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Comparison of gene expression response to neutron and x-ray irradiation using mouse blood

Overview of attention for article published in BMC Genomics, January 2017
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Title
Comparison of gene expression response to neutron and x-ray irradiation using mouse blood
Published in
BMC Genomics, January 2017
DOI 10.1186/s12864-016-3436-1
Pubmed ID
Authors

Constantinos G. Broustas, Yanping Xu, Andrew D. Harken, Guy Garty, Sally A. Amundson

Abstract

In the event of an improvised nuclear device detonation, the prompt radiation exposure would consist of photons plus a neutron component that would contribute to the total dose. As neutrons cause more complex and difficult to repair damage to cells that would result in a more severe health burden to affected individuals, it is paramount to be able to estimate the contribution of neutrons to an estimated dose, to provide information for those making treatment decisions. Mice exposed to either 0.25 or 1 Gy of neutron or 1 or 4 Gy x-ray radiation were sacrificed at 1 or 7 days after exposure. Whole genome microarray analysis identified 7285 and 5045 differentially expressed genes in the blood of mice exposed to neutron or x-ray radiation, respectively. Neutron exposure resulted in mostly downregulated genes, whereas x-rays showed both down- and up-regulated genes. A total of 34 differentially expressed genes were regulated in response to all ≥1 Gy exposures at both times. Of these, 25 genes were consistently downregulated at days 1 and 7, whereas 9 genes, including the transcription factor E2f2, showed bi-directional regulation; being downregulated at day 1, while upregulated at day 7. Gene ontology analysis revealed that genes involved in nucleic acid metabolism processes were persistently downregulated in neutron irradiated mice, whereas genes involved in lipid metabolism were upregulated in x-ray irradiated animals. Most biological processes significantly enriched at both timepoints were consistently represented by either under- or over-expressed genes. In contrast, cell cycle processes were significant among down-regulated genes at day 1, but among up-regulated genes at day 7 after exposure to either neutron or x-rays. Cell cycle genes downregulated at day 1 were mostly distinct from the cell cycle genes upregulated at day 7. However, five cell cycle genes, Fzr1, Ube2c, Ccna2, Nusap1, and Cdc25b, were both downregulated at day 1 and upregulated at day 7. We describe, for the first time, the gene expression profile of mouse blood cells following exposure to neutrons. We have found that neutron radiation results in both distinct and common gene expression patterns compared with x-ray radiation.

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The data shown below were compiled from readership statistics for 31 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 31 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 8 26%
Student > Master 4 13%
Student > Ph. D. Student 3 10%
Student > Bachelor 2 6%
Student > Postgraduate 2 6%
Other 2 6%
Unknown 10 32%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 5 16%
Medicine and Dentistry 3 10%
Agricultural and Biological Sciences 3 10%
Physics and Astronomy 2 6%
Materials Science 2 6%
Other 6 19%
Unknown 10 32%