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Regorafenib: Antitumor Activity upon Mono and Combination Therapy in Preclinical Pediatric Malignancy Models
Estelle Daudigeos-Dubus1,2,3, Ludivine Le Dret1,2,3, Claudia Lanvers-Kaminsky4
1Université Paris-Sud 11, Vectorology and Anticancer Therapeutics, UMR 8203, Villejuif, France.
Abstract:
The multikinase inhibitor regorafenib (BAY 73-4506) exerts both anti-angiogenic and anti-tumorigenic activity in adult solid malignancies mainly advanced colorectal cancer and gastrointestinal stromal tumors. We intended to explore preclinically the potential of regorafenib against solid pediatric malignancies alone and in combination with anticancer agents to guide the pediatric development plan. In vitro effects on cell proliferation were screened against 33 solid tumor cell lines of the Innovative Therapies for Children with Cancer (ITCC) panel covering five pediatric solid malignancies. Regorafenib inhibited cell proliferation with a mean half maximal growth inhibition of 12.5 μmol/L (range 0.7 μmol/L to 28 μmol/L). In vivo, regorafenib was evaluated alone at 10 or 30 mg/kg/d or in combination with radiation, irinotecan or the mitogen-activated protein kinase kinase (MEK) inhibitor refametinib against various tumor types, including patient-derived brain tumor models with an amplified platelet-derived growth factor receptor A (PDGFRA) gene. Regorafenib alone significantly inhibited tumor growth in all xenografts derived from nervous system and connective tissue tumors. Enhanced effects were observed when regorafenib was combined with irradiation and irinotecan against PDGFRA amplified IGRG93 glioma and IGRM57 medulloblastoma respectively, resulting in 100% tumor regressions. Antitumor activity was associated with decreased tumor vascularization, inhibition of PDGFR signaling, and induction of apoptotic cell death. Our work demonstrates that regorafenib exhibits significant antitumor activity in a wide spectrum of preclinical pediatric models through inhibition of angiogenesis and induction of apoptosis. Furthermore, radio- and chemosensitizing effects were observed with DNA damaging agents in PDGFR amplified tumors.
Insights
Regorafenib shows significant preclinical antitumor activity in pediatric solid tumors by inhibiting angiogenesis and inducing apoptosis. It also enhances radiation and chemotherapy effects in specific pediatric brain tumors.
Area of Science:
- Oncology
- Pediatric Oncology
- Pharmacology
Background:
- Regorafenib is a multikinase inhibitor with anti-angiogenic and anti-tumorigenic properties in adult cancers.
- Its potential in pediatric solid malignancies remains largely unexplored.
Purpose of the Study:
- To investigate the preclinical efficacy of regorafenib against pediatric solid tumors.
- To evaluate regorafenib alone and in combination with other anticancer agents for pediatric cancer treatment.
Main Methods:
- In vitro screening of regorafenib against 33 pediatric solid tumor cell lines.
- In vivo evaluation in xenograft models, including patient-derived brain tumors.
- Combination studies with radiation, irinotecan, and refametinib (a MEK inhibitor).
Main Results:
- Regorafenib inhibited cell proliferation in vitro (mean IC50 12.5 μmol/L).
- Regorafenib demonstrated significant in vivo antitumor activity in nervous system and connective tissue tumor xenografts.
- Combinations with irradiation and irinotecan achieved 100% tumor regressions in specific PDGFRA-amplified brain tumors.
Conclusions:
- Regorafenib exhibits broad preclinical antitumor activity in pediatric solid tumor models.
- Mechanisms include inhibition of angiogenesis, PDGFR signaling, and induction of apoptosis.
- Regorafenib shows potential as a radio- and chemosensitizer, particularly in PDGFRA-amplified tumors.
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