Published 2003 | Version v1
Book

On the mechanistic differences of benzene-induced leukemogenesis between wild type and p53 knockout mice

  • 1. National Inst. of Health Sciences, Tokyo (Japan)

Description

Leukemia induction by benzene inhalation was first reported by Le Noire in 1887, described multiple cases of leukemia among Parisian cobblers. However, experimental induction of leukemia by benzene exposure was not succeeded for a hundred years, until Snyder et al. and our group reported it nearly 20 years ago. Nevertheless, the mechanistic background of benzene-induced leukemia was still an enigma until recently a benzene-induced peculiar cell kinetics of the stem/progenitor cells has been elucidated by our study, demonstrated a marked repeated oscillatory decrease in peripheral blood and bone marrow (BM) cellularity during and after benzene exposure, which epigenetically preceded and developed the leukemia more than a year later. We utilized the BUUV (bromodeoxyuridine + UV exposure) method to study stem/progenitor cell kinetics during and/or after benzene exposure. Using these methods, we were able to measure the labeling rate, cycling fraction of clonogenic progenitor cells, and other cell cycle parameters. The cycling fraction of stem/progenitor cells was found not to turn into an active hematopoiesis but to remain low during benzene inhalation and further we found evidence that the cycling fraction depression may be mediated in part by a slowing of stem/progenitor cell cycling perse by up-regulation of p21. The benzene induced leukemogenicity between mice carrying wild-type p53 and mice lacking p53 seem to differ from one another. In the case of p53 knockout mouse, DNA damage such as weak mutagenicity and or chromosomal damages are retained, and those damages participated in the induction of a consequent activation of proto-oncogenes and the like, which led cells to further neoplastic changes. In contrast, in the case of wild type mice, a dramatic oscillational change in the cell cycle of the stem cell compartment seems to be an important factor for mice carrying the p53 gene. (author)

Part of:
Molecular mechanisms for radiation-induced cellular response and cancer development. Proceedings of the international symposium on biological effects of low dose radiation

Additional details

Publishing Information

Publisher
Inst. for Environmental Sciences
Imprint Place
Rokkasho, Aomori (Japan)
ISBN
4-9980604-5-7
Imprint Title
Molecular mechanisms for radiation-induced cellular response and cancer development. Proceedings of the international symposium on biological effects of low dose radiation
Imprint Pagination
367 p.
Journal Page Range
p. 110-116

Conference

Title
Molecular mechanisms for radiation-induced cellular response and cancer development
Acronym
International symposium on biological effects of low dose radiation
Dates
9-11 Oct 2002
Place
Rokkasho, Aomori (Japan)

Optional Information

Notes
21 refs., 3 figs.