Published October 1991 | Version v1
Journal article

Induction of micronuclei by X-radiation in human, mouse and rat peripheral blood lymphocytes

  • 1. Environmental Health Research and Testing, Inc. Research Triangle Park, NC (USA)
  • 2. U.S. Environmental Protection Agency, Research Triangle Park, NC (USA). Mutagenesis and Cellular Toxicology Branch
  • 3. Duke University Medical center, Durham, NC (USA). Division of Radiation Oncology

Description

The radiosensitivity of human, mouse and rat peripheral blood lymphocytes (PBLs) was compared by analyzing micronuclei (MN) in cyto-chalasin B-induced binucleated (BN) cells. For each species and dose 4-ml aliquots of whole blood were X-irradiated to obtain doses of 38, 75, 150 or 300 cGy. Controls were sham-irradiated. After exposure to X-rays, mononuclear leukocytes were isolated using density gradients and cultured in RPMI 1640 medium containing phytohemagglutinin to stimulate mitogenesis. At 21 h cytochalasin B was added to produce BN PBLs, and all cultures were harvested at 52 h post-initiation using a cyto-centrifuge. Significant dose-dependent increases in the percentage of micronucleated cells and the number of MN per BN cell were observed in all three species. The linear-quadratic regression curves for the total percentage of micronucleated cells for the three species were similar; however, the curve for the mouse PBLs had a larger quadratic component than either of the curves for the rat or the human PBLs. Although the correlation between the percentage of cells with MN and those with chromosome aberrations was high (r2>0.95), the mouse and rat PBLs were over twice as efficient as human PBLs in forming MN from presumed acentric fragments. These data indicate that the induction of MN in BN cells following ionizing radiation is similar in human, rat and mouse PBLs, but care must be taken in using the MN results to predict frequencies of cells with chromosomal aberrations. (author). 19 refs.; 3 figs.; 2 tabs

Additional details

Publishing Information

Journal Title
Mutation Research. Environmental Mutagenesis and Related Subjects Including Methodology
Journal Volume
253
Journal Issue
1
Series
Mutat. Res., Environ. Mutagen. Relat. Subj. Incl. Methodol.
Journal Page Range
193-198
CODEN
MUREA