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Published on: March 31, 2015
The ALK inhibitor PF-06463922 is effective as a single agent in neuroblastoma driven by expression of ALK and MYCN
J Guan1, E R Tucker2, H Wan1
1Department of Medical Biochemistry and Cell Biology, Institute of Biomedicine, Sahlgrenska Academy, University of Gothenburg, Gothenburg SE-405 30, Sweden.
Abstract:
The first-in-class inhibitor of ALK, c-MET and ROS1, crizotinib (Xalkori), has shown remarkable clinical efficacy in treatment of ALK-positive non-small cell lung cancer. However, in neuroblastoma, activating mutations in the ALK kinase domain are typically refractory to crizotinib treatment, highlighting the need for more potent inhibitors. The next-generation ALK inhibitor PF-06463922 is predicted to exhibit increased affinity for ALK mutants prevalent in neuroblastoma. We examined PF-06463922 activity in ALK-driven neuroblastoma models in vitro and in vivo In vitro kinase assays and cell-based experiments examining ALK mutations of increasing potency show that PF-06463922 is an effective inhibitor of ALK with greater activity towards ALK neuroblastoma mutants. In contrast to crizotinib, single agent administration of PF-06463922 caused dramatic tumor inhibition in both subcutaneous and orthotopic xenografts as well as a mouse model of high-risk neuroblastoma driven by Th-ALK(F1174L)/MYCN Taken together, our results suggest PF-06463922 is a potent inhibitor of crizotinib-resistant ALK mutations, and highlights an important new treatment option for neuroblastoma patients.
Insights
PF-06463922 effectively inhibits ALK mutations in neuroblastoma, outperforming crizotinib. This next-generation ALK inhibitor shows promise as a new treatment option for neuroblastoma patients with resistant mutations.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Crizotinib is an ALK inhibitor effective in ALK-positive non-small cell lung cancer.
- Activating ALK mutations in neuroblastoma are often resistant to crizotinib, necessitating novel therapies.
Purpose of the Study:
- To evaluate the efficacy of the next-generation ALK inhibitor PF-06463922 against ALK-driven neuroblastoma models.
- To assess PF-06463922's activity against crizotinib-resistant ALK mutations found in neuroblastoma.
Main Methods:
- In vitro kinase assays and cell-based experiments were used to test PF-06463922 against various ALK mutations.
- In vivo studies involved subcutaneous and orthotopic xenografts, and a mouse model of high-risk neuroblastoma.
Main Results:
- PF-06463922 demonstrated potent inhibition of ALK, with greater activity against neuroblastoma-specific ALK mutants.
- Single-agent PF-06463922 significantly inhibited tumor growth in both xenograft and genetically engineered mouse models.
Conclusions:
- PF-06463922 is a potent inhibitor of crizotinib-resistant ALK mutations in neuroblastoma.
- PF-06463922 represents a promising new therapeutic strategy for neuroblastoma patients.
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