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Research Article

Easy biodosimetry for high-dose radiation exposures using drug-induced, prematurely condensed chromosomes

Pages 441-446 | Published online: 03 Jul 2009

  • BARANOV, A., GALE, R. P., GUSKOVA, A., PIATKIN, E., SELIDOVKIN, G., MURAVYOVA, L., CHAMPLIN, R. E., DANILOVA, N., YEVSEEVA, L., PETROSYAN, L., PUSHKAREVA, S., KONCHALOVSKY, M., GORDEEVA, A., PROTASOVA, T ., REISNER, Y., MICKEY, M. R. and TERASAKI, P. I. 1989, Hone marrow transplantation after the Chernobyl nuclear accident. New England Journal of Medicine, 321, 205-212.
  • BROWN, J. M., EVANS. J. NV. mid KOVACS, M. S., 1993, Mechanism of chromosome exchange formation in human fibroblasts: from "chromosome painting'. Environmental and Molecular Mutagenesis, 22, 218 221.
  • Coco-MARTIN. J. M. and BEGG, A. C., 1997. Detection of radiation-induced chromosome aberrntions using fluorescence in situ hybridization in drug-induced premature chromosome condensations of tumour cell lines with different radiosensitivities. International Journal of Radiation Biology, 71, 265-273.
  • DURANTE., M., FURUSAWA, Y. and GOTOH, E., 1998. A simple method for simultaneous interphase metaphase chromosome analysis in biodosimetry. International Journal of Radiation Biology. 74, 457-462.
  • DURANTE, M., GEORGE, K. and YANG, T. C., 1996. Biological dosimetry by interphase chromosome {minting. Radiation Research, 145, 53-60.
  • DUTRILLAUX, B. and LEONARD, A., 1991, Technical improvements of the cytogenetical methods used for biological dosimetry in cases of a Chernobyl-like accident. In Treatment and Biological Dosimetry of Exposed Persons. Post Chemobyl Action, edited by K. Chaduick and G. Gerber (Luxembourg: CEC), pp. 3-12.
  • EVANS, J. W., CHANG, J. A., GIACCIA, A. J., PINKEL., D. and BROWN, J. M., 1991. The use of fluorescence in situ hybridisation combined with premature chromosome condensation for the identification of chromosome damage. British Journal of Cancer, 63, 517-521.
  • GHOSH, S., PAWELEIZ, N. and SCHROETER, D., 1992. Failure of kinetochore development mid mitotic spindle formation in okadaic acid-induced premature mitosis in Hela cells. Experimental Cell Research, 201, 535-540.
  • GOTOH, E. and ASAKAWA, Y., 1996. Detection mid evaluation of chromosomal aberrations induced by high doses of ?-irradiation using immunogold-silver painting of prematurely condensed chromosomes. International Journal of Radiation Biology, 70, 517-520.
  • GUO, X. W., T H' NG, J. P. H., SWANK, R. A., ANDERSON, H. J., TUDAN, C., BRADBURY, E. M. and ROBERGE, M. 1995, Chromosome condensation induced by fostriecin does not require p34ed kinnase activity and histone Hl hyperphosphorylation. but is associated with enhanced histone H2A and H3 phospholylation. The EMBO Journal. 14, 976-985.
  • HAYAIA, I., TABICHI, H., FURUKAWA, A., OKABE, N., YAMAMOTO, M. and SATO. K. 1992. Robot system for preparing lymphocyte chromosome, Journal of Radiation Research, 33 (Suppl), 231-241.
  • INTERNATIONAL, ATOMIC ENERGY AGENCY. 1986. Biological Dosimetry: Chromosome Aberration Analysis for Dose Assessment. Technical Report series no. 260 (Vienna: IAEA).
  • INTERNATIONAL, ATOMIC ENERGY AGENCY, 1990. The Radiological Accident in San Salvador (Yienna: IAEA).
  • INTERNATIONAL, ATOMIC ENERGY AGENCY, 1993. The Radiological Accident in Soreq (Yienna: IAEA).
  • INTERNATIONAL, ATOMIC ENERGY AGENCY, 1996. The Radiological Accident ill the Irradiation Facility in Nesvizh (Vienna: IAEA).
  • ISHIDA, Y., FURUKAWA, Y., DECAPRIO, J. A., SAITO. M. and GRIFFIN, J. D., 1992. Treatment of myeloid leukemic: cells with the phosphatase inhibitor okadaic acid induces cell cycle arrest at either G1/S or G2/M depending on dose. Journal of Cellular Physiology, 150, 181-192.
  • KOVACS, M. S., EVANS, J. \V., JOHNSTONE, I. M. and BROWN, J. M., 1991. Radiation-induced damage, repair and exchange formation in different chromosomes of human fibroblasts determined by fluorescence in situ hybridization Radiation Research. 137, 31-43.
  • LLOYD, D. C., 1997. Chromosomal analysis to assess radiation dose. Stem Cells, 15 (Suppl 2), 195-201.
  • LLOYD, D. C., EDWARDS, A. A., NATARAJAN, A. T. and DARROUDI, F., 1991. Biological dosimetry applied to in vitro simulated partial body irradiation. In Treatment and Biological Dosimetry of Exposed Persons. Post Chemobyl Action. edited by K. Chaduick and G. Gerber 'Luxembourg: CEC;. pp. pp. 51-80.
  • NORMAN, A. and SASAKI, M. S., 1966, Chromosome-exchange aberraitions in human lymphocytes. International Journal of Radiation Biology, 11, 321-328.
  • PANDITA, T. K., GREGOIRE, V., DHINGRA, K. and HITTELMAN, W. N., 1991. Effect of chromosome size on aberration levels caused by gramma radiation as detected by fluorescence in situ hybridization. Cytogenetics and Cell Genetics, 67, 91-101.
  • PANTELIAS, G. E., ILLAKIS, G. E., SAMBANI, C. D. and POLITIS, G., 1993. Biological dosimetry of absorbed radiation by C-banding of interphase chromosomes in peripheral blood lymphocytes. International Journal of Radiation Biology, 63, 349-354.
  • PANTELIAS, G. E. and MAILLIE, H. D., 1981. The use of peripheral blood mononuclear cell prematurely condensed chromosomes for biological dosimetry. Radiation Research. 99, 140-150.
  • STEINMANN, K. E., BELINSKY, G. S., LEE, D. and SCHLEGEL, R., 1991. Chemically induced premature mitosis: differential response in rodent and human cells and the relationships to cyclin 15 synthesis and p34ed /cyclin 15 complex formation. Proceedings, of the National Academy of Sciences, U.S.A. 88, 6843-6847.
  • TUCKER, J. D., MORGAN, W. F., AWA, A. A., BAUCHINGER, M., BLAKEY, D., CORNFORTH, M. N., LITTLEFIELD, L. G., NATRAJAN, A. T. and SHASSERRE, C. H)')."). A proposed system for scoring structural aberrations detected by chromosome painting. Cytogenetics, and Cell Genetics, 68, 211-221.
  • WU, H., DURANTE, M., GEORGWE, K., GOODWIN, E. H. and YANG, T. C., 1996, Rejoining and misrejoining of radiation-induced chromatin brenks. H. Biophysical Model. Radiation Research, 145, 281 288.
  • YAMASHITA, K., YASUDA, H., PINES, J., YASUMOTO, K., NISHITANI, H., OHTSUBO M., HUNTER, T., SUGIMURA, T. and NISHIMOTO, T., 1990, Okndaic acid. a potent inhibitor of type 1 and type 2A protein phosphninses. activates edc2/H1 kinnase and transiently induces n premature mitosis-like state in BHK21 cells. The EMBO Journal, 9, 4331-4338.

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