With fluorescence in situ hybridization (FISH), many different categories of chromosome aberrations can be recognized-dicentrics, translocations, rings and various complex aberrations such as insertions or three-way interchanges. Relative frequencies for the various aberration categories indicate mechanisms of radiation-induced damage and reflect radiation quality. Data obtained with FISH support a proximity version of the classic random breakage-and-reunion model for the formation of aberrations. A Monte Carlo computer implementation of the model, called the CAS (chromosome aberration simulator), is generalized here to high linear energy transfer (LET) and compared to published data for human cells irradiated with X rays or Pu-238 alpha particles. For each kind of radiation, the CAS has two adjustable parameters: the number of interaction sites per cell nucleus and the number of reactive double-strand breaks (DSBs) per gray. Aberration frequencies for various painted chromosomes, of varying lengths, and for 11 different categories of simple or complex aberrations were simulated and compared to the data. The optimal number of interaction sites was found to be similar to 13 for X irradiation and similar to 25 for alpha-particle irradiation. The relative biological effectiveness (RBE) of alpha particles for the induction of reactive DSBs (which are a minority of all DSBs) was found to be similar to 4. The two-parameter CAS model adequately matches data for many different categories of aberrations. It can use data obtained with FISH for any one painting pattern to predict results for any other kind of painting pattern or whole-genome staining, and to estimate a suggested overall numerical damage indicator for chromosome aberration studies, the total misrejoining number. (C) 1997 by Radiation Research Society.
机构:
Univ Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, GreeceUniv Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, Greece
Panani, AD
Ferti, AD
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Univ Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, GreeceUniv Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, Greece
Ferti, AD
Avgerinos, A
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Univ Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, GreeceUniv Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, Greece
Avgerinos, A
Raptis, SA
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Univ Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, GreeceUniv Athens, Evangelismos Hosp, Res Unit, Dept Internal Med Propaedeut 2, Athens 10676, Greece
机构:
Department of Urology, Tottori Prefectural Central Hospital, Tottori
Department of Urology, Tottori Prefectural Central HospitalDepartment of Urology, Tottori Prefectural Central Hospital, Tottori
Nemoto R.
Nakamura I.
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Department of Urology, Tottori Prefectural Central Hospital, TottoriDepartment of Urology, Tottori Prefectural Central Hospital, Tottori
Nakamura I.
Uchida K.
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Department of Urology, Institute of Clinical Medicine, University of Tsukuba, TsukubaDepartment of Urology, Tottori Prefectural Central Hospital, Tottori
Uchida K.
Harada M.
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Laboratory of Pathology, Clinical Research Institute, Kanagawa Cancer Center, YokohamaDepartment of Urology, Tottori Prefectural Central Hospital, Tottori