Radiosensitivity of Human Bone Marrow Granulocyte-Macrophage Progenitor Cells and Stromal Colony-Forming Cells: Effect of Dose Rate
- 1 August 1986
- journal article
- research article
- Published by JSTOR in Radiation Research
- Vol. 107 (2) , 205-215
- https://doi.org/10.2307/3576808
Abstract
Study of the radiation biology of human bone marrow hematopoietic cells has been difficult since unseparated bone marrow cell preparations also contain other nonhematopoietic stromal cells. We tested the clonogenic survival after 0.05 or 2 Gy/min X irradiation using as target cells either fresh human bone marrow or nonadherent hematopoietic cells separated from stromal cells by the method of long-term bone marrow culture (LTBMC). Sequential nonadherent cell populations removed from LTBMC were enriched for hematopoietic progenitors forming granulocyte-macrophage colony-forming unit culture (GM-CFUc) that form colonies at Day 7, termed GM-CFUc7, or Day 14 termed GM-CFUc14. The results demonstrated no effect of dose rate on the D0 or .hivin.n of fresh marrow GM-CFUc (colonies .gtoreq. 50 cells) after plating in a source of their obligatory growth factor, colony-stimulating factor (CSF) (GM-CFUc7 irradiated at 2 Gy/min, D0=1.02 .+-. 0.5, .hivin.n=1.59 .+-. 0.21; at 0.05 Gy/min, D0=1.07 .+-. 0.03, .hivin.n = 1.50 .+-. 0.04; GM-CFUc14 at 2 Gy/min, D0=1.13 .+-. 0.03, .hivin.n=1.43 .+-. 0.03; at 0.05 Gy/min, D0=1.16 .+-. 0.04, .hivin.n=1.34 .+-. 0.05). There was a decrease in the radiosensitivity of GM-CFUc7 and GM-CFUc14 derived from nonadherent cells of long-term bone marrow cultures compared to fresh marrow that was observed at both dose rates. In contrast, adherent stromal cells irradiated at low compared to high dose rate showed a significantly greater radioresistance (Day 19 colonies of .gtoreq. 50 cells; at 2 Gy/min, D0=0.99 Gy, .hivin.n=1.03; at 0.05 Gy/min D0=1.46 Gy, .hivin.n=2.00). These data provide strong evidence for a difference in the radiosensitivity of human marrow hematopoietic progenitor compared to adherent stromal cells.This publication has 16 references indexed in Scilit:
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