Membrane Fatty Acid Composition and Radiation Response of Bp8 Sarcoma Ascites Tumour Cells
- 1 January 1987
- journal article
- research article
- Published by Taylor & Francis in International Journal of Radiation Biology
- Vol. 52 (4) , 615-626
- https://doi.org/10.1080/09553008714552101
Abstract
The radiation response of Bp8 sarcoma ascites tumour cells with differences in membrane fatty acid composition was studied. The cells were grown i.p. in NMRI mice and their membrane composition was changed in response to different dietary regimes provided to the host animals. Three diets that differed only with regard to the source of fatty acids, i.e. sunflower seed oil, coconut oil, hydrogenated large and a fourth commercially available standard laboratory diet, were given to the mice for different lengths of time, before implantation of the tumour cells. The time course for the dietary regimes to induce different levels of changes in membrane fatty acid composition of the ascites cells was established. The evaluation of the radiosensitivity of cells with different membrane fatty acid composition was done in vitro. Cell survival, expressed by DO, varied only insignificantly between the four dietary grouips, while their repair capacity (Dq and n) differed significantly. Increased repair capacity was observed for ascites cells grown in animals on diets enriched in sunflower seed oil and coconut oil, compared with cells from mice fed the hydrogenated lard diet or from cells from the control animals. The membrane fatty acid composition of the cells from the two dietary groups with increased levels of repair capacity differed extensively, and in general there was no correlation observed between radiation response and the membrane fatty acid composition of the four dietary groups studied. For two of the dietary groups, coconut oil and control, with marked differences in membrane fatty acid composition, the effects of irradiation on ascites tumour growth rate and cell cycle distribution were followed in vitro. For none of these parameters was an effect of membrane fatty acid composition on radiation response observed.This publication has 13 references indexed in Scilit:
- Lipid peroxidation in the rat-liver S9 fraction: Influence of membrane lipid compositionMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1986
- Effect of Membrane Fatty Acid Substitution and Temperature on Repair of Sublethal Damage in Mammalian CellsRadiation Research, 1985
- Radiation Effects on Membranes: III. The Effect of X Irradiation on Survival of Mammalian Cells Substituted by Polyunsaturated Fatty AcidsRadiation Research, 1982
- Proliferation Kinetics and Specific Behaviour of G2Cells of the Bp8 Mouse Ascites Sarcoma in VivoActa Radiologica: Oncology, 1982
- Osmotic fragility and fluidity of erythrocyte membranes from rats raised on an essential fatty acid deficient diet A spin label studyBiochimica et Biophysica Acta (BBA) - Biomembranes, 1981
- Diet-induced changes in plasma membrane fatty acid composition affect physical properties detected with a spin-label probeBiochemistry, 1977
- Modification of the fatty acid composition of Ehrlich ascites tumor cell plasma membranesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1976
- Alteration of the fatty acid composition of ehrlich ascites tumor cell lipidsBiochemical and Biophysical Research Communications, 1975
- Low Oxygen Enhancement Ratios for Radiosensitive Bacterial Strains, and the Probable Interaction of Two Types of Primary LesionNature, 1968
- The Protective Effect against X-Irradiation of Methyl Lineolate in the RatScience, 1953