[PDF][PDF] Mesenchymal differentiation mediated by NF-κB promotes radiation resistance in glioblastoma

KPL Bhat, V Balasubramaniyan, B Vaillant… - Cancer cell, 2013 - cell.com
KPL Bhat, V Balasubramaniyan, B Vaillant, R Ezhilarasan, K Hummelink, F Hollingsworth…
Cancer cell, 2013cell.com
Despite extensive study, few therapeutic targets have been identified for glioblastoma
(GBM). Here we show that patient-derived glioma sphere cultures (GSCs) that resemble
either the proneural (PN) or mesenchymal (MES) transcriptomal subtypes differ significantly
in their biological characteristics. Moreover, we found that a subset of the PN GSCs
undergoes differentiation to a MES state in a TNF-α/NF-κB-dependent manner with an
associated enrichment of CD44 subpopulations and radioresistant phenotypes. We present …
Summary
Despite extensive study, few therapeutic targets have been identified for glioblastoma (GBM). Here we show that patient-derived glioma sphere cultures (GSCs) that resemble either the proneural (PN) or mesenchymal (MES) transcriptomal subtypes differ significantly in their biological characteristics. Moreover, we found that a subset of the PN GSCs undergoes differentiation to a MES state in a TNF-α/NF-κB-dependent manner with an associated enrichment of CD44 subpopulations and radioresistant phenotypes. We present data to suggest that the tumor microenvironment cell types such as macrophages/microglia may play an integral role in this process. We further show that the MES signature, CD44 expression, and NF-κB activation correlate with poor radiation response and shorter survival in patients with GBM.
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