The radiosensitivity of recurrent clones of an irradiated murine squamous cell carcinoma in the in vitro megacolony system.
PURPOSE: To measure changes in spontaneous growth rate and radiation response in the progeny of irradiated squamous cell carcinoma cells. MATERIALS AND METHODS: Murine SCC cells of the line AT478 were grown as epithelial megacolonies in vitro, using both the original line and two subsequent passages derived from a clone that had recurred after a high radiation dose. Radiosensitivity was evaluated in terms of local control following single dose irradiation of standard size megacolonies (0.8 cm2). In addition, original megacolonies were given a priming dose of 20 Gy and the recurrent clones arising in situ were retreated at three dose levels for analysis of curability. RESULTS: A marked increase in radiosensitivity was observed in the megacolonies grown from irradiated progeny as compared to original megacolonies, reflected in a shift of the TCD50 from 24.5 to 16.5 Gy. Direct parameter estimation from the cure data suggested that the underlying change was a lowered number of clonogenic 'stem' cells rather than increased cellular sensitivity. A similar decrease in clonogen density was also apparent for the recurrent clones in situ. The change in megacolony curability was paralleled by a substantial growth retardation. CONCLUSION: The data demonstrate persistent changes in the progeny of irradiated SCC tumour cells that affect both growth and radiosensitivity and are compatible with the expression of delayed reproductive death.