Contrary to the decrease in pH in the heated tumors, the pH in the muscle increased significantly when heated to $43.5-45.0^\\circC$. Following hyperthermia at $43.5^\\circC$ for 30 min, a maximum increase in the lactic acid content in the tumor and liver was observed at 1 hr and 3 hr, respectively. The increase in the tumor was followed by a gradual decrease below the control level, whereas the increase in the liver was maintained at quite a steady level for 24 hr. The hyperthermia at $43.5^\\circC$ for 1 hr exhibited a general tendency that high molecular proteins decrease markedly, whereas most of low molecular proteins increase. The most prominent change was that the heat shock protein 70K increased significantly along with other low molecular proteins in heat shocked cells.

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