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. 1998 Oct;37(3):173-6.
doi: 10.1007/s004110050113.

Lack of specificity of chromosome breaks resulting from radiation-induced genomic instability in Chinese hamster cells

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Lack of specificity of chromosome breaks resulting from radiation-induced genomic instability in Chinese hamster cells

K R Trott et al. Radiat Environ Biophys. 1998 Oct.

Abstract

In V79 Chinese hamster cells, radiation-induced genomic instability results in a persistently increased frequency of micronuclei, dicentric chromosomes and apoptosis and in decreased colony-forming ability. These manifestations of radiation-induced genomic instability may be attributed to an increased rate of chromosome breakage events many generations after irradiation. This chromosomal instability does not seem to be a property which has been inflicted on individual chromosomes at the time of irradiation. Rather, it appears to be secondary to an increased level of non-specific clastogenic factors in the progeny of most if not all irradiated cells. This conclusion is drawn from the observations presented here, that all the chromosomes in surviving V79 cells are involved in the formation of dicentric chromosome aberrations 1 or 2 weeks after irradiation with about equal probability if corrections are made for chromosome length.

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