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Antitumor Activity of Radiation Therapy Combined with Checkpoint Kinase Inhibition in SHH/p53-Mutated Human
Zuzana Kuchařová1, Annegret Glasow1,2, Rolf-Dieter Kortmann1
1Department of Radiation Oncology, Leipzig University, Stephanstraße 9A, 04103 Leipzig, Germany.
Abstract:
Medulloblastoma (MB) is one of the most common malignant pediatric brain tumors. Current therapy results in a poor prognosis for high-risk SHH/p53-mutated MB, emphasizing the importance of more effective therapeutic strategies. Here, we investigated the potential radiosensitizing effects of the checkpoint kinase inhibitors (Chk-is) prexasertib (Chk1/2) and SAR-020106 (Chk1) in human SHH/p53-mutated MB in vitro and in vivo. UW228 and DAOY cells were treated with Chk-is and irradiation (RT). Metabolic activity, proliferation, and apoptosis were determined at d3, and long-term clonogenicity was determined at d14. DNA damage was assessed after 1, 24, and 72 h. Patient-derived SHH/p53-mutated, luciferase-transfected MB cells were implanted orthotopically into NSG mice (d0). Fractionated therapy (daily, d7-11) was applied. Body weight (BW) was documented daily, tumor growth weekly, and proliferation at d42. In vitro, Chk-is exhibited a dose-dependent reduction in metabolic activity, proliferation, and clonogenicity and increased apoptosis. A combination of Chk-is with RT enhanced these antitumor effects, including proliferation, apoptosis, and clonogenicity, and increased residual DNA damage compared to RT alone. In vivo, tumor growth was delayed by Chk-is alone. Low-dose prexasertib enhanced RT-induced tumor growth inhibition. High-dose prexasertib and SAR-020106 showed opposite effects, at least at later time points (n = 3). BW assessments revealed that the treatment was well tolerated. Our data indicate a potential benefit of Chk-is in combination with RT in SHH/p53-mutated MB. However, high-dose Chk-is may compromise the RT effect, possibly through anti-proliferative activity. Furthermore, we demonstrate, for the first time, the intracranial antitumor activity of the Chk1-specific inhibitor SAR-020106.
Insights
Checkpoint kinase inhibitors (Chk-is) combined with radiation therapy show promise for treating high-risk medulloblastoma (MB). While effective, high doses of Chk-is may reduce radiation
Area of Science:
- Oncology
- Molecular Biology
- Radiation Oncology
Background:
- Medulloblastoma (MB) is a common pediatric brain tumor with poor outcomes for high-risk SHH/p53-mutated subtypes.
- Current therapies for high-risk SHH/p53-mutated MB are insufficient, necessitating novel therapeutic strategies.
Purpose of the Study:
- To investigate the radiosensitizing potential of checkpoint kinase inhibitors (Chk-is) prexasertib (Chk1/2) and SAR-020106 (Chk1) in SHH/p53-mutated MB.
- To evaluate the combined effects of Chk-is and radiation therapy (RT) on MB cell viability, proliferation, apoptosis, and DNA damage in vitro and in vivo.
Main Methods:
- In vitro: UW228 and DAOY MB cells treated with Chk-is and RT; assessed metabolic activity, proliferation, apoptosis, and clonogenicity.
- In vivo: Patient-derived SHH/p53-mutated MB cells implanted orthotopically in NSG mice; fractionated therapy with Chk-is and RT; monitored body weight, tumor growth, and proliferation.
Main Results:
- Chk-is reduced metabolic activity, proliferation, and clonogenicity while increasing apoptosis in vitro.
- Combination of Chk-is with RT enhanced antitumor effects and increased residual DNA damage compared to RT alone.
- In vivo, Chk-is alone delayed tumor growth; low-dose prexasertib enhanced RT efficacy, while high-dose prexasertib and SAR-020106 showed varied effects.
Conclusions:
- Chk-is show potential as radiosensitizers for SHH/p53-mutated MB when combined with RT.
- High-dose Chk-is may counteract RT effects, possibly due to anti-proliferative activity.
- SAR-020106 demonstrated intracranial antitumor activity in vivo, a novel finding for Chk1-specific inhibitors.
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