2022
Efficacy of laser interstitial thermal therapy (LITT) for newly diagnosed and recurrent IDH wild-type glioblastoma
de Groot JF, Kim AH, Prabhu S, Rao G, Laxton AW, Fecci PE, O’Brien B, Sloan A, Chiang V, Tatter SB, Mohammadi AM, Placantonakis DG, Strowd RE, Chen C, Hadjipanayis C, Khasraw M, Sun D, Piccioni D, Sinicrope KD, Campian JL, Kurz SC, Williams B, Smith K, Tovar-Spinoza Z, Leuthardt EC. Efficacy of laser interstitial thermal therapy (LITT) for newly diagnosed and recurrent IDH wild-type glioblastoma. Neuro-Oncology Advances 2022, 4: vdac040. PMID: 35611270, PMCID: PMC9122789, DOI: 10.1093/noajnl/vdac040.Peer-Reviewed Original ResearchMedian overall survivalLaser interstitial thermal therapyOverall survivalRecurrent patientsWild-type glioblastomaRecurrent glioblastomaGlioblastoma patientsProspective multicenter registry dataMulticenter registry dataRecurrent glioblastoma patientsChemo/radiationPrimary brain tumorsInterstitial thermal therapyIDH wild-type glioblastomaAdjuvant chemotherapyAdverse eventsImproved survivalClinical outcomesPromoter methylation statusMultivariable differenceSurgical approachTreatment optionsRegistry dataUS CentersTumor volume
2021
Clinical Significance of PDCD4 in Melanoma by Subcellular Expression and in Tumor-Associated Immune Cells
Tran TT, Rane CK, Zito CR, Weiss SA, Jessel S, Lucca L, Lu BY, Oria VO, Adeniran A, Chiang VL, Omay SB, Hafler DA, Kluger HM, Jilaveanu LB. Clinical Significance of PDCD4 in Melanoma by Subcellular Expression and in Tumor-Associated Immune Cells. Cancers 2021, 13: 1049. PMID: 33801444, PMCID: PMC7958624, DOI: 10.3390/cancers13051049.Peer-Reviewed Original ResearchPDCD4 expressionImproved survivalTumor-Associated Immune CellsTumor microenvironmentNeoplastic progressionBrain metastasis outcomesExtracranial metastatic diseaseMelanoma brain metastasesNatural killer cellsBrain metastasis samplesImmune cell infiltrationImmune cell subsetsMultiple tissue microarraysExpression of PDCD4Brain metastasesMetastatic diseaseClinical outcomesKiller cellsClinicopathological variablesIntracranial metastasesCell subsetsCell infiltrationCell death 4Immune cellsPrimary melanoma
2018
Effect of Targeted Therapies on Prognostic Factors, Patterns of Care, and Survival in Patients With Renal Cell Carcinoma and Brain Metastases
Sperduto PW, Deegan BJ, Li J, Jethwa KR, Brown PD, Lockney N, Beal K, Rana NG, Attia A, Tseng CL, Sahgal A, Shanley R, Sperduto WA, Lou E, Zahra A, Buatti JM, Yu JB, Chiang V, Molitoris JK, Masucci L, Roberge D, Shi DD, Shih HA, Olson A, Kirkpatrick JP, Braunstein S, Sneed P, Mehta MP. Effect of Targeted Therapies on Prognostic Factors, Patterns of Care, and Survival in Patients With Renal Cell Carcinoma and Brain Metastases. International Journal Of Radiation Oncology • Biology • Physics 2018, 101: 845-853. PMID: 29976497, PMCID: PMC6925530, DOI: 10.1016/j.ijrobp.2018.04.006.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultAgedAged, 80 and overAngiogenesis InhibitorsAntineoplastic AgentsBrain NeoplasmsCarcinoma, Renal CellCause of DeathCranial IrradiationCytokinesFemaleHemoglobinsHumansImmunotherapyKarnofsky Performance StatusKidney NeoplasmsMaleMiddle AgedMultivariate AnalysisPrognosisRadiosurgeryRetrospective StudiesYoung AdultConceptsPatterns of careNew brain metastasesBrain metastasesLarge contemporary cohortPrognostic factorsMedian survivalContemporary cohortRCC patientsDiagnosis of BMWhole-brain radiation therapyRenal cell carcinoma patientsRetrospective institutional review boardBrain metastasis therapySystemic treatment optionsAdditional prognostic factorsCell carcinoma patientsRenal cell carcinomaInstitutional review boardNonneurologic causesCarcinoma patientsImproved survivalNeurologic causesMultivariable analysisClinical parametersPresent cohort
2016
The Role of Laser-Induced Thermal Therapy in the Management of Malignant Gliomas
Fomchenko E, Chiang V. The Role of Laser-Induced Thermal Therapy in the Management of Malignant Gliomas. 2016, 103-119. DOI: 10.1007/978-3-319-49864-5_7.Peer-Reviewed Original ResearchLaser interstitial thermal therapyHigh-grade gliomasSurgical resectionUse of LITTCommon primary CNS malignancyRecurrent high-grade gliomaOverall treatment algorithmPrimary CNS malignanciesRole of LITTPoor surgical candidatesStandard surgical approachDe novo diagnosisDeep gray nucleiInterstitial thermal therapyLaser thermal ablationAggressive treatmentCNS malignanciesSurgical candidatesImproved survivalInitial diagnosisSignificant morbidityTreatment algorithmMulticenter studySurgical approachBasal ganglia
2015
Extended Survival and Prognostic Factors for Patients With ALK-Rearranged Non–Small-Cell Lung Cancer and Brain Metastasis
Johung KL, Yeh N, Desai NB, Williams TM, Lautenschlaeger T, Arvold ND, Ning MS, Attia A, Lovly CM, Goldberg S, Beal K, Yu JB, Kavanagh BD, Chiang VL, Camidge DR, Contessa JN. Extended Survival and Prognostic Factors for Patients With ALK-Rearranged Non–Small-Cell Lung Cancer and Brain Metastasis. Journal Of Clinical Oncology 2015, 34: 123-129. PMID: 26438117, PMCID: PMC5070549, DOI: 10.1200/jco.2015.62.0138.Peer-Reviewed Original ResearchMeSH KeywordsAdultAgedAnaplastic Lymphoma KinaseAntineoplastic AgentsBrain NeoplasmsCarbazolesCarcinoma, Non-Small-Cell LungCranial IrradiationCrizotinibDisease-Free SurvivalFemaleFollow-Up StudiesGene RearrangementHumansKaplan-Meier EstimateKarnofsky Performance StatusLung NeoplasmsMaleMiddle AgedMolecular Targeted TherapyNeoplasm StagingPiperidinesPrognosisProtein Kinase InhibitorsProtein-Tyrosine KinasesPyrazolesPyridinesPyrimidinesRadiosurgeryReceptor Protein-Tyrosine KinasesRisk AssessmentRisk FactorsSmokingSulfonesConceptsIntracranial progression-free survivalBrain metastasesProgression-free survivalPrognostic factorsLung cancerMedian intracranial progression-free survivalNon-small cell lung cancerTyrosine kinase inhibitor therapyProgressive brain metastasesRefinement of prognosisKarnofsky performance scorePercent of patientsClinical prognostic factorsPopulation of patientsSingle brain metastasisCell lung cancerKinase inhibitor therapyCox proportional hazardsMulti-institutional studyMedian OSExtracranial metastasesImproved survivalInhibitor therapyInitial treatmentMultivariable analysisCharacterization of PD-L1 Expression and Associated T-cell Infiltrates in Metastatic Melanoma Samples from Variable Anatomic Sites
Kluger HM, Zito CR, Barr ML, Baine MK, Chiang VL, Sznol M, Rimm DL, Chen L, Jilaveanu LB. Characterization of PD-L1 Expression and Associated T-cell Infiltrates in Metastatic Melanoma Samples from Variable Anatomic Sites. Clinical Cancer Research 2015, 21: 3052-3060. PMID: 25788491, PMCID: PMC4490112, DOI: 10.1158/1078-0432.ccr-14-3073.Peer-Reviewed Original ResearchConceptsPD-L1 expressionT-cell contentPD-1/PD-L1 inhibitorsHigher T-cell contentT-cell infiltratesPD-L1 inhibitorsAnatomic sitesBrain metastasesMetastatic melanomaTissue microarrayHigh PD-L1 expressionLess PD-L1 expressionLow PD-L1 expressionTumor PD-L1 expressionHigher TIL contentImproved overall survivalT cell infiltrationLess T cellsMetastatic melanoma samplesExtracerebral metastasesCerebral metastasesOverall survivalDermal metastasesImproved survivalPD-L1
2006
Multivariate analysis identifies factors that affect survival after stereotactic radiosurgery for brain metastases
Diluna M, King J, Knisely J, Bond J, De Lotbiniere A, Chiang V. Multivariate analysis identifies factors that affect survival after stereotactic radiosurgery for brain metastases. Journal Of Clinical Oncology 2006, 24: 11500-11500. DOI: 10.1200/jco.2006.24.18_suppl.11500.Peer-Reviewed Original ResearchCell lung carcinomaStereotactic radiosurgeryBrain metastasesCerebral metastasesSurgical resectionEsophageal cancerLung carcinomaBreast cancerNon-small cell lung carcinomaSmall cell lung carcinomaSystemic controlConnecticut Tumor RegistryLocation of metastasesNumber of metastasesPatient-related factorsTotal tumor burdenSystemic disease controlKaplan-Meier plotsSignificant independent predictorsSurvival dataTotal tumor volumeMedian survivalWorse survivalImproved survivalIndependent predictors