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Induction of Chromosome Aberrations and Delayed Genomic Instability by Photochemical Processes
Authors:Charles L Limoli  Joseph P Day  John F Ward  William F Morgan
Institution:Departments of Radiology and Radiation Oncology, University of California, San Francisco, CA, USA;Department of Microbiology, Cornell University Medical College, New York, NY, USA.;Department of Radiation Biology, University of California, San Diego, CA, USA
Abstract:Exponentially growing cells cultured in medium containing bromodeoxyuridine, then exposed to UVA light in the presence of the dye Hoechst 33258, show significant levels of DNA strand breaks and base damage. This dye–bromodeoxyuridine–UVA photolysis treatment is markedly cytotoxic. We now demonstrate that exposure of cells to the agents used in photolysis leads directly to the formation of chromosome aberrations. Furthermore, we demonstrate that this photochemical treatment induces delayed chromosomal instability in clonal populations derived from single progenitor cells surviving photolysis. These results suggest that photolysis-induced DNA damage leads to chromosome rearrangements that could account for the observed cytotoxicity. Furthermore, in those cells surviving photolysis, the delayed effects of this treatment can be observed several generations after exposure and are manifested as compromised genomic integrity.
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