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<biogps><data><item key="owner">ArrayExpress Uploader</item><item key="pop_total">0</item><item key="species">mouse</item><item key="factors"><item><item key="GSM1162147"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">151 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">2.5</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162148"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">152 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.0</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162149"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">157 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">2.75</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162150"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">161 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.0</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM116215"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">162 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.5</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162152"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">173 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.5</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162153"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">150 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item><item><item key="GSM1162154"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">154 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item><item><item key="GSM1162155"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">159 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item><item><item key="GSM1162156"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">171 mc</item><item key="ORGANISM PART">motor cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/29/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item><item><item key="GSM1162157"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">151 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">2.5</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162158"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">152 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.0</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162159"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">157 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">2.75</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162160"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">161 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.0</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM116216"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">162 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.5</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162162"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">173 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">18-21</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">3.5</item><item key="TREATMENT">EAE</item></item></item><item><item key="GSM1162163"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">150 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/29/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item><item><item key="GSM1162164"><item key="COHORT">1</item><item key="ANIMAL ID NUMBER">154 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item><item><item key="GSM1162165"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">159 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item><item><item key="GSM1162166"><item key="COHORT">2</item><item key="ANIMAL ID NUMBER">171 sc</item><item key="ORGANISM PART">sensory cortex</item><item key="EAE DAY">nan</item><item key="CHIP PROCESSING DATE">01/28/09</item><item key="EAE GRADE AVERAGE">nan</item><item key="TREATMENT">control</item></item></item></item><item key="id">7342</item><item key="ownerprofile_id">arrayexpress_sid</item><item key="platform">6</item><item key="summary_wrapped">We performed micrarrays to investigate neuronal gene expression changes during acute inflammatory CNS axon injury using the murine myelin...</item><item key="geo_gse_id">E-GEOD-47900</item><item key="owner_profile">/profile/8773/arrayexpressuploader</item><item key="factor_count">7</item><item key="sample_count">20</item><item key="tags"><item>axon</item><item>cortex</item><item>encephalomyelitis</item><item>glycoprotein</item><item>myelin</item><item>oligodendrocyte</item><item>paraplegia</item></item><item key="lastmodified">Dec.12, 2014</item><item key="is_default">False</item><item key="geo_id_plat">E-GEOD-47900_A-AFFY-45</item><item key="slug">differential-gene-expression-analysis-in-motor-and</item><item key="geo_gds_id"/><item key="name">Differential gene expression analysis in motor and sensory cortex as a result of experimental autoimmune encephalomyelitis (EAE), a neuroinflammatory model for Multiple sclerosis.</item><item key="created">Nov.12, 2014</item><item key="summary">We performed micrarrays to investigate neuronal gene expression changes during acute inflammatory CNS axon injury using the murine myelin oligodendrocyte glycoprotein 35-55 (MOG35-55)-induced experimental autoimmune encephalomyelitis (EAE) model. The present study was assigned to assess the direct and indirect endogenous neuronal response to spinal axonal injury in the motor and sensory cortex. Gene expression in motor and sensory cortex enriched tissue was assessed from four healthy and six EAE female mice. Tissue was collected from mice with paraplegia or monoplegia, with contralateral hindlimb paresis (EAE day 18-21).  The gene expression profiles of the EAE mice were compared to the motor or sensory cortex of healthy control mice, resulting in a list of differentially expressed genes in healthy and EAE mice.</item><item key="source">http://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-47900</item><item key="sample_source">http://www.ebi.ac.uk/arrayexpress/experiments/E-GEOD-47900/samples/</item></data></biogps>
