<HashMap><database>biostudies-other</database><scores/><additional><omics_type>Unknown</omics_type><submitter>Mackay Alan</submitter><species>Homo sapiens</species><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-ECPF-TABM-1083</full_dataset_link><project>EurocanPlatform</project><abstract>Abstract Purpose: There is a recognised need to develop new methods of high throughput, rapid and minimally invasive individual dose assessment for radiation exposure. The aim of this work is to establish a panel of highly radiation responsive genes suitable for biological dosimetry and to explore inter-individual variation in response to ionising radiation exposure.Materials and method: Analysis of gene expression in response to radiation was carried out using three independent techniques (microarray, Multiplex Quantitative RT-PCR and nCounter Analysis System) in human lymphocytes in culture and circulating blood exposed ex vivo from the same donors. Results: Variations in transcriptional response to exposure to ionising radiation analysed by microarray allowed the identification of genes</abstract><repository>biostudies-other</repository><experiment_type>transcription profiling by array</experiment_type><data_source>EurocanPlatform</data_source><pubmed_authors>Mackay Alan</pubmed_authors></additional><is_claimable>false</is_claimable><name>AM_GeneExpressionAfterIonisingRadiation</name><description>Abstract Purpose: There is a recognised need to develop new methods of high throughput, rapid and minimally invasive individual dose assessment for radiation exposure. The aim of this work is to establish a panel of highly radiation responsive genes suitable for biological dosimetry and to explore inter-individual variation in response to ionising radiation exposure.Materials and method: Analysis of gene expression in response to radiation was carried out using three independent techniques (microarray, Multiplex Quantitative RT-PCR and nCounter Analysis System) in human lymphocytes in culture and circulating blood exposed ex vivo from the same donors. Results: Variations in transcriptional response to exposure to ionising radiation analysed by microarray allowed the identification of genes</description><dates><release>2016-04-14T14:53:03Z</release><modification>2016-04-14T14:53:03Z</modification><creation>2016-04-14T14:53:03Z</creation></dates><accession>S-ECPF-TABM-1083</accession><cross_references><ArrayExpress>E-TABM-1083</ArrayExpress><EFO>EFO_0000311</EFO><EFO>EFO_0002660</EFO><ArrayExpress files>E-TABM-1083</ArrayExpress files></cross_references></HashMap>