Delayed Cell Death, Giant Cell Formation and Chromosome Instability Induced by X-irradiation in Human Embryo Cells
Author(s) -
Kanaklata Roy,
Seiji Kodama,
Keiji Suzuki,
Masami Watanabe
Publication year - 1999
Publication title -
journal of radiation research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.643
H-Index - 60
eISSN - 1349-9157
pISSN - 0449-3060
DOI - 10.1269/jrr.40.311
Subject(s) - mitosis , embryo , irradiation , programmed cell death , chromosome , biology , cell , dna damage , population , andrology , genetics , microbiology and biotechnology , dna , medicine , gene , apoptosis , physics , environmental health , nuclear physics
We studied X-ray-induced delayed cell death, delayed giant cell formation and delayed chromosome aberrations in normal human embryo cells to explore the relationship between initial radiation damage and delayed effect appeared at 14 to 55 population doubling numbers (PDNs) after X-irradiation. The delayed effect was induced in the progeny of X-ray survivors in a dose-dependent manner and recovered with increasing PDNs after X-irradiation. Delayed plating for 24 h post-irradiation reduced both acute and delayed lethal damage, suggesting that potentially lethal damage repair (PLDR) can be effective for relieving the delayed cell death. The chromosome analysis revealed that most of the dicentrics (more than 90%) observed in the progeny of X-ray survivors were not accompanied with fragments, in contrast with those observed in the first mitosis after X-irradiation. The present results indicate that the potentiality of genetic instability is determined during the repair process of initial radiation damage and suggest that the mechanism for formation of delayed chromosome aberrations by radiation might be different from that of direct radiation-induced chromosome aberrations.
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