2021
PARP inhibitors in head and neck cancer: Molecular mechanisms, preclinical and clinical data
Moutafi M, Economopoulou P, Rimm D, Psyrri A. PARP inhibitors in head and neck cancer: Molecular mechanisms, preclinical and clinical data. Oral Oncology 2021, 117: 105292. PMID: 33862558, DOI: 10.1016/j.oraloncology.2021.105292.Peer-Reviewed Original ResearchConceptsPoly (ADP-ribose) polymerase (PARP) inhibitorsCheckpoint inhibitorsCell death 1 (PD-1) checkpoint inhibitorsDeath-1 checkpoint inhibitorsDeath ligand 1 (PD-L1) expressionPARP inhibitorsPD-1 checkpoint inhibitorsNeck squamous cell carcinomaCornerstone of treatmentLigand 1 expressionImmune modulating effectsSquamous cell carcinomaSuccessful treatment outcomeDesign of trialsOutcome of therapyTreatment landscapeCell carcinomaNeck cancerTreatment outcomesClinical dataTherapeutic strategiesDNA damageRecent approvalImmune primingNucleotide excision repair
2019
The Impact and Toxicity of Checkpoint Inhibitors in Management of Lung Cancer
Andrews S, Davies M. The Impact and Toxicity of Checkpoint Inhibitors in Management of Lung Cancer. 2019, 65-84. DOI: 10.1007/978-3-030-16550-5_7.Peer-Reviewed Original Research
2017
Racial disparities in the use of programmed death-1 checkpoint inhibitors.
O'Connor J, Seidl-Rathkopf K, Torres A, You P, Nussbaum N, Fessele K, Darius K, Adelson K, Yin E, Presley C, Chiang A, Ross J, Abernethy A, Gross C. Racial disparities in the use of programmed death-1 checkpoint inhibitors. Journal Of Clinical Oncology 2017, 35: 3068-3068. DOI: 10.1200/jco.2017.35.15_suppl.3068.Peer-Reviewed Original ResearchDeath-1 checkpoint inhibitorsElectronic health record databaseLines of therapySystemic therapyCheckpoint inhibitorsCancer clinicRacial disparitiesAdvanced non-small cell lung cancerNon-small cell lung cancerMetastatic renal cell carcinomaAnti-PD1 treatmentCell lung cancerRenal cell carcinomaHealth record databaseSignificant racial disparitiesNew cancer drugsSquamous histologyStudy drugReal-world practiceAdvanced melanomaTherapy linesWhite patientsMale sexCell carcinomaLung cancerAdoption of immunotherapy into real-world practice: Insights from the use of checkpoint inhibitors.
O'Connor J, Seidl-Rathkopf K, You P, Nussbaum N, Torres A, Fessele K, Darius K, Adelson K, Yin E, Presley C, Chiang A, Ross J, Abernethy A, Gross C. Adoption of immunotherapy into real-world practice: Insights from the use of checkpoint inhibitors. Journal Of Clinical Oncology 2017, 35: e14583-e14583. DOI: 10.1200/jco.2017.35.15_suppl.e14583.Peer-Reviewed Original ResearchElectronic health record databaseReal-world practiceCheckpoint inhibitorsAdvanced non-small cell lung cancerFDA approvalNon-small cell lung cancerDeath-1 checkpoint inhibitorsMetastatic renal cell carcinomaAdoption of immunotherapyGeneralizability of trialsCell lung cancerRenal cell carcinomaDrug Administration approvalHealth record databaseChi-square testStudy drugOlder patientsSystemic therapyAdvanced melanomaMedian ageTherapy linesCell carcinomaLung cancerAdministration approvalClinical trials
2016
Nivolumab and Pembrolizumab for Non–Small Cell Lung Cancer
Morgensztern D, Herbst RS. Nivolumab and Pembrolizumab for Non–Small Cell Lung Cancer. Clinical Cancer Research 2016, 22: 3713-3717. PMID: 27252413, DOI: 10.1158/1078-0432.ccr-15-2998.Peer-Reviewed Original ResearchMeSH KeywordsAntibodies, MonoclonalAntibodies, Monoclonal, HumanizedAntineoplastic Combined Chemotherapy ProtocolsCarcinoma, Non-Small-Cell LungClinical Trials, Phase I as TopicHumansLung NeoplasmsNivolumabPrognosisProgrammed Cell Death 1 ReceptorRandomized Controlled Trials as TopicTreatment OutcomeConceptsCheckpoint inhibitorsClinical trialsAdvanced stage non-small lung cancerDeath-1 checkpoint inhibitorsLarge randomized clinical trialsNon-small lung cancerSecond-line docetaxelSurvivors 3 yearsBest supportive careSubset of patientsRandomized clinical trialsOverall survivalSupportive careCombination therapyLung cancerModest benefitPatientsPhase IImmunotherapyReliable predictorTherapyInhibitorsTrialsTreatmentNivolumab
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