8
Views
8
CrossRef citations to date
0
Altmetric
Original Article

Repair of Radiation-induced Chromatid Aberrations: Relationship to G2 Arrest in CHO Cells

Pages 489-498 | Received 06 Sep 1989, Accepted 23 Mar 1990, Published online: 03 Jul 2009

References

  • Busse P.M., Bose S.K., Jones R.W., Tolmach L.J. The action of caffeine on X-irradiated HeLa cells. III. Enhancement of X-ray-induced killing during G2 arrest. Radiation Research 1978; 76: 292–307
  • Cornforth M.N., Bedford J.S. X-ray-induced breakage and rejoining of human interphase chromosomes. Science 1983; 222: 1141–1143
  • Dewey W.C., Highfield D. G2 block in Chinese hamster cells induced by X-irradiation, hyperthermia, cycloheximide or actinomycin D. Radiation Research 1976; 65: 511–528
  • Geard C. Chromosomal aberrations and delays in cell progression induced by X-rays. Environmental Mutagenesis 1982; 5: 319–328
  • Grinfeld S., Jacquet P. G2 arrest in mouse zygotes after X-irradiation: reversion by caffeine and influence of chromosome abnormalities. International Journal of Radiation Biology 1988; 54: 257–268
  • Hieber L., Lucke-Huhle C. PCC technique reveals severe chromatin lesions and repair in G2-arrested cells after alpha irradiation. Experimental Cell Research 1983; 144: 57–62
  • Hittleman W.N., Pollard M. A comparison of the DNA and chromosome repair kinetics after γ-irradiation. Radiation Research 1982; 92: 497–509
  • Hittleman W.N., Rao P.N. Premature chromosome condensation. I. Visualization of X-ray-induced chromosome damage in interphase cells. Mutation Research 1974; 23: 251–258
  • Kimler B.F., Leeper D.B., Schneiderman M.H. Radiation-induced division delay in Chinese hamster ovary fibroblast and carcinoma cells: dose effect and ploidy. Radiation Research 1981; 74: 430–438
  • Leeper D.B. (1975) The Cell Cycle in Malignancy and Immunity. Radiation-induced division delay in CHO cells: repair kinetics. Proceedings of the 13th Annual Hanford Biology Symposium, Richland, WA, 1973. USERDA
  • Lucke-Huhle C. Alpha-irradiation-induced G2 delay: a period of cell recovery. Radiation Research 1982; 89: 298–308
  • Lucke-Huhle C., Hieber L., Wegner R-D. Caffeine-mediated release of alpha-radiation-induced G2 arrest increases the yield of chromosome aberrations. International Journal of Radiation Biology 1983; 43: 123–132
  • Painter R.B., Young B.R. Radiosensitivity in ataxia telangiectasia: a new explanation. Proceedings of the National Academy of Sciences (USA) 1981; 77: 7315–7317
  • Rao P. The molecular basis of drug-induced G2 arrest in mammalian cells. Molecular and Cellular Biochemistry 1980; 29: 47–57
  • Rowley R. Is G2-arrest an active cellular response to irradiation?. International Journal of Radiation Biology 1985; 48: 811–820
  • Rowley R., Egger M.J. Method for probing cells in radiation-induced G2-arrest: demonstration of potentially lethal damage repair. Cell and Tissue Kinetics 1988; 21: 395–403
  • Rowley R., Kort L. The effect of modulators of radiation-induced G2 arrest on the repair of radiation-induced DNA damage detectable by neutral elution. International Journal of Radiation Biology 1988; 54: 749–759
  • Rowley R., Leeper D.B. Cell cycle age dependence for radiation-induced G2-arrest: evidence for time dependent repair. Radiation Research 1985; 103: 326–336
  • Rowley R., Martin J.H., Leeper D.B. The effect of poly(adenosinediphosphoribose) synthesis inhibitors and structurally related compounds on radiation-induced G2-arrest. Radiation Research 1988; 113: 58–70
  • Savage J.R.K. Classification and relationships of induced chromosomal structural changes. Journal of Medical Genetics 1975; 12: 103–122
  • Schneiderman M.H., Hofer K.G. The target for radiation-induced division delay. Radiation Research 1980; 84: 462–476
  • Schneiderman M.H.S., Dewey W.C., Leeper D.B., Nagasawa H. Use of the mitotic cell selection procedure for cell cycle analysis. Experimental Cell Research 1972; 74: 430–438
  • Terasima T., Tolmach L.J. Growth and nucleic acid synthesis in synchronously dividing populations of HeLa cells. Experimental Cell Research 1963; 30: 344–362
  • Tobey R.A., Anderson E.C., Petersen D.F. Properties of mitotic cells prepared by mechanically shaking monolayer cultures of Chinese hamster cells. Journal of Cell Physiology 1967; 70: 63–68
  • Weibezahn K.F., Coquerelle T.M. Relationship between double strand break rejoining and G2 block formation in V79 cells. Radiation and Environmental Biophysics 1986; 25: 13–21
  • Weibezahn K.F., Lohrer H., Herrlich P. Double-strand break repair and G2 block in Chinese hamster ovary cells and their radiosensitive mutants. Mutation Research 1985; 145: 177–183
  • Weinert T.A., Hartwell L.H. The RAD9 gene controls the cell cycle response to DNA damage in Saccharomyces cerevisiae. Science 1988; 241: 317–322
  • Wlodek D., Hittleman W.N. The relationship of DNA and chromosome damage to survival of synchronized X-irradiated L5178Y cells: II. Repair. Radiation Research 1988; 115: 566–575
  • Zampetti-Boseller F., Scott D. Cell death, chromosome damage and mitotic delay in normal human, ataxia telangiectasia and retinoblastoma fibroblasts after X-irradiation. International Journal of Radiation Biology 1981; 39: 547–558

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.