Differences in biological response of breast and lung cancer cells to 62 MeV/u therapeutic protons and carbon ions are investigated on MCF-7 and HTB177 cells. Hydroxyl radical scavenger, dimethyl sulfoxide (DMSO) is applied to reduce indirect effects of irradiation, while serum deprivation provided uniformity of cell population. Survival, immunocytochemical, and cell-cycle analysis, changes in protein expression involved in repair and apoptosis are followed. Radiobiological parameters, Bax/Bcl-2 ratio, and increased subG1 fraction show that carbon ions are more efficient in cellular killing than protons. No significant difference in the number of γH2AX foci are found between protons and carbon ions. According to SF2 values, MCF-7 cells are ...
Purpose: The complex relationship between linear energy transfer (LET) and cellular response to radi...
International audiencePurpose: The complex relationship between linear energy transfer (LET) and cel...
Purpose: The complex relationship between linear energy transfer (LET) and cellular response to radi...
Differences in biological response of breast and lung cancer cells to 62 MeV/u therapeutic protons a...
International audienceDifferences in biological response of breast and lung cancer cells to 62 MeV/u...
International audience; Differences in biological response of breast and lung cancer cells to 62 MeV...
The aim of this study was to investigate effects of irradiations with the therapeutic proton and car...
The aim of this study was to investigate effects of irradiations with the therapeutic proton and car...
International audiencePurpose: Investigation of effects on DNA of γ-irradiated human cancer cells pr...
© 2016, © 2016 by the Society for Experimental Biology and Medicine. The aim of this study was to in...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose The complex relationship between linear energy transfer (LET) and cellular response to radia...
Purpose: The complex relationship between linear energy transfer (LET) and cellular response to radi...
International audiencePurpose: The complex relationship between linear energy transfer (LET) and cel...
Purpose: The complex relationship between linear energy transfer (LET) and cellular response to radi...
Differences in biological response of breast and lung cancer cells to 62 MeV/u therapeutic protons a...
International audienceDifferences in biological response of breast and lung cancer cells to 62 MeV/u...
International audience; Differences in biological response of breast and lung cancer cells to 62 MeV...
The aim of this study was to investigate effects of irradiations with the therapeutic proton and car...
The aim of this study was to investigate effects of irradiations with the therapeutic proton and car...
International audiencePurpose: Investigation of effects on DNA of γ-irradiated human cancer cells pr...
© 2016, © 2016 by the Society for Experimental Biology and Medicine. The aim of this study was to in...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose: Investigation of effects on DNA of γ-irradiated human cancer cells pretreated with free rad...
Purpose The complex relationship between linear energy transfer (LET) and cellular response to radia...
Purpose: The complex relationship between linear energy transfer (LET) and cellular response to radi...
International audiencePurpose: The complex relationship between linear energy transfer (LET) and cel...
Purpose: The complex relationship between linear energy transfer (LET) and cellular response to radi...