2024
EXTH-23. NEW DNA-CROSSLINKING CHEMOTHERAPY IS EFFECTIVE AGAINST POST-TEMOZOLOMIDE MISMATCH REPAIR-DEFICIENT PATIENT-DERIVED HYPERMUTANT GLIOMAS
McCord M, Wang W, An S, Sears T, Sarkaria J, James C, Ruggieri B, Bindra R, Horbinski C. EXTH-23. NEW DNA-CROSSLINKING CHEMOTHERAPY IS EFFECTIVE AGAINST POST-TEMOZOLOMIDE MISMATCH REPAIR-DEFICIENT PATIENT-DERIVED HYPERMUTANT GLIOMAS. Neuro-Oncology 2024, 26: viii241-viii241. PMCID: PMC11553709, DOI: 10.1093/neuonc/noae165.0954.Peer-Reviewed Original ResearchPatient-derived xenograftsDNA inter-strand cross-linksMismatch repairDNA mismatch repairGlioblastoma cell linesBase mismatchesShRNA knockdownGlioblastoma patient-derived xenograftsMGMT deficiencyMGMT-deficient cellsDNA damageInter-strand cross-linksDNAMMR-deficient tumor cellsCell linesPatient-derived xenograft modelsComplementary in vitro studiesAlkylating agent temozolomideMMR genesVehicle control miceDays post-engraftmentApoptosisMismatch repair mutationsDNA basesResistance to temozolomide
2007
Regulation of DNA repair in hypoxic cancer cells
Bindra RS, Crosby ME, Glazer PM. Regulation of DNA repair in hypoxic cancer cells. Cancer And Metastasis Reviews 2007, 26: 249-260. PMID: 17415527, DOI: 10.1007/s10555-007-9061-3.Peer-Reviewed Original ResearchConceptsGenetic instabilityMismatch repairHypoxia-induced genetic instabilityDNA damage response factorsDamage response factorsDNA damage responseCellular stress responseATM/ATRDNA repair pathwaysHomologous recombination pathwayCancer cellsAcute DNA damage responseDNA mismatch repairTumor microenvironmental stressDamage responseKey genesHR repairDNA repairRepair pathwaysMicroenvironmental stressHypoxic cancer cellsStress responsePossible mechanistic explanationRecombination pathwayResponse factor