Improved therapy for neuroblastoma using a combination approach: superior efficacy with vismodegib and topotecan
Nagendra K Chaturvedi1, Timothy R McGuire2, Don W Coulter3
1Department of Genetics, Cell Biology and Anatomy, University of Nebraska Medical Center, Omaha, NE, USA.
Abstract:
Aberrant activation/expression of pathways/molecules including NF-kB, mTOR, hedgehog and polo-like-kinase-1 (PLK1) are correlated with poor-prognosis neuroblastoma. Therefore, to identify a most efficacious treatment for neuroblastoma, we investigated the efficacy of NF-kB/mTOR dual-inhibitor 13-197, hedgehog inhibitor vismodegib and PLK1 inhibitor BI2536 alone or combined with topotecan against high-risk neuroblastoma. The in vitro efficacy of the inhibitors alone or combined with topotecan on cell growth/apoptosis and molecular mechanism(s) were investigated. Results showed that as single agents 13-197, BI2536 and vismodegib significantly decreased neuroblastoma cell growth and induced apoptosis by targeting associated pathways/molecules. In combination with topotecan, 13-197 did not show significant additive/synergistic effects against neuroblastoma. However, BI2536 or vismodegib further significantly decreased neuroblastoma cell growth/survival. These results clearly showed that vismodegib combination with topotecan was synergistic and more efficacious compared with BI2536 in combination. Together, in vitro data demonstrated that vismodegib was most efficacious in potentiating topotecan-induced antineuroblastoma effects. Therefore, we tested the combined efficacy of vismodegib and topotecan against neuroblastoma in vivo using NSG mice. This resulted in significantly (p<0.001) reduced tumor growth and increased survival of mice. Together, the combination of vismodegib and topotecan showed a significant enhanced antineuroblastoma efficacy by targeting associated pathways/molecules which warrants further preclinical evaluation for translation to the clinic.
Insights
Vismodegib combined with topotecan effectively reduced neuroblastoma growth and increased survival in mice. This combination therapy shows promise for treating high-risk neuroblastoma by targeting key molecular pathways.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Aberrant signaling pathways like NF-kB, mTOR, hedgehog, and PLK1 are linked to poor-prognosis neuroblastoma.
- Targeting these pathways offers a potential therapeutic strategy for neuroblastoma.
Purpose of the Study:
- To evaluate the efficacy of novel inhibitors (13-197, vismodegib, BI2536) alone and in combination with topotecan against high-risk neuroblastoma.
- To identify the most effective combination therapy for neuroblastoma treatment.
Main Methods:
- In vitro assessment of inhibitors' effects on neuroblastoma cell growth and apoptosis.
- In vivo studies using NSG mice to evaluate the efficacy of promising drug combinations.
- Analysis of molecular mechanisms targeted by the inhibitors.
Main Results:
- Single-agent inhibitors (13-197, BI2536, vismodegib) reduced neuroblastoma cell growth and induced apoptosis.
- Vismodegib combined with topotecan demonstrated synergistic effects, significantly decreasing cell growth and survival.
- In vivo studies confirmed that vismodegib and topotecan combination significantly reduced tumor growth and increased mouse survival.
Conclusions:
- Vismodegib in combination with topotecan is a highly efficacious treatment for neuroblastoma, outperforming other tested combinations.
- The combined therapy warrants further preclinical evaluation for clinical translation in neuroblastoma treatment.
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