2022
Comprehensive Analysis of Metabolic Isozyme Targets in Cancer
Marczyk M, Gunasekharan V, Casadevall D, Qing T, Foldi J, Sehgal R, Shan NL, Blenman KRM, O'Meara TA, Umlauf S, Surovtseva YV, Muthusamy V, Rinehart J, Perry RJ, Kibbey R, Hatzis C, Pusztai L. Comprehensive Analysis of Metabolic Isozyme Targets in Cancer. Cancer Research 2022, 82: 1698-1711. PMID: 35247885, PMCID: PMC10883296, DOI: 10.1158/0008-5472.can-21-3983.Peer-Reviewed Original ResearchConceptsPotential therapeutic targetAcetyl-CoA carboxylase 1Therapeutic targetCancer typesCell linesBreast cancer viabilityPatient-derived xenograftsNovel metabolic targetsCorresponding cell linesExpression patternsDrug treatmentMatching normal tissuesRelated commentaryTumor growthMalignant transformationSmall molecule inhibitionCancer viabilityCancer Cell Line EncyclopediaNormal tissuesMetabolic vulnerabilitiesCarboxylase 1Anticancer therapyCellular changesCell proliferationMetabolic reprogramming
2018
Incorporating Genomics Into the Care of Patients With Advanced Breast Cancer
Kratz J, Burkard M, O'Meara T, Pusztai L, Veitch Z, Bedard PL. Incorporating Genomics Into the Care of Patients With Advanced Breast Cancer. American Society Of Clinical Oncology Educational Book 2018, 38: 56-64. PMID: 30231387, DOI: 10.1200/edbk_200731.Peer-Reviewed Original ResearchConceptsBreast cancerGenomic alterationsTumor genomic heterogeneityAdvanced breast cancerMetastatic breast cancerRecurrent genomic alterationsCare of patientsGenetic diversityMetastatic tumor sitesImproved clinical careGenomic sequencingLaboratory-developed testsClinical trialsGenomic heterogeneityDrug treatmentPatient tumorsClinical careSame patientBlood samplesHeterogeneous diseaseClinical relevanceTumor sitePatientsClonal evolutionCell populations