Published June 1992 | Version v1
Journal article

Delayed reproductive death as a dominant phenotype in cell clones surviving X-irradiation

  • 1. Harvard Univ., Boston, MA (United States). School of Public Health

Description

Residual damage manifested as reduced cloning efficiency was observed in many of the cloned progeny of Chinese hamster ovary (CHO) cells and human carcinoma SQ-20B cells surviving X-irradiation. This stable phenotype, which we have termed delayed reproductive death, persisted for >50 generations of cell replication post-irradiation. Clones showing this phenotype were aneuploid, and formed colonies with a high proportion of giant cells. By somatic cell hybridization of CHO clones, the delayed reproductive death phenotype was found to be a dominant trait; the cloning efficiency of hybrid clones was persistently depressed, as compared with that of control hybrid cells. These results suggest that delayed reproductive death represents a specific cellular response that may persist in some of the progeny of mammalian cells for long periods after X-irradiation. (author)

Additional details

Publishing Information

Journal Title
Carcinogenesis
Journal Volume
13
Journal Issue
6
Series
Carcinogenesis.
Journal Page Range
923-928
ISSN
0143-3334
CODEN
CRNGD