2025
Asciminib plus dasatinib and prednisone for Philadelphia chromosome–positive acute leukemia
Luskin M, Murakami M, Keating J, Flamand Y, Winer E, Garcia J, Stahl M, Stone R, Wadleigh M, Jaeckle S, Hagopian E, Weinstock D, Liegel J, McMasters M, Wang E, Stock W, DeAngelo D. Asciminib plus dasatinib and prednisone for Philadelphia chromosome–positive acute leukemia. Blood 2025, 145: 577-589. PMID: 39374521, DOI: 10.1182/blood.2024025800.Peer-Reviewed Original ResearchConceptsAcute leukemiaPhiladelphia chromosome-positive acute leukemiaRecommended phase 2 dosePh+ acute lymphoblastic leukemiaHematopoietic stem cell transplantationDe novo ALLHematologic remission rateLymphoid blast crisisMaximum tolerated doseStem cell transplantationPhase 1 studyChronic myeloid leukemiaMulticolor flow cytometryAcute lymphoblastic leukemiaVaso-occlusive eventsCytogenetic remissionBlast crisisSymptomatic pancreatitisTolerated doseRemission ratePh+ ALLCell transplantationMedian ageEnzyme elevationLymphoblastic leukemia
2024
Targeted therapies for myelodysplastic syndromes/neoplasms (MDS): current landscape and future directions
Bidikian A, Bewersdorf J, Shallis R, Getz T, Stempel J, Kewan T, Stahl M, Zeidan A. Targeted therapies for myelodysplastic syndromes/neoplasms (MDS): current landscape and future directions. Expert Review Of Anticancer Therapy 2024, 24: 1131-1146. PMID: 39367718, DOI: 10.1080/14737140.2024.2414071.Peer-Reviewed Original ResearchErythropoiesis-stimulating agentsTargeted therapyLR-MDSHR-MDSHypoxia-inducible factorAllogeneic hematopoietic stem cell transplantationLandscape of targeted therapiesHematopoietic stem cell transplantationHeterogeneous group of hematologic malignanciesGroup of hematologic malignanciesMolecular prognostic toolsDuration of responseStem cell transplantationTrial designClinical trial designHypomethylating agentsCell transplantationHematologic malignanciesImprove patient outcomesRNA splicing machineryImmune evasionPrognostic toolTGF-betaTherapyEffective treatmentIntensive induction chemotherapy vs hypomethylating agents in combination with venetoclax in NPM1-mutant AML
Bewersdorf J, Shimony S, Shallis R, Liu Y, Berton G, Schaefer E, Zeidan A, Goldberg A, Stein E, Marcucci G, Bystrom R, Lindsley R, Chen E, Perez J, Stein A, Pullarkat V, Aldoss I, DeAngelo D, Neuberg D, Stone R, Garciaz S, Ball B, Stahl M. Intensive induction chemotherapy vs hypomethylating agents in combination with venetoclax in NPM1-mutant AML. Blood Advances 2024, 8: 4845-4855. PMID: 38941537, PMCID: PMC11416634, DOI: 10.1182/bloodadvances.2024012858.Peer-Reviewed Original ResearchIntensive induction chemotherapyAcute myeloid leukemiaNPM1-Mutant Acute Myeloid LeukemiaInduction chemotherapyHypomethylating agentsMulticenter retrospective cohort study of patientsPatients treated with ICAllogeneic stem cell transplantationRetrospective cohort study of patientsMulticenter retrospective cohort studyCohort study of patientsComposite complete remissionStem cell transplantationYears-oldFLT3-ITD mutationStudy of patientsStandard of careNormal cytogeneticsComplete remissionCell transplantationNPM1 mutationsMyeloid leukemiaFLT3-ITDYounger patientsOlder patientsAcute myeloid leukemia (AML) with chromosome 3 inversion: biology, management, and clinical outcome
Alhajahjeh A, Bewersdorf J, Bystrom R, Zeidan A, Shimony S, Stahl M. Acute myeloid leukemia (AML) with chromosome 3 inversion: biology, management, and clinical outcome. Leukemia & Lymphoma 2024, 65: 1541-1551. PMID: 38962996, DOI: 10.1080/10428194.2024.2367040.Peer-Reviewed Original ResearchAcute myeloid leukemiaIntensive chemotherapyHypomethylating agentsMyeloid leukemiaAllogeneic stem cell transplantationAcute myeloid leukemia casesAcute myeloid leukemia subtypesStem cell transplantationComplex hematological malignancyCurrent treatment modalitiesRare genetic anomalyCell transplantationHematologic malignanciesTreatment modalitiesClinical outcomesTreatment responseInv(3Genetic alterationsLeukemia developmentTreatment strategiesCellular processesGenetic anomaliesLeukemiaFusion geneClinical implicationsPrognostic impact of ‘multi-hit’ versus ‘single-hit’ TP53 alteration in patients with acute myeloid leukemia: results from the Consortium on Myeloid Malignancies and Neoplastic Diseases
Badar T, Nanaa A, Atallah E, Shallis R, Craver E, Li Z, Goldberg A, Saliba A, Patel A, Bewersdorf J, Duvall A, Burkart M, Bradshaw D, Abaza Y, Stahl M, Palmisiano N, Murthy S, Zeidan A, Kota V, Patnaik M, Litzow M. Prognostic impact of ‘multi-hit’ versus ‘single-hit’ TP53 alteration in patients with acute myeloid leukemia: results from the Consortium on Myeloid Malignancies and Neoplastic Diseases. Haematologica 2024, 109: 3533-3542. PMID: 38813716, PMCID: PMC11532685, DOI: 10.3324/haematol.2024.285000.Peer-Reviewed Original ResearchAcute myeloid leukemiaMyelodysplastic syndromeComplex cytogeneticsMyeloid leukemiaAllogeneic hematopoietic stem cell transplantationLower-risk myelodysplastic syndromesHematopoietic stem cell transplantationHigher-risk myelodysplastic syndromesOutcomes of SHStem cell transplantationAllo-HCTTP53 alterationsPrognostic impactMyeloid malignanciesTP53 mutationsCell transplantationFLT3-ITDIDH1 mutationMultivariate analysisSupportive careUS academic institutionsNeoplastic diseasePatientsSuperior EFSPredicting outcomeCost-effectiveness of adding quizartinib to induction chemotherapy for patients with FLT3-mutant acute myeloid leukemia
Bewersdorf J, Patel K, Shallis R, Podoltsev N, Kewan T, Stempel J, Mendez L, Stahl M, Stein E, Huntington S, Goshua G, Zeidan A. Cost-effectiveness of adding quizartinib to induction chemotherapy for patients with FLT3-mutant acute myeloid leukemia. Leukemia & Lymphoma 2024, 65: 1136-1144. PMID: 38648559, PMCID: PMC11265977, DOI: 10.1080/10428194.2024.2344052.Peer-Reviewed Original ResearchQuality-adjusted life yearsCompletion of consolidation therapyFLT3-mutant acute myeloid leukemiaAllogeneic hematopoietic cell transplantationIncremental cost-effectiveness ratioProbabilistic sensitivity analysesImproved overall survivalHematopoietic cell transplantationPartitioned survival analysis modelAcute myeloid leukemiaCost-effectiveness ratioFLT3 inhibitor quizartinibHealth economic implicationsConsolidation therapyInduction chemotherapyAverage wholesale priceOverall survivalCell transplantationContinuous therapyMyeloid leukemiaITD mutationQuizartinibIncremental costCost-effective optionLife yearsMolecular ontogeny underlies the benefit of adding venetoclax to hypomethylating agents in newly diagnosed AML patients
Shimony S, Garcia J, Keating J, Chen E, Luskin M, Stahl M, Neuberg D, DeAngelo D, Stone R, Lindsley R. Molecular ontogeny underlies the benefit of adding venetoclax to hypomethylating agents in newly diagnosed AML patients. Leukemia 2024, 38: 1494-1500. PMID: 38538860, PMCID: PMC11216982, DOI: 10.1038/s41375-024-02230-w.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultAgedAged, 80 and overAntineoplastic Combined Chemotherapy ProtocolsBridged Bicyclo Compounds, HeterocyclicDNA MethylationFemaleHematopoietic Stem Cell TransplantationHumansLeukemia, Myeloid, AcuteMaleMiddle AgedMutationPrognosisRemission InductionSulfonamidesSurvival RateTumor Suppressor Protein p53Young AdultConceptsAcute myeloid leukemiaDiagnosed AML patientsHypomethylating agentsAML patientsTP53-mutated acute myeloid leukemiaPatients treated with intensive chemotherapyAllogeneic hematopoietic stem cell transplantationHematopoietic stem cell transplantationComposite complete remissionStem cell transplantationGroup of patientsMolecular ontogenyMedian OSOS benefitComplete remissionIntensive chemotherapyCell transplantationClinicopathological variablesMyeloid leukemiaClinical benefitClinical impactSplicing mutationPatientsSecondary groupVenetoclax
2023
Incidence and predictors of anthracycline-related left ventricular dysfunction in acute myeloid leukemia
Stahl M, Giblin G, Liu Y, Winer E, Garcia J, Chen E, Wadleigh M, Ling K, Lindsley R, Shimony S, Copson K, Charles A, DeAngelo D, Stone R, Nohria A, Luskin M. Incidence and predictors of anthracycline-related left ventricular dysfunction in acute myeloid leukemia. Leukemia Research 2023, 132: 107351. PMID: 37451200, DOI: 10.1016/j.leukres.2023.107351.Peer-Reviewed Original ResearchConceptsAcute myeloid leukemiaInduction chemotherapyVentricular dysfunctionMyeloid leukemiaAllogeneic stem cell transplantationGroup of AML patientsGenetic predictorsBaseline cardiovascular comorbiditiesInclusion criteriaCumulative anthracycline doseStem cell transplantationVentricular ejection fractionConsecutive adult patientsLeft ventricular dysfunctionDana-Farber Cancer InstituteMyeloid mutationsAllo-SCTAnthracycline dosePost-remissionAML patientsCell transplantationEchocardiographic assessmentEjection fractionPrimary endpointJAK2 mutation
2022
Disparities in receiving disease‐directed therapy, allogeneic stem cell transplantation in non‐Hispanic Black patients with TP53‐mutated acute myeloid leukemia
Badar T, Litzow M, Shallis R, Patel A, Saliba A, Burkart M, Bewersdorf J, Stahl M, De Camargo Correia G, Murthy S, Abaza Y, Duvall A, Bradshaw D, Kota V, Dinner S, Goldberg A, Palmisiano N, Al Kali A, Atallah E. Disparities in receiving disease‐directed therapy, allogeneic stem cell transplantation in non‐Hispanic Black patients with TP53‐mutated acute myeloid leukemia. Cancer 2022, 129: 934-945. PMID: 36545710, DOI: 10.1002/cncr.34604.Peer-Reviewed Original ResearchConceptsAcute myeloid leukemiaAllogeneic stem cell transplantationNHB patientsStem cell transplantationNHW patientsCell transplantationMyeloid leukemiaTherapy-related acute myeloid leukemiaNon-Hispanic black patientsCurative-intent therapyLow-intensity chemotherapyBest supportive careComplete response rateMedian patient ageProportion of patientsSubset of patientsDisease-directed therapyHigher proportionIntensive chemotherapyPatient ageSupportive careBlack patientsClinical outcomesTreatment disparitiesRetrospective studyMolecular predictors of immunophenotypic measurable residual disease clearance in acute myeloid leukemia
Stahl M, Derkach A, Farnoud N, Bewersdorf J, Robinson T, Famulare C, Cho C, Devlin S, Menghrajani K, Patel M, Cai S, Miles L, Bowman R, Geyer M, Dunbar A, Epstein‐Peterson Z, McGovern E, Schulman J, Glass J, Taylor J, Viny A, Stein E, Getta B, Arcila M, Gao Q, Barker J, Shaffer B, Papadopoulos E, Gyurkocza B, Perales M, Abdel‐Wahab O, Levine R, Giralt S, Zhang Y, Xiao W, Pai N, Papaemmanuil E, Tallman M, Roshal M, Goldberg A. Molecular predictors of immunophenotypic measurable residual disease clearance in acute myeloid leukemia. American Journal Of Hematology 2022, 98: 79-89. PMID: 36251406, PMCID: PMC10080561, DOI: 10.1002/ajh.26757.Peer-Reviewed Original ResearchConceptsMeasurable residual diseaseAcute myeloid leukemiaAllo-SCTInduction chemotherapyPersistent diseaseMyeloid leukemiaAllogeneic stem cell transplantationStem cell transplantationMonosomy 5Residual diseaseDisease clearanceKaryotypic abnormalitiesPrognostic factorsCell transplantationMolecular predictorsMRD clearanceRemissionClinical trialsNext-generation sequencingChemotherapyPatientsMutation patternsTherapyLeukemiaMRDAre We Moving the Needle for Patients with TP53-Mutated Acute Myeloid Leukemia?
Shallis RM, Bewersdorf JP, Stahl MF, Halene S, Zeidan AM. Are We Moving the Needle for Patients with TP53-Mutated Acute Myeloid Leukemia? Cancers 2022, 14: 2434. PMID: 35626039, PMCID: PMC9140008, DOI: 10.3390/cancers14102434.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsAcute myeloid leukemiaMyeloid leukemiaAllogeneic hematopoietic stem cell transplantationHematopoietic stem cell transplantationCD47/SIRPαIntensive induction therapyAvailable therapeutic optionsStem cell transplantationStandard of careAvailable clinical dataTesting of agentsInduction therapyMedian overallRefractory settingAggressive treatmentTim-3Immune checkpointsPreclinical rationaleTherapeutic optionsCell transplantationEfficacy dataClinical dataPatientsMolecular subgroupsTherapeutic agents
2021
The Current Understanding of and Treatment Paradigm for Newly-Diagnosed TP53-Mutated Acute Myeloid Leukemia
Shallis R, Stahl M, Bewersdorf J, Zeidan A. The Current Understanding of and Treatment Paradigm for Newly-Diagnosed TP53-Mutated Acute Myeloid Leukemia. Hemato 2021, 2: 748-763. DOI: 10.3390/hemato2040051.Peer-Reviewed Original ResearchAcute myeloid leukemiaMyeloid leukemiaTherapy-related acute myeloid leukemiaMeasurable residual disease statusHematopoietic stem cell transplantationMedian overall survivalResidual disease statusStem cell transplantationCurrent treatment approachesIntensive chemotherapyIntensive regimensRemission rateCytogenetic riskOverall survivalWorse prognosisCell transplantationConditioning intensityTreatment paradigmTreatment approachesTP53 mutationsDisease statusBiological subsetsPatientsPrognosisLeukemiaMulticenter Analysis of Treatment and Outcomes for Patient with TP53 Mutated AML in the Era of Novel Therapies; Significant Impact of Allogeneic Stem Cell Transplantation on Survival
Badar T, Litzow M, Shallis R, Bewersdorf J, Saliba A, De Camargo Correia G, Stahl M, Goldberg A, Atallah E, Foran J. Multicenter Analysis of Treatment and Outcomes for Patient with TP53 Mutated AML in the Era of Novel Therapies; Significant Impact of Allogeneic Stem Cell Transplantation on Survival. Blood 2021, 138: 797. DOI: 10.1182/blood-2021-147639.Peer-Reviewed Original ResearchCR/CRiProportion of patientsStem cell transplantationComplex cytogeneticsVariant allele frequencyCPX-351Overall survivalAML patientsNovel therapiesTP53 mutationsCell transplantationUnivariate analysisAllogeneic hematopoietic stem cell transplantationMedian progression-free survivalAllogeneic stem cell transplantationHematopoietic stem cell transplantationAdvisory CommitteeAML induction therapyExtra-medullary diseaseHigh-risk AMLInduction/consolidationVenetoclax combination therapyVenetoclax-based regimensMedian overall survivalMulticenter observational studyMaintenance therapies in acute myeloid leukemia: the renaissance of an old therapeutic concept
Bewersdorf J, Tallman M, Stahl M. Maintenance therapies in acute myeloid leukemia: the renaissance of an old therapeutic concept. Current Opinion In Oncology 2021, 33: 658-669. PMID: 34341323, DOI: 10.1097/cco.0000000000000778.Peer-Reviewed Original ResearchConceptsAcute myeloid leukemiaAcute myeloid leukemia patientsMaintenance therapyAllo-HCTOverall survivalIntensive chemotherapyMyeloid leukemiaPersistence of leukemic cellsSafety of maintenance therapyAllogeneic hematopoietic cell transplantationRelapse-free survivalDuration of remissionHematopoietic cell transplantationIndividualized therapeutic approachFLT3 inhibitor sorafenibCC-486Induction chemotherapyOS benefitDisease relapseCell transplantationInhibitor sorafenibImproved survivalPatient selectionTargeted agentsLeukemic cells
2020
Outcomes of allogeneic stem cell transplantation for patients with t(6:9) AML‐ A strong case for allogeneic stem cell transplantation in first complete remission
Stahl M, Tallman M. Outcomes of allogeneic stem cell transplantation for patients with t(6:9) AML‐ A strong case for allogeneic stem cell transplantation in first complete remission. British Journal Of Haematology 2020, 189: 806-808. PMID: 31999852, DOI: 10.1111/bjh.16478.Peer-Reviewed Original ResearchVaccine and Cell-based Therapeutic Approaches in Acute Myeloid Leukemia
Agrawal V, Gbolahan OB, Stahl M, Zeidan AM, Zaid MA, Farag SS, Konig H. Vaccine and Cell-based Therapeutic Approaches in Acute Myeloid Leukemia. Current Cancer Drug Targets 2020, 20: 473-489. PMID: 32357813, DOI: 10.2174/1568009620666200502011059.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsMeSH KeywordsAnimalsAntibodies, MonoclonalAntigens, NeoplasmAntineoplastic Agents, ImmunologicalCancer VaccinesHematopoietic Stem Cell TransplantationHumansImmunotherapy, AdoptiveKiller Cells, NaturalLeukemia, Myeloid, AcuteReceptors, Chimeric AntigenT-Lymphocytes, CytotoxicTransplantation, HomologousTumor EscapeConceptsAcute myeloid leukemiaTumor-associated antigensImmune systemAML cellsMyeloid leukemiaTreatment of AMLAllogeneic stem cell transplantationEffective immunotherapeutic strategiesNatural killer cellsStem cell transplantationHumoral immune reactionsCell-based therapeutic approachesSurface receptor expressionAcute leukemia cellsDirect immunosuppressionImmunotherapeutic strategiesTreatment landscapeImmunotherapeutic approachesCellular immunotherapyKiller cellsCell transplantationClinical managementHematologic malignanciesReceptor expressionDecreased immunogenicity
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