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Combination Therapies Targeting ALK-aberrant Neuroblastoma in Preclinical Models
Elizabeth R Tucker1, Irene Jiménez2,3, Lindi Chen4
1Pediatric Tumour Biology and Therapeutics Team, Centre for Paediatric Oncology Experimental Medicine, Division of Clinical Studies, The Institute of Cancer Research, London, United Kingdom.
Purpose:
ALK-activating mutations are identified in approximately 10% of newly diagnosed neuroblastomas and ALK amplifications in a further 1%-2% of cases. Lorlatinib, a third-generation anaplastic lymphoma kinase (ALK) inhibitor, will soon be given alongside induction chemotherapy for children with ALK-aberrant neuroblastoma. However, resistance to single-agent treatment has been reported and therapies that improve the response duration are urgently required. We studied the preclinical combination of lorlatinib with chemotherapy, or with the MDM2 inhibitor, idasanutlin, as recent data have suggested that ALK inhibitor resistance can be overcome through activation of the p53-MDM2 pathway.
Experimental Design:
We compared different ALK inhibitors in preclinical models prior to evaluating lorlatinib in combination with chemotherapy or idasanutlin. We developed a triple chemotherapy (CAV: cyclophosphamide, doxorubicin, and vincristine) in vivo dosing schedule and applied this to both neuroblastoma genetically engineered mouse models (GEMM) and patient-derived xenografts (PDX).
Results:
Lorlatinib in combination with chemotherapy was synergistic in immunocompetent neuroblastoma GEMM. Significant growth inhibition in response to lorlatinib was only observed in the ALK-amplified PDX model with high ALK expression. In this PDX, lorlatinib combined with idasanutlin resulted in complete tumor regression and significantly delayed tumor regrowth.
Conclusions:
In our preclinical neuroblastoma models, high ALK expression was associated with lorlatinib response alone or in combination with either chemotherapy or idasanutlin. The synergy between MDM2 and ALK inhibition warrants further evaluation of this combination as a potential clinical approach for children with neuroblastoma.
Insights
Combining lorlatinib with chemotherapy or idasanutlin showed promise in preclinical neuroblastoma models. The combination of lorlatinib and idasanutlin led to complete tumor regression in specific models, suggesting a potential new therapy for neuroblastoma.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Anaplastic lymphoma kinase (ALK)-activating mutations and amplifications occur in neuroblastoma.
- Lorlatinib, an ALK inhibitor, is a potential treatment for ALK-aberrant neuroblastoma.
- Resistance to single-agent ALK inhibitors necessitates novel therapeutic strategies.
Purpose of the Study:
- To investigate the preclinical efficacy of combining lorlatinib with chemotherapy or the MDM2 inhibitor idasanutlin.
- To explore overcoming ALK inhibitor resistance via p53-MDM2 pathway activation.
Main Methods:
- Compared various ALK inhibitors in preclinical neuroblastoma models.
- Evaluated lorlatinib in combination with chemotherapy (cyclophosphamide, doxorubicin, vincristine) or idasanutlin.
- Utilized neuroblastoma genetically engineered mouse models (GEMM) and patient-derived xenografts (PDX).
Main Results:
- Lorlatinib plus chemotherapy demonstrated synergy in immunocompetent neuroblastoma GEMM.
- Significant growth inhibition with lorlatinib was observed in ALK-amplified PDX models with high ALK expression.
- Lorlatinib combined with idasanutlin achieved complete tumor regression and delayed regrowth in ALK-amplified PDX models.
Conclusions:
- High ALK expression correlated with response to lorlatinib, alone or in combination.
- The synergy between MDM2 and ALK inhibition suggests a promising clinical approach for neuroblastoma.
- Further evaluation of lorlatinib and idasanutlin combination therapy is warranted.
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