Relationship Between Tumour Oxygenation, Bioenergetic Status and Radiobiological Hypoxia in an Experimental Model

Authors

  • Marianne Nordsmark Danish Cancer Society, Department of Experimental Clinical Oncology, Aarhus, Denmark
  • Cai Grau Department of Oncology, Aarhus University, Hospital, Aarhus, Denmark
  • Michael R. Horsman Danish Cancer Society, Department of Experimental Clinical Oncology, Aarhus, Denmark
  • Hans Stookilde Jorgensen Centre for Magnetic Resonance, Aarhus, Denmark
  • Jens Overgaard Danish Cancer Society, Department of Experimental Clinical Oncology, Aarhus, Denmark

DOI:

https://doi.org/10.3109/02841869509093984

Abstract

Tumour oxygenation and bioenergetic status were measured in the same tumour and these results related to radiobiological hypoxia. A C3H mouse mammary carcinoma grown in the feet of CDF1 mice was used. Bioenergetic status was assessed by 31P MRS using a SISCO 7 Tesla magnet, oxygen measurements were done by a polarographic electrode and the hypoxic fraction was determined from direct analysis of the radiation dose-response data. During all examinations restrained, non-anaesthetized mice were allowed to breathe either 100% oxygen, carbogen, normal air, carbon monoxide (CO) at 75, 220, or 660 ppm or had blood flow occluded by clamping. Results showed a significant correlation between the radiobiological hypoxic fraction and % pO2 ≤5 mmHg under the different treatment conditions, whereas no correlation was found between beta nucleosidetriphosphate/inorganic phosphate (β-NTP/Pi) ratio and either the hypoxic fraction or the % of pO2 values ≤5 mmHg under the different treatment conditions. In conclusion, oxygen electrode measurements were sensitive to changes in tumour hypoxia whereas the bioenergetic status alone seemed to be a less precise measure of hypoxia in this tumour model. Furthermore, the present study demonstrated that tumour cells in vivo can actually maintain the bioenergetic status during a period of severe hypoxia.

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Published

1995-01-01

How to Cite

Nordsmark, M., Grau, C., Horsman, M. R., Stookilde Jorgensen, H., & Overgaard, J. (1995). Relationship Between Tumour Oxygenation, Bioenergetic Status and Radiobiological Hypoxia in an Experimental Model. Acta Oncologica, 34(3), 329–334. https://doi.org/10.3109/02841869509093984