A COMPARISON OF HEAT SENSITIVITY, RADIOSENSITIVITY AND PLDR IN 4 HUMAN-MELANOMA CELL-LINES

被引:13
作者
BICHAY, TJ
FEELEY, MM
RAAPHORST, GP
机构
[1] Department of Radiology, University of Ottawa
[2] Medical Biophysics Laboratory, Ottawa Regional Cancer Centre, Ottawa, ON, K1Y4K7
关键词
DNA POLYMERASE; HEAT SENSITIVITY; MELANOMA RADIOSENSITIVITY; REPAIR OF POTENTIALLY LETHAL DAMAGE;
D O I
10.1097/00008390-199205000-00009
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Comparison of the heat sensitivity and radiosensitivity of four human melanoma cell lines in culture revealed a large variation in sensitivity amongst the four cell lines. Three of the four cell lines had large shoulders on the survival curves when exposed to hyperthermia (44-degrees-C or 45-degrees-C). These three cell lines also had demonstrable shoulders on the acute radiation dose response curves. The most radiosensitive cell line did not show a shoulder region in the heat or radiation survival curves (HT-144, D(q)=0.2 Gy). Despite this consistency in the presence or absence of shoulder, there was no correlation between heat and radiation sensitivity in the four melanoma cell lines. Furthermore, regardless of radiosensitivity, all four lines studied showed competent repair of potentially lethal damage. The recovery ratios at a surviving fraction of 0.001 ranged from 5.7 to 7.6. All four lines had a similar cell cycle distribution at the time of treatment, hence the variation observed in the response of these four lines to radiation and heat was not due to differences in cell cycle kinetics. Preliminary results of DNA polymerase-alpha and -beta activities do not demonstrate a clear correlation between cellular levels of these two enzymes and radiosensitivity.
引用
收藏
页码:63 / 69
页数:7
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  • [1] Lobo P.A., Liebner E.J., Chao J.J.H., Et al., Radiotherapy in the management of malignant melanoma, Int J Radiat Oncol Biol Phys, 7, pp. 21-26, (1981)
  • [2] Overgaard J., Radiation treatment of malignant melanoma, Int J Radiat Oncol Biol Phys, 6, pp. 41-44, (1980)
  • [3] Dewey D.L., The radiosensitivity of melanoma cells in culture, Br J Radiol, 44, pp. 816-817, (1971)
  • [4] Barranco S.C., Romsdahl M.M., Humphrey R.M., The radiation response of human malignant melanoma cells grown in vitro, Cancer Res, 31, pp. 830-833, (1971)
  • [5] Rofstad E.K., Brustad T., Radiation response in vitro of cells from five human malignant melanoma xenografts, Int J Radiat Biol, 40, pp. 677-680
  • [6] Malaise E.P., Weininger J., Joly A.M., Et al., Measurements in vitro with three cell lines derived from melanoma, Cell Survival after Low Doses of Radiation: Theoretical and Clinical Implications, (1975)
  • [7] Weichselbaum R.R., Nove J., Little J.B., X-ray sensitivity of human tumor cells in vitro, Int J Radiat Oncol Biol Phys, 6, pp. 437-440, (1980)
  • [8] Bichay T.J., Feeley M.M., Heller D.P., Et al., Radiation and heat sensitivity of human melanoma cells: Relationship to α and β polymerase, Proc Radiat Res Soc, (1990)
  • [9] Rofstad E.K., Brustad T., Effect of hyperthermia on human melanoma cells heated either as solid tumors in athymic nude mice or in vitro, Cancer, 50, pp. 1304-1308, (1982)
  • [10] Rofstad E.K., Brustad T., Primary and secondary cell death in human melanoma xenografts following hyperthermia treatment, Cancer Res, 46, pp. 355-361, (1986)