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Genotoxic effects of radiation and hyperthermia in linear mice with different radiation sensitivity

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Abstract

The features of the repair processes of DNA damage and their implementation at the chromosome level in marrow cells of experimental animals (mices of the CBA and C3H lines) with different radiation sensitivity were studied. It is shown that the radiomodifying efficiency of moderate hyperthermia (HT) is higher for animals of the radioresyst line. At the same time, it was possible to observe intensive elimination of chromosomal damages, the level of which in later observations almost was not distinguished from the control values. For mices of more radiosensitive lines, a long-term potentiation damaging action of irradiation at the chromosomal level was observed as an additional HT effect.

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References

  1. Falk, M.H. and Issels, R.D., Hyperthermia in Oncology, Int. J. Hyperthermia, 2001, vol. 17, no. 1, pp. 1–18.

    Article  PubMed  CAS  Google Scholar 

  2. Sneed, P.K. and Phillips, T.L., Combining Hyperthermia and Radiation: How Beneficial? Oncology, 1991, no. 3, pp. 99–108.

  3. Seno, J.D. and Dynlacht, J.R., Intracellular Redistribution and Modification of Proteins of the Mre11/Rad50/Nbs1 DNA Repair Complex Following Irradiation and Heat-Shock, J. Cell Physiol., 2004, no. 199, pp. 157–170.

  4. Hildebrandt, B., Wust, P., Ahlers, O., Dieing, A., Sreenivasa, G., Kerner, T., Felix, R., and Riess, H., The Cellular and Molecular Basis of Hyperthermia, Crit. Rev. Oncol. Hematol., 2002, vol. 43, no. 1, pp. 33–56.

    Article  PubMed  Google Scholar 

  5. El-Awady, R.A., Dikomey, E., and Dahm-Daphi, J., Heat Effects on DNA Repair after Ionising Radiation: Hyperthermia Commonly Increases the Number of Non-Repaired Double-Strand Breaks and Structural Rearrangements, Nucl. Acids Res., 2001, vol. 29, no. 9, pp. 1960–1966.

    Article  PubMed  CAS  Google Scholar 

  6. Takahashi, A., Matsumoto, H., Nagayama, K., Kitano, M., Hirose, S., Tanaka, H., Mori, E., Yamakawa, N., Yasumoto, J., Yuki, K., Ohnishi, K., and Ohnishi, T., Evidence for the Involvement of Double-Strand Breaks in Heat-Induced Cell Killing, Cancer Res., 2004, no. 64, pp. 8839–8845.

  7. Kampinga, H.H. and Dikomey, E., Hyperthermic Radio-Sensitization: Mode of Action and Clinical Relevance, Int. J. Radiat. Biol., 2001, no. 77, pp. 399–408.

  8. Raaphorst, G.P., LeBlanc, J.M., Li, L.F., and Yang, D.P., Heperthermia Responses in Cell Lines with Normal and Deficient DNA Repairs Systems, J. Thermal Biol., 2005, no. 30, pp. 478–484.

  9. Malyutina, Ya.V. and Kabakov, A.E., Preradiation Induction of Heat Shock Proteins Increases Cell Radioresistance, Radiats. Biol. Radioekol., 2007, vol. 47, no. 3, pp. 273–279.

    CAS  Google Scholar 

  10. Fortin, A., Raybaud-Diogene, H., and Tetu, B., Over-Expression of the 27 kDa Heat Shock Protein Is Associated with Thermoresistance and Chemo-Resistance but Not with Radioresistance, Int. J. Radiat. Oncol. Biol. Phys., 2000, vol. 46, no. 5, pp. 1259–1266.

    Article  PubMed  CAS  Google Scholar 

  11. Ekedahl, J., Joseph, B., and Marchetti, P., Heat Shock Protein 72 Does Not Modulate Ionizing Radiation-Induced Apoptosis in U1810 Non-Small Cell Lung Carcinoma Cells, Cancer Biol. Ther., 2003, vol. 2, no. 6, pp. 663–669.

    PubMed  CAS  Google Scholar 

  12. Galloway, S.M., Aardema, M.J., Ishidate, M.Jr., Ivett, J.L., Kirkland, D.J., Morita, T., Mosesso, P., and Sofumi, T., Report from Working Group on in in vitro Tests for Chromosomal Aberrations, Mutat. Res., 1994, vol. 312, pp. 241–261.

    Article  PubMed  CAS  Google Scholar 

  13. Petin, V.G. and Komarov, V.P., Kolichestvennoe opisanie modifikatsii radiochuvstvitel’nosti (Quantitative Description of Radiosensitivity Modification), Moscow: Energoatomizdat, 1989.

    Google Scholar 

  14. Olive, P.L., The Comet Assay: An Overview of Techniques, Meth. Mol. Biol., 2001, no. 203, pp. 179–194.

  15. Hartmann, A., Agurell, E., Beevers, C., Brendler-Schwaab, S., Burlinson, B., Clay, P., Collins, A., Smith, A., Speit, G., Thybaud, V., and Tice, R.R., Recommendations for Conducting the in vivo Alkaline Comet Assay, Mutagenesis, 2003, vol. 18, no. 1, pp. 45–51.

    Article  PubMed  CAS  Google Scholar 

  16. Singh, N.P., McCoy, M.T., Tice, R.R., and Schneider, E.L., A Simple Technique for Quantitation of Low Levels of DNA Damage in Individual Cells, Exp. Cell Res., 1998, no. 175, pp. 184–191.

  17. Bond, V.P., Radiation Mortality in Different Mammalian Species, in Comparative Cellular and Species Radiosensitivity, Bond, V.P. and Sugahara, T., Eds., Tokyo, 1996, pp. 1–18.

  18. Grigorkina, E.B., Biological Characteristics and Environmental Factors That Determine the Radioresistance of Small Mammals, Radiats. Biol. Radioekol., 2004, vol. 44, no. 3, pp. 245–250.

    CAS  Google Scholar 

  19. Albertini, R.J., Anderson, D., Douglas, G.R., Hagmar, L., Hemminki, K., Merlo, F., Natarajan, A.T., Norppa, H., Shuker, D.E., Tice, R., Waters, M.D., and Aitio, A., IPCS Guidliness for the Monitoring of Genotoxic Effects of Carcinogens in Humans, Mutat. Res., 2000, vol. 463, pp. 111–172.

    Article  PubMed  CAS  Google Scholar 

  20. OECD TG No. 475: Mammalian Bone Marrow Chromosome Aberration Test. OECD Guidelines for the Testing of Chemicals, Section 4: Health Effects, Paris: OECD Publishing, 1998.

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Correspondence to N. M. Ryabchenko.

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Original Ukrainian Text © N.M. Ryabchenko, N.K. Rodionova, I.S. Sychevska, I.I. Muzalev, V.M. Mykhailenko, M.O. Druzhina, 2013, published in Tsitologiya i Genetika, 2013, Vol. 47, No. 1, pp. 50–55.

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Ryabchenko, N.M., Rodionova, N.K., Sychevska, I.S. et al. Genotoxic effects of radiation and hyperthermia in linear mice with different radiation sensitivity. Cytol. Genet. 47, 39–43 (2013). https://doi.org/10.3103/S0095452713010088

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