Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Senescence gene signature of radiation fibrosis


ABSTRACT: Radiation lung injury is characterized by early inflammation and late fibrosis. The causes underlying the chronic, progressive nature of radiation injury are poorly understood. Here, we report that the gene expression of irradiated lung tissue correlates with that observed in the lungs in aged animals. We demonstrate that NOX4 expression and superoxide elaboration is increased in irradiated lungs and pneumocytes in a dose dependent fashion. We used microarrays to detail the global programme of gene expression and report that irradiated lung tissue correlates with that observed in the lungs in aged animals. Female C57Bl/Ncr mice, aged 10 weeks were treated with/ without radiation to the thorax with a X-RAD 320 x-ray irradiator at a dose rate of 2.61 Gy/minute. An age-matched cohort of mice received no IR while additional cohorts received 5 Gy in a single dose, 17.5 Gy in a single dose. RNA was extracted and hybridization done on Affymetrix Mouse430_2 microarrays.

ORGANISM(S): Mus musculus

SUBMITTER: Uma Shankavaram 

PROVIDER: E-GEOD-41789 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Role of type II pneumocyte senescence in radiation-induced lung fibrosis.

Citrin Deborah E DE   Shankavaram Uma U   Horton Jason A JA   Shield William W   Zhao Shuping S   Asano Hiroaki H   White Ayla A   Sowers Anastasia A   Thetford Angela A   Chung Eun Joo EJ  

Journal of the National Cancer Institute 20130919 19


<h4>Background</h4>Radiation is a commonly delivered therapeutic modality for cancer. The causes underlying the chronic, progressive nature of radiation injury in the lung are poorly understood.<h4>Methods</h4>C57Bl/6NCr mice were exposed to thoracic irradiation (n = 3 per dose and time point for tissue collection). Microarray analysis of gene expression from irradiated murine lung was performed using one-way analysis of variance with post hoc Scheffe analysis. Senescence and type II airway epit  ...[more]

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