11
Views
1
CrossRef citations to date
0
Altmetric
Original Article

The development and magnitude of thermotolerance during chronic hyperthermia in murine bone marrow granulocyte-macrophage progenitors: I

, , &
Pages 87-95 | Received 30 Dec 1994, Accepted 01 Apr 1995, Published online: 09 Jul 2009

References

  • Bauer K. D., HenleK J. Arrhenius analysis of heat survival curves from normal and thermotolerant CHO cells. Radiation Research 1979; 78: 251–263
  • Blackburn M. J., Wheldon T. E., Field S. B., Goldman J. M. The sensitivity to hyperthermia of human granulocyte/macrophage progenitor cells (CFU-GM) derived from blood or marrow of normal subjects and patients with chronic granulocytic leukaemia. British Journal of Cancer 1984; 50: 745–751
  • Da W.-M, Liu Y., Wei S.-N. Studies on the sensitivity of human GM-CFU and L-CFU to hyperthermic killing in vitro. Leukemia Research 1988; 13: 217–220
  • Elkon D., Sabio H., Pinizzotto M., Sigurdssor M., Baker D. B. Effect of hyperthermia on murine myeloid precursors. Cancer 1984; 54: 1993–1996
  • Field S. B., Morris C. C. Experimental studies of thermotolerance in vivo I. The baby rat tail model. International Journal of Hyperthermia 1985; 1: 235–246
  • Flentje M., Flentje D., Sapareto S. A. Differential effect of hyperthermia on murine bone marrow normal colony-forming units and AKR and L1210 leukemia stem cells. Cancer Research 1984; 44: 1761–1766
  • Gerner E. W., Schneider M. J. Induced thermal resistance in HeLa cells. Nature 1975; 256: 500–502
  • Henle K. J., Karamuz J. E., Leeper D. B. Induction of thermotolerance in Chinese hamster ovary cells by high (45†) or low (40†) hyperthermia. Cancer Research 1978; 38: 570–574
  • Henle K. J., Dethlefsen L. A. Heat fractionation and thermotolerance: a review. Cancer Research 1978; 38: 1843–1851
  • Henle K. J., Leeper D. B. Combination of hyperthermia (40†, 45†C) with radiation. Radiology 1976; 121: 451–454
  • Hume S. P., Marigold J. C. C. Transient, heatinduced thermal resistance in the small intestine of mouse. Radiation Research 1980; 82: 526–535
  • Kurland J. I. Granulocyte-monocyte progenitor cells. Methods in hematology hematopoieses, D. W. Golde, C. Livingstone. Melbourne, New York 1984; 109–110
  • Law M. P. Induced thermal resistance in the mouse ear: the relationship between heating time and temperature. International Journal of Radiation Oncology, Biology and Physics 1979; 35: 481–85
  • Metcalf D. Haemopoietic colonies. Recent Results in Cancer Research. Springer-Verlag, New York 1977; 6–20
  • Milligan A. J., Metz J. A., Leeper D. B. Effect of intestinal hyperthermia in the Chinese hamster. International Journal of Radiation Oncology, Biology and Physics 1984; 10: 259–263
  • Mivechi N. F., Li G. C. Thermotolerance and profile of protein synthesis in murine bone marrow cells after heat shock. Cancer Research 1985; 45: 3843–3849
  • Mivechi N. F., Li G. C. Lack of development of thermotolerance in early progenitors of murine bone marrow cells. Cancer Research 1986; 46: 198–202
  • Moriyama Y., Nikkuni K., Saito H., Aoki A., Kishi K., Takahashi M., Shibata A. Effect of hyperthermia on both primary proliferation and self-renewal of human leukemic progenitor cells in vitro; its application to in vitro purging. Leukemia 1991; 4: 332–335
  • Murphy P. B., Richman C. M. Normal and malignant human myeloid progenitors differ in their sensitivity to hyperthermia. Experimental Hematology 1989; 17: 1105–1110
  • Nielsen O. S., Henle K. J., Overgaard J. Arrhenius analysis of survival curves from thermotolerant and step-down heated L1A2 cells in vitro. Radiation Research 1982; 91: 468–82
  • O'Hara M. D., Arnold S B., Rowley R., Leeper D. B. The influence of limb restraint on the thermal response of bone marrow CFU-6m heated in situ. International Journal of Hyperthermia 1989; 5: 589–601
  • O'Hara M. D., Xiong Q. B., Boyer J. W., Leeper D. B. Intrinsic thermal response, thermotolerance development and stepdown heating in murine bone marrow CFU-GM. International Journal of Hyperthermia 1992; 8: 451–461
  • O'Hara M. D., Pollard M. P., Xiong Q. B., Leeper D. B. The development of thermotolerance in bone marrow CFU-S during chronic heating. Experimental Hematology 1991; 19: 878–881
  • O'Hara M. D., Rowley R., Arnold S. B., Leeper D. B. Response of murine bone marrow granulocyte-macrophage colony-forming units to hyperthermia in situ. Radiation Research 1990; 112: 149–154
  • Okamoto S., Olsen A. C., Berdel W. E., Vogler W. R. Purging of acute myeloid leukemic cells by either lipids and hyperthermia. Blood 1988; 72: 1777–1783
  • Prionas S. D., Taylor M. A., Fajardo L. F., Kelly N. I., Nelsen T. S. Thermal sensitivity to single and double heat treatments in normal canine liver. Cancer Research 1985; 45: 4791–4797
  • Robins H. I., Steeves P. A., Schmitt C. L., Peterson C., Martin P. A. A hyperthermia study of differential sensitivity and thermotolerance in AKR murine leukemia and normal bone marrow cells. International Journal of Radiation Oncology, Biology and Physics 1988; 14: 979–982
  • Santos G. W., Yeager A. M., Jones R. J. Autologous bone marrow transplantation. Annual Review of Medicine 1989; 44: 99–112
  • Sapareto S. A., Hopwood L. E., Dewey W. C., Raju M. R., Gray J. W. Effects of hyperthermia on survival and progression of Chinese hamster ovary cells. Cancer Research 1978; 38: 393–400
  • Sheridan J. W., Metcalf D. A low molecular weight factor in lung-conditioned medium stimulating granulocyte and monocyte colony formation in vitro. Journal of Cell Physiology 1973; 81: 11–24
  • Stanley E. R., Heard P. M. Factors regulating macrophage production and growth: purification and some properties of the colony stimulating factor from medium conditioned by mouse L-cells. Journal of Biological Chemistry 1977; 258: 4305–4312
  • Symonds R. P., Wheldon T. E., Clarke B., Bailey G. A comparison of the response to hyperthemia of murine haemopoietic stem cells (CFU-S) and L1210 leukemia cells: enhanced killing of leukemic cells in presence of normal marrow cells. British Journal of Cancer 1981; 44: 682–691
  • Urano M., Kahn J. Effect of 42†C hyperthermia on murine normal and tumor tissues. Cancer Research 1985; 45: 2527–2532
  • Van Zant G., Flentje D., Flentje M. The effect of hyperthermia on hemopoietic progenitor cells of the mouse. Radiation Research 1983; 95: 142–149

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.