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Original

Cell biological effects of hyperthermia alone or combined with radiation or drugs: A short introduction to newcomers in the field

Pages 191-196 | Received 25 Oct 2005, Accepted 14 Dec 2005, Published online: 09 Jul 2009

References

  • Dewey WC. Arrhenius relationships from the molecule and cell to the clinic. International Journal of Hyperthermia 1994; 10: 457–483
  • Lepock JR, Frey HE, Ritchie KP. Protein denaturation in intact hepatocytes and isolated cellular organelles during heat shock. Journal of Cell Biology 1993; 122: 1267–1276
  • Lepock JR. Role of nuclear protein denaturation and aggregation in thermal radiosensitization. International Journal of Hyperthermia 2004; 20: 115–130
  • Spiro IJ, Denman DL, Dewey WC. Effect of hyperthermia on CHO DNA polymerases α and β. Radiation Research 1982; 89: 134–149
  • Michels AA, Kanon B, Konings AWT, Ohtsuka K, Bensaude O, Kampinga HH. HSP70 and HSP40 chaperone activities in the cytoplasm and the nucleus of mammalian cells. Journal of Biological Chemistry 1997; 272: 33283–33289
  • Lepock JR, Frey HE, Heynen ML, Senisterra GA, Warters RL. The nuclear matrix is a thermolabile cellular structure. Cell Stress Chaperones 2001; 6: 136–147
  • Michels AA, Nguyen VT, Konings AW, Kampinga HH, Bensaude O. Thermostability of a nuclear-targeted luciferase expressed in mammalian cells - Destabilizing influence of the intranuclear microenvironment. European Journal of Biochemistry 1995; 234: 382–389
  • Kampinga HH, Turkel-Uygur N, Roti Roti JL, Konings AWT. The relationship of increased nuclear protein content induced by hyperthermia to killing of HeLa S3 cells. Radiation Research 1989; 117: 511–522
  • Roti Roti JL, Laszlo A. The effects of hyperthermia on cellular macromolecules. Thermal effects on cells and tissues, M Urano, E Douple. VSP, Utrecht 1988; 13–98
  • Morimoto RI. Regulation of the heat shock transcriptional response: cross talk between a family of heat shock factors, molecular chaperones, and negative regulators. Genes Development 1998; 12: 3788–3796
  • Ellis RJ, Van der Vies SM. Molecular chaperones. Annual Reviews in Biochemistry 1991; 60: 321–347
  • Li GC, Li L, Liu Y-K, Mak JY, Chen L, Lee WMF. Thermal response of rat fibroblasts stably transfected with the human 70-kDa heat shock protein-encoding gene. Proceedings of the National Academy of Sciences (USA) 1991; 88: 1681–1685
  • Stege GJJ, Li GC, Li L, Kampinga HH, Konings AWT. On the role of HSP72 in heat-induced intranuclear protein aggregation. International Journal of Hyperthermia 1994; 10: 659–674
  • Nollen EA, Brunsting JF, Roelofsen H, Weber LA, Kampinga HH. In vivo chaperone activity of heat shock protein 70 and thermotolerance. Molecular Cell Biology 1999; 19: 2069–2079
  • Kampinga HH, Dikomey E. Hyperthermic radiosensitization: mode of action and clinical relevance. International Journal of Radiation Biology 2001; 77: 399–408
  • Dewey WC, Sapareto SA. Radiosensitization by hyperthermia occurs through an increase in chromosomal aberrations. Cancer therapy by hyperthermia and radiation, G Streffer. Urban & Schwarzenberg, Munich 1978; 149–150
  • Kampinga HH, Dynlacht JR, Dikomey E. Mechansim of radiosensitization by hyperthermia (≥43°C) as derived from studies with DNA repair defective mutant cell lines. International Journal of Hyperthermia 2004; 20: 131–139
  • Dewhirst MW, Jones E, Samulski T, Vujaskovic Z, Li C, Proznitz L. Hyperthermia. Cancer Medicine6th ed., DW Kufe, RE Polock, RR Weichselbaum, RC Bast, TS Gansler, JF Holland, E Frei. BC Decker, Inc., Hamilton 2003; 623–636
  • Dahl O. Interaction of heat and drugs in vitro and in vivo. Thermoradiotherapy and thermochemotherapy. Vol. 1, Biology, physiology and physics, MH Seegenschmiedt, P Fessenden, CC Vernon. Springer-Verlag, Berlin-HeidelbergGermany 1995; 103–121
  • Hettinga JVE, Konings ATW, Kampinga HH. Reduction of cisplatin resistance by hyperthermia: a review. International Journal of Hyperthermia 1997; 13: 439–457
  • Hettinga JVE, Lemstra W, Meijer C, Mulder NH, Konings AWT, de EGE, Kampinga HH. Hyperthermic potentiation of cisplatin toxicity in a human small cell lung carcinoma cell line and a cisplatin resistant subline. International Journal of Hyperthermia 1994; 10: 795–806

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