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Published on: May 15, 2019
Targeting the Unwindosome by Mebendazole Is a Vulnerability of Chemoresistant Hepatoblastoma
Qian Li1, Salih Demir1, Álvaro Del Río-Álvarez2
1Department of Pediatric Surgery, Dr. von Hauner Children's Hospital, University Hospital, LMU Munich, 80337 Munich, Germany.
Abstract:
Resistance to conventional chemotherapy remains a huge challenge in the clinical management of hepatoblastoma, the most common liver tumor in childhood. By integrating the gene expression data of hepatoblastoma patients into the perturbation prediction tool Connectivity Map, we identified the clinical widely used anthelmintic mebendazole as a drug to circumvent chemoresistance in permanent and patient-derived xenograft cell lines that are resistant to cisplatin, the therapeutic backbone of hepatoblastoma treatment. Viability assays clearly indicated a potent reduction of tumor cell growth upon mebendazole treatment in a dose-dependent manner. The combination of mebendazole and cisplatin revealed a strong synergistic effect, which was comparable to the one seen with cisplatin and doxorubicin, the current treatment for high-risk hepatoblastoma patients. Moreover, mebendazole treatment resulted in reduced colony and tumor spheroid formation capabilities, cell cycle arrest, and induction of apoptosis of hepatoblastoma cells. Mechanistically, mebendazole causes blockage of microtubule formation and transcriptional downregulation of genes encoding the unwindosome, which are highly expressed in chemoresistant tumors. Most importantly, mebendazole significantly reduced tumor growth in a subcutaneous xenograft transplantation mouse model without side effects. In conclusion, our results strongly support the clinical use of mebendazole in the treatment of chemoresistant hepatoblastoma and highlight the potential theranostic value of unwindosome-associated genes.
Insights
Mebendazole effectively combats chemoresistant hepatoblastoma by inhibiting tumor growth and synergizing with cisplatin. This anthelmintic shows promise as a new treatment for childhood liver cancer, even in resistant cases.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Hepatoblastoma, a common childhood liver tumor, presents significant treatment challenges due to chemoresistance.
- Cisplatin is a primary chemotherapy agent, but resistance limits its efficacy.
Purpose of the Study:
- To identify novel therapeutic strategies to overcome cisplatin resistance in hepatoblastoma.
- To evaluate mebendazole as a potential agent against chemoresistant hepatoblastoma.
Main Methods:
- Gene expression analysis integrated with the Connectivity Map tool to identify potential drugs.
- In vitro viability assays, colony formation, spheroid formation, cell cycle, and apoptosis studies.
- In vivo efficacy assessment in a subcutaneous xenograft mouse model.
Main Results:
- Mebendazole significantly reduced hepatoblastoma cell growth and synergized with cisplatin, showing efficacy comparable to current high-risk treatments.
- Mebendazole induced cell cycle arrest, apoptosis, and inhibited microtubule formation.
- Mebendazole demonstrated significant tumor growth reduction in vivo without observable side effects.
Conclusions:
- Mebendazole is a promising candidate for treating chemoresistant hepatoblastoma.
- The findings support the clinical investigation of mebendazole for hepatoblastoma, particularly in cases resistant to conventional chemotherapy.
- Unwindosome-associated genes may serve as potential theranostic markers.
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