{"database":"biostudies-other","file_versions":[],"scores":null,"additional":{"submitter":["Johnstone AL"],"pagination":["125-135"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-ECPF-GEOD-34331"],"project":["EurocanPlatform"],"abstract":["Injury to the central nervous system (CNS) may result in lifelong loss of function due, in part, to the regenerative failure of CNS neurons.  Major barriers to regeneration faced by injured CNS neurons include inhibitory proteins derived from myelin and the astroglial scar.  Previously, we described the identification of a novel compound, F05, which promotes neurite growth from neurons challenged with inhibitory substrates in vitro, and promotes axonal regeneration in vivo (Usher et al., 2010).  To identify additional regeneration promoting compounds, we used the microarray derived gene expression signature of F05 to query the Broad Institute Connectivity Map, a database of gene expression profiles for cells treated with >1,300 compounds.  Unexpectedly, F05 induced changes in gene expressi"],"repository":["biostudies-other"],"experiment_type":["transcription profiling by array"],"data_source":["EurocanPlatform"],"omics_type":["Unknown"],"volume":["50"],"journal":["Molecular and cellular neurosciences"],"species":["Homo sapiens"],"pubmed_authors":["Johnstone AL","Goldberg JL","Smith RP","Reierson GW","Bixby JL","Lemmon VP"],"additional_accession":[]},"is_claimable":false,"name":"Transcription profiling by array of human breast cancer MCF-7 cells treated with novel compound F05 which promotes neurite growth on inhibitory substrates","description":"Injury to the central nervous system (CNS) may result in lifelong loss of function due, in part, to the regenerative failure of CNS neurons.  Major barriers to regeneration faced by injured CNS neurons include inhibitory proteins derived from myelin and the astroglial scar.  Previously, we described the identification of a novel compound, F05, which promotes neurite growth from neurons challenged with inhibitory substrates in vitro, and promotes axonal regeneration in vivo (Usher et al., 2010).  To identify additional regeneration promoting compounds, we used the microarray derived gene expression signature of F05 to query the Broad Institute Connectivity Map, a database of gene expression profiles for cells treated with >1,300 compounds.  Unexpectedly, F05 induced changes in gene expressi","dates":{"release":"2016-04-14T14:05:59Z","publication":"2012 Jun","modification":"2016-04-14T14:05:59Z","creation":"2016-04-14T14:05:59Z"},"accession":"S-ECPF-GEOD-34331","cross_references":{"GEO":["GSE34331"],"ArrayExpress":["E-GEOD-34331"],"EFO":["EFO_0000305","EFO_0000322"],"ArrayExpress files":["E-GEOD-34331"]}}