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Ceritinib-Induced Regression of an Insulin-Like Growth Factor-Driven Neuroepithelial Brain Tumor
Alexandra Russo1,2, Claudia Paret3,4,5, Francesca Alt1,2
1Pediatric Hematology/Oncology, Children's Hospital, University Medical Center of the Johannes Gutenberg-University Mainz, 55131 Mainz, Germany.
Abstract:
The insulin-like growth factor (IGF) pathway plays an important role in several brain tumor entities. However, the lack of inhibitors crossing the blood-brain barrier remains a significant obstacle for clinical translation. Here, we targeted the IGF pathway using ceritinib, an off-target inhibitor of the IGF1 receptor (IGF1R) and insulin receptor (INSR), in a pediatric patient with an unclassified brain tumor and a notch receptor 1 (NOTCH1) germline mutation. Pathway analysis of the tumor revealed activation of the sonic hedgehog (SHH), the wingless and integrated-1 (WNT), the IGF, and the Notch pathway. The proliferation of the patient tumor cells (225ZL) was inhibited by arsenic trioxide (ATO), which is an inhibitor of the SHH pathway, by linsitinib, which is an inhibitor of IGF1R and INSR, and by ceritinib. 225ZL expressed INSR but not IGF1R at the protein level, and ceritinib blocked the phosphorylation of INSR. Our first personalized treatment included ATO, but because of side effects, we switched to ceritinib. After 46 days, we achieved a concentration of 1.70 µM of ceritinib in the plasma, and after 58 days, MRI confirmed that there was a response to the treatment. Ceritinib accumulated in the tumor at a concentration of 2.72 µM. Our data suggest ceritinib as a promising drug for the treatment of IGF-driven brain tumors.
Insights
Ceritinib effectively treated a pediatric brain tumor by targeting the insulin-like growth factor (IGF) pathway. This drug crossed the blood-brain barrier, showing promising results in a patient with an unclassified brain tumor.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Pharmacology
Background:
- The insulin-like growth factor (IGF) pathway is implicated in brain tumor development.
- Developing blood-brain barrier-penetrant inhibitors for the IGF pathway is crucial for clinical application.
Purpose of the Study:
- To evaluate ceritinib, an off-target inhibitor of IGF1R and INSR, for treating a pediatric unclassified brain tumor with IGF pathway activation.
- To assess the efficacy and pharmacokinetics of ceritinib in a personalized treatment approach.
Main Methods:
- Pathway analysis of tumor cells (225ZL) identified activated SHH, WNT, IGF, and Notch pathways.
- Assessed proliferation inhibition by arsenic trioxide (ATO), linsitinib, and ceritinib.
- Measured plasma and tumor concentrations of ceritinib and monitored treatment response via MRI.
Main Results:
- Ceritinib inhibited proliferation of patient tumor cells (225ZL) expressing INSR, blocking INSR phosphorylation.
- Achieved therapeutic plasma (1.70 µM) and tumor (2.72 µM) concentrations of ceritinib.
- MRI confirmed a positive treatment response after 58 days.
Conclusions:
- Ceritinib demonstrates potential as a therapeutic agent for IGF-driven brain tumors, including those with complex pathway activations.
- Personalized treatment with ceritinib showed clinical efficacy and favorable drug accumulation in the brain tumor.
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