Developing a scientific basis for radiation risk estimates: Goal of the doe low dose research program

被引:23
作者
Brooks, AL [1 ]
机构
[1] Washington State Univ Tri Cities, Richland, WA 99352 USA
来源
HEALTH PHYSICS | 2003年 / 85卷 / 01期
关键词
NCRP; dose; low; risk analysis; health effects;
D O I
10.1097/00004032-200307000-00016
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The U.S. Department of Energy's Low Dose Radiation Research Program is a 10 y activity currently funded at $21 million per year. It focuses on biological responses to low doses (<0.1 Gy) of low-LET ionizing radiation. The overall goal of this program is to provide a sound scientific basis for the radiation protection standards. The program supports basic research that combines modern genomic, molecular, and cellular techniques with recent advances in scientific instrumentation. These combinations make it possible to detect responses and test paradigms associated with the mechanisms of low dose radiation action not previously measurable or testable. Research to date is briefly reviewed and suggests the need for some major paradigm shifts. Exposure of the extracellular matrix can modify both the pattern of gene expression and the phenotype of the cells which result in cell transformation without direct mutation. Low dose radiation exposure results in a range of dose-response relationships for changes in the number, types, and patterns of gene expression. Such studies suggest an increased role for gene expression relative to single mutations for radiation induced cancer. Low dose research using microbeams demonstrated that cells do not require a direct "hit" to result in significant biological alterations. These "bystander effects" demonstrate that "non-hit" cells respond with changes in gene expression, DNA repair, chromosome aberrations, mutations, and cell killing. Research to link genomic instability with cancer is also being conducted and will be discussed. Detection of radiosensitivity genes as markers of genetic susceptibility in individuals and populations can be used in epidemiological studies to determine how molecular changes may impact risk. It is not possible to determine how this research will influence current radiation standards. However, the Low Dose Research Program will help ensure that radiation standards are set using the best scientific data available, and that they are adequate and appropriate for the protection of workers and the public.
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页码:85 / 93
页数:9
相关论文
共 89 条
[1]  
Amundson SA, 2000, RADIAT RES, V154, P342, DOI 10.1667/0033-7587(2000)154[0342:IOPMBI]2.0.CO
[2]  
2
[3]   Induction of stress genes by low doses of gamma rays [J].
Amundson, SA ;
Do, KT ;
Fornace, AJ .
RADIATION RESEARCH, 1999, 152 (03) :225-231
[4]   Monitoring human radiation exposure by gene expression profiling: Possibilities and pitfalls [J].
Amundson, SA ;
Fornace, AJ .
HEALTH PHYSICS, 2003, 85 (01) :36-42
[5]   Fluorescent cDNA microarray hybridization reveals complexity and heterogeneity of cellular genotoxic stress responses [J].
Amundson, SA ;
Bittner, M ;
Chen, YD ;
Trent, J ;
Meltzer, P ;
Fornace, AJ .
ONCOGENE, 1999, 18 (24) :3666-3672
[6]  
Amundson SA, 2001, RADIAT PROT DOSIM, V97, P11, DOI 10.1093/oxfordjournals.rpd.a006632
[7]  
AMUNDSON SA, 2002, MIL MED, V167, P13
[8]   Low-dose ionizing radiation decreases the frequency of neoplastic transformation to a level below the spontaneous rate in C3H 10T1/2 cells [J].
Azzam, EI ;
deToledo, SM ;
Raaphorst, GP ;
Mitchel, REJ .
RADIATION RESEARCH, 1996, 146 (04) :369-373
[9]   DNA double-strand break repair proteins are required to cap the ends of mammalian chromosomes [J].
Bailey, SM ;
Meyne, J ;
Chen, DJ ;
Kurimasa, A ;
Li, GC ;
Lehnert, BE ;
Goodwin, EH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (26) :14899-14904
[10]   Strand-specific postreplicative processing of mammalian telomeres [J].
Bailey, SM ;
Cornforth, MN ;
Kurimasa, A ;
Chen, DJ ;
Goodwin, EH .
SCIENCE, 2001, 293 (5539) :2462-2465