DiSCoVERing Innovative Therapies for Rare Tumors: Combining Genetically Accurate Disease Models with In Silico Analysis to Identify Novel Therapeutic Targets

  • Hanaford, Allison R
  • Archer, Tenley C
  • Price, Antoinette
  • Kahlert, Ulf D
  • Maciaczyk, Jarek
  • Nikkhah, Guido
  • Kim, Jong Wook
  • Ehrenberger, Tobias
  • Clemons, Paul A
  • Dančík, Vlado
  • Seashore-Ludlow, Brinton
  • Viswanathan, Vasanthi
  • Stewart, Michelle L
  • Rees, Matthew G
  • Shamji, Alykhan
  • Schreiber, Stuart
  • Fraenkel, Ernest
  • Pomeroy, Scott L
  • Mesirov, Jill P
  • Tamayo, Pablo
  • Eberhart, Charles G
  • Raabe, Eric H
Publication date
August 2016
Publisher
eScholarship, University of California

Abstract

PurposeWe used human stem and progenitor cells to develop a genetically accurate novel model of MYC-driven Group 3 medulloblastoma. We also developed a new informatics method, Disease-model Signature versus Compound-Variety Enriched Response ("DiSCoVER"), to identify novel therapeutics that target this specific disease subtype.Experimental designHuman neural stem and progenitor cells derived from the cerebellar anlage were transduced with oncogenic elements associated with aggressive medulloblastoma. An in silico analysis method for screening drug sensitivity databases (DiSCoVER) was used in multiple drug sensitivity datasets. We validated the top hits from this analysis in vitro and in vivoResultsHuman neural stem and progenitor cells tran...

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