Synergistic anti-tumor efficacy of mutant isocitrate dehydrogenase 1 inhibitor SYC-435 with standard therapy in patient-derived xenograft mouse models of glioma
•A novel pair of orthotopic PDX models of glioma bearing IDH1-R132H/R132C mutations.•New mutant IDH1i (SY-435) with standard therapy led to strong therapeutic efficacy.•H3K4/K9 methylation/mtDNA-encoded molecules mediate anti-tumor activity of SYC-435.•Discovered MYO1F, CTC1 and BCL9 as novel genes...
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Veröffentlicht in: | Translational oncology 2022-04, Vol.18, p.101368-101368, Article 101368 |
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Sprache: | eng |
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Zusammenfassung: | •A novel pair of orthotopic PDX models of glioma bearing IDH1-R132H/R132C mutations.•New mutant IDH1i (SY-435) with standard therapy led to strong therapeutic efficacy.•H3K4/K9 methylation/mtDNA-encoded molecules mediate anti-tumor activity of SYC-435.•Discovered MYO1F, CTC1 and BCL9 as novel genes that mediated SYC-435 resistance.
Clinical outcomes in patients with WHO grade II/III astrocytoma, oligodendroglioma or secondary glioblastoma remain poor. Isocitrate dehydrogenase 1 (IDH1) is mutated in > 70% of these tumors, making it an attractive therapeutic target. To determine the efficacy of our newly developed mutant IDH1 inhibitor, SYC-435 (1-hydroxypyridin-2-one), we treated orthotopic glioma xenograft model (IC-BT142AOA) carrying R132H mutation and our newly established orthotopic patient-derived xenograft (PDX) model of recurrent anaplastic oligoastrocytoma (IC-V0914AOA) bearing R132C mutation. In addition to suppressing IDH1 mutant cell proliferation in vitro, SYC-435 (15 mg/kg, daily x 28 days) synergistically prolonged animal survival times with standard therapies (Temozolomide + fractionated radiation) mediated by reduction of H3K4/H3K9 methylation and expression of mitochondrial DNA (mtDNA)-encoded molecules. Furthermore, RNA-seq of the remnant tumors identified genes (MYO1F, CTC1 and BCL9) and pathways (base excision repair, TCA cycle II, sirtuin signaling, protein kinase A, eukaryotic initiation factor 2 and α-adrenergic signaling) as mediators of therapy resistance. Our data demonstrated the efficacy SYC-435 in targeting IDH1 mutant gliomas when combined with standard therapy and identified a novel set of genes that should be prioritized for future studies to overcome SYC-435 resistance. |
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ISSN: | 1936-5233 1936-5233 |
DOI: | 10.1016/j.tranon.2022.101368 |