Fig. 2.
Fig. 2. Kinetics of wildtype and G3 mTerc−/− B6 Lin− BM cell proliferation on irradiated wildtype and G3 mTerc−/− B6 stromal layers. / Wildtype and G3 mTerc−/− B6 LTBMCs were established and maintained as described in Figure 1. After 21 days, cultures were iradiated with a dose of 17 Gy; 3 days after irradiation, cultures were seeded with 7 × 105 wildtype or G3 mTerc−/− B6 Lin− BM cells. CFU-GM content of the seeded cells was 178 and 177 CFU-GMs per 104 cells for wildtype and G3 mTerc−/− B6 Lin− BM cells, respectively. Every 5 days, half of the medium was changed, and total cells and total CFU-GMs in suspension were evaluated. Results are expressed as the mean ± SD of 4 different experiments. *P < .01, **P < 001, ***P < .0001; for mTerc−/− BM cells versus WT BM cells seeded on the same type of stroma.#P < .01; for WT stroma versus mTerc−/− stroma seeded with the same type of BM cells.

Kinetics of wildtype and G3 mTerc−/− B6 Lin BM cell proliferation on irradiated wildtype and G3 mTerc−/− B6 stromal layers.

Wildtype and G3 mTerc−/− B6 LTBMCs were established and maintained as described in Figure 1. After 21 days, cultures were iradiated with a dose of 17 Gy; 3 days after irradiation, cultures were seeded with 7 × 105 wildtype or G3 mTerc−/− B6 Lin BM cells. CFU-GM content of the seeded cells was 178 and 177 CFU-GMs per 104 cells for wildtype and G3 mTerc−/− B6 Lin BM cells, respectively. Every 5 days, half of the medium was changed, and total cells and total CFU-GMs in suspension were evaluated. Results are expressed as the mean ± SD of 4 different experiments. *P < .01, **P < 001, ***P < .0001; for mTerc−/− BM cells versus WT BM cells seeded on the same type of stroma.#P < .01; for WT stroma versus mTerc−/− stroma seeded with the same type of BM cells.

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