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Mechanisms of Entrectinib Resistance in a Neuroblastoma Xenograft Model
Suzanne P MacFarland1, Koumudi Naraparaju1, Radhika Iyer1
1Division of Oncology, Children's Hospital of Philadelphia, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania.
Abstract:
TrkB with its ligand, brain-derived neurotrophic factor (BDNF), are overexpressed in the majority of high-risk neuroblastomas (NB). Entrectinib is a novel pan-TRK, ALK, and ROS1 inhibitor that has shown excellent preclinical efficacy in NB xenograft models, and recently it has entered phase 1 trials in pediatric relapsed/refractory solid tumors. We examined entrectinib-resistant NB cell lines to identify mechanisms of resistance. Entrectinib-resistant cell lines were established from five NB xenografts initially sensitive to entrectinib therapy. Clonal cell lines were established in increasing concentrations of entrectinib and had >10X increase in IC50 Cell lines underwent genomic and proteomic analysis using whole-exome sequencing, RNA-Seq, and proteomic expression profiling with confirmatory RT-PCR and Western blot analysis. There was no evidence of NTRK2 (TrkB) gene mutation in any resistant cell lines. Inhibition of TrkB was maintained in all cell lines at increasing concentrations of entrectinib (target independent). PTEN pathway downregulation and ERK/MAPK pathway upregulation were demonstrated in all resistant cell lines. One of these clones also had increased IGF1R signaling, and two additional clones had increased P75 expression, which likely increased TrkB sensitivity to ligand. In conclusion, NB lines overexpressing TrkB developed resistance to entrectinib by multiple mechanisms, including activation of ERK/MAPK and downregulation of PTEN signaling. Individual cell lines also had IGF1R activation and increased P75 expression, allowing preservation of downstream TrkB signaling in the presence of entrectinib. An understanding of changes in patterns of expression can be used to inform multimodal therapy planning in using entrectinib in phase II/III trial planning.
Insights
Neuroblastoma cells developed resistance to entrectinib by altering signaling pathways, not through TrkB mutations. Understanding these resistance mechanisms is crucial for future neuroblastoma treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- High-risk neuroblastoma (NB) frequently overexpresses Tropomyosin receptor kinase B (TrkB) and its ligand, brain-derived neurotrophic factor (BDNF).
- Entrectinib, a TRK, ALK, and ROS1 inhibitor, shows preclinical efficacy in NB and is in early clinical trials for pediatric relapsed/refractory solid tumors.
Purpose of the Study:
- To investigate the molecular mechanisms underlying entrectinib resistance in neuroblastoma cell lines.
- To identify potential therapeutic targets for overcoming entrectinib resistance in neuroblastoma.
Main Methods:
- Establishment of entrectinib-resistant neuroblastoma cell lines from sensitive xenografts.
- Genomic and proteomic analyses including whole-exome sequencing, RNA-Seq, and proteomic profiling.
- Confirmation of findings using RT-PCR and Western blot analysis.
Main Results:
- No NTRK2 (TrkB) gene mutations were found in resistant cell lines.
- Consistent downregulation of the PTEN pathway and upregulation of the ERK/MAPK pathway were observed in all resistant lines.
- Some resistant clones exhibited increased IGF1R signaling or P75 expression, potentially preserving TrkB signaling.
Conclusions:
- Neuroblastoma cells develop entrectinib resistance through multiple mechanisms, including PTEN/ERK/MAPK pathway alterations, rather than TrkB mutations.
- Upregulation of IGF1R and P75 expression can maintain TrkB signaling despite entrectinib treatment.
- Understanding these resistance mechanisms is vital for planning effective multimodal therapies and future clinical trials involving entrectinib.

