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A chemical screen for medulloblastoma identifies quercetin as a putative radiosensitizer
Tonny Lagerweij1,2,3, Lotte Hiddingh1,2,3, Dennis Biesmans1,3
1Department of Pediatric Oncology/Hematology, VU University Medical Center, Amsterdam, The Netherlands.
Abstract:
Treatment of medulloblastoma in children fails in approximately 30% of patients, and is often accompanied by severe late sequelae. Therefore, more effective drugs are needed that spare normal tissue and diminish long-term side effects. Since radiotherapy plays a pivotal role in the treatment of medulloblastoma, we set out to identify novel drugs that could potentiate the effect of ionizing radiation.Thereto, a small molecule library, consisting of 960 chemical compounds, was screened for its ability to sensitize towards irradiation. This small molecule screen identified the flavonoid quercetin as a novel radiosensitizer for the medulloblastoma cell lines DAOY, D283-med, and, to a lesser extent, D458-med at low micromolar concentrations and irradiation doses used in fractionated radiation schemes. Quercetin did not affect the proliferation of neural precursor cells or normal human fibroblasts. Importantly, in vivo experiments confirmed the radiosensitizing properties of quercetin. Administration of this flavonoid at the time of irradiation significantly prolonged survival in orthotopically xenografted mice. Together, these findings indicate that quercetin is a potent radiosensitizer for medulloblastoma cells that may be a promising lead for the treatment of medulloblastoma in patients.
Insights
Quercetin, a flavonoid, enhances radiation therapy effectiveness against medulloblastoma cells. This natural compound shows promise for improving pediatric cancer treatment with fewer side effects.
Area of Science:
- Oncology
- Pharmacology
- Radiotherapy
Background:
- Medulloblastoma treatment failure occurs in 30% of pediatric patients.
- Current treatments cause severe long-term side effects.
- There is a need for effective drugs that spare normal tissue.
Purpose of the Study:
- To identify novel drugs that potentiate the effects of ionizing radiation.
- To find radiosensitizers for medulloblastoma treatment.
Main Methods:
- Screening of a 960-compound small molecule library.
- Testing radiosensitizing effects on medulloblastoma cell lines (DAOY, D283-med, D458-med).
- In vivo studies using orthotopically xenografted mice.
Main Results:
- Quercetin identified as a novel radiosensitizer for medulloblastoma cells.
- Effective at low micromolar concentrations and fractionated radiation doses.
- Quercetin did not affect neural precursor cell or fibroblast proliferation.
- In vivo studies confirmed quercetin's radiosensitizing properties and prolonged survival.
Conclusions:
- Quercetin is a potent radiosensitizer for medulloblastoma.
- Quercetin may be a promising therapeutic lead for medulloblastoma treatment.
- Potential for improved pediatric cancer therapy with reduced side effects.
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