NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Back to Results
Early and Late Chromosome Damages in Human Lymphocytes Induced by Gamma Rays and Fe IonsChromosomal translocations and inversions are considered stable, and cells containing these types of chromosome aberrations can survive multiple cell divisions. An efficient method to detect an inversion is multi-color banding fluorescent in situ hybridization (mBAND) which allows identification of both inter- and intrachromosome aberrations simultaneously. Post irradiation, chromosome aberrations may also arise after multiple cell divisions as a result of genomic instability. To investigate the stable or late-arising chromosome aberrations induced after radiation exposure, we exposed human lymphocytes to gamma rays and Fe ions ex vivo, and cultured the cells for multiple generations. Chromosome aberrations were analyzed in cells collected at first mitosis and at several time intervals during the culture period post irradiation. With gamma irradiation, about half of the damages observed at first mitosis remained after 7 day- and 14 day- culture, suggesting the transmissibility of damages to the surviving progeny. Detailed analysis of chromosome break ends participating in exchanges revealed a greater fraction of break ends involved in intrachromosome aberrations in the 7- and 14-day samples in comparison to the fraction at first mitosis. In particular, simple inversions were found at 7 and 14 days, but not at the first mitosis, suggesting that some of the aberrations might be formed days post irradiation. In contrast, at the doses that produced similar frequencies of gamma-induced chromosome aberrations as observed at first mitosis, a significantly lower yield of aberrations remained at the same population doublings after Fe ion exposure. At these equitoxic doses, more complex type aberrations were observed for Fe ions, indicating that Fe ion-induced initial chromosome damages are more severe and may lead to cell death. Comparison between low and high doses of Fe ion irradiation in the induction of late damages will also be discussed.
Document ID
20140011891
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Sunagawa, Mayumi
(Texas Southern Univ. Houston, TX, United States)
Zhang, Ye
(Wyle Labs., Inc. Houston, TX, United States)
Yeshitla, Samrawit
(Texas Southern Univ. Houston, TX, United States)
Kadhim, Munira
(Oxford Brookes Univ. Headington, United Kingdom)
Wilson, Bobby
(Texas Southern Univ. Houston, TX, United States)
Wu, Honglu
(NASA Johnson Space Center Houston, TX, United States)
Date Acquired
September 18, 2014
Publication Date
August 2, 2014
Subject Category
Life Sciences (General)
Report/Patent Number
JSC-CN-30645
Meeting Information
Meeting: COSPAR Scientific Assembly
Location: Moscow
Country: Russia
Start Date: August 2, 2014
End Date: August 10, 2014
Sponsors: Lomonosov Moscow State Univ.
Distribution Limits
Public
Copyright
Public Use Permitted.
No Preview Available