Mesenchymal type neuroblastoma cells escape ALK inhibitors.

作者
Ellen M. Westerhout,Mohamed Hamdi,Peter Stroeken,Natalia E Nowakowska,Arjan Lakeman,Jennemiek van Arkel,Nancy E. Hasselt,Boris Bleijlevens,Nurdan Akogul,Franciska Haneveld,Alvin Chan,Peter van Sluis,Danny A. Zwijnenburg,Richard Volckmann,Carel J. M. van Noesel,Igor Adameyko,Tim van Groningen,Jan Koster,Linda J. Valentijn,Johan van Nes,Rogier Versteeg
出处
期刊:Cancer Research [American Association for Cancer Research]
标识
DOI:10.1158/0008-5472.can-21-1621
摘要

Cancer therapy frequently fails due to the emergence of resistance. Many tumors include phenotypically immature tumor cells, which have been implicated in therapy resistance. Neuroblastoma cells can adopt a lineage committed adrenergic (ADRN) or an immature mesenchymal (MES) state. They differ in epigenetic landscape and transcription factors, and MES cells are more resistant to chemotherapy. Here we analyzed the response of MES cells to targeted drugs. Activating ALK mutations are frequently found in neuroblastoma and ALK inhibitors (ALKi) are in clinical trials. ALKi treatment of ADRN neuroblastoma cells with a tumor-driving ALK mutation induced cell death. Conversely, MES cells did not express either mutant or wild-type ALK and were resistant to ALKi, and MES cells formed tumors that progressed under ALKi therapy. In assessing the role of MES cells in relapse development, TRAIL was identified to specifically induce apoptosis in MES cells and suppress MES tumor growth. Addition of TRAIL to ALKi treatment of neuroblastoma xenografts delayed relapses in a subset of the animals, suggesting a role for MES cells in relapse formation. While ADRN cells resembled normal embryonal neuroblasts, MES cells resembled immature precursor cells which also lacked ALK expression. Resistance to targeted drugs can therefore be an intrinsic property of immature cancer cells based on their resemblance to developmental precursors.
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