2022
NCI 9938: Phase I clinical trial of ATR inhibitor berzosertib (M6620, VX-970) in combination with irinotecan in patients with advanced solid tumors.
Villaruz L, Kelly K, Waqar S, Davis E, Shapiro G, LoRusso P, Dees E, Normolle D, Rhee J, Chu E, Gore S, Beumer J. NCI 9938: Phase I clinical trial of ATR inhibitor berzosertib (M6620, VX-970) in combination with irinotecan in patients with advanced solid tumors. Journal Of Clinical Oncology 2022, 40: 3012-3012. DOI: 10.1200/jco.2022.40.16_suppl.3012.Peer-Reviewed Original ResearchDose-limiting toxicityExperienced dose-limiting toxicityCell lung cancerColorectal cancerPancreatic cancerLung cancerDose levelsSolid tumorsNon-small cell lung cancerCommon treatment-related gradeGrade 3 lung infectionStage IISmall cell lung cancerPhase I clinical trialDose-expansion cohortsGrade 3 diarrheaMutant solid tumorsPhase II doseTreatment-related gradeGrade 2 diarrheaAdvanced solid tumorsManageable side effectsDose-escalation designMutant colorectal cancerEfficacy of irinotecan
2020
Pharmacodynamic effects in blood and tumor tissue of eftozanermin alfa, a tumor necrosis factor-related apoptosis-inducing ligand receptor agonist.
Motwani M, Modi D, Penugonda S, Zhang C, Palma J, Cunningham A, Calvo E, de Jonge M, LoRusso P. Pharmacodynamic effects in blood and tumor tissue of eftozanermin alfa, a tumor necrosis factor-related apoptosis-inducing ligand receptor agonist. Journal Of Clinical Oncology 2020, 38: e15668-e15668. DOI: 10.1200/jco.2020.38.15_suppl.e15668.Peer-Reviewed Original ResearchPharmacodynamic effectsReceptor agonistMultiplex immunohistochemistryKRAS-mutant colorectal cancerTumor tissueDose-expansion cohortsSimilar time pointsMutant allele fractionM65 levelsH postdoseColorectal cancerPost-TxDownstream pathway activationPancreatic cancerHematologic malignanciesLiver enzymesScreening periodReverse phase protein arrayBiopsy coresTumor biopsiesMutant allele frequencyBiopsy samplesDose levelsBiopsyTumor types
2019
457P First-in-human study of ABBV-621 in patients (pts) with previously treated sold tumours: Dose-optimization cohorts
Calvo E, de Jonge M, Rasco D, Moreno V, Chang Y, Chiney M, Motwani M, Penugonda S, Petrich A, Ratain M, LoRusso P. 457P First-in-human study of ABBV-621 in patients (pts) with previously treated sold tumours: Dose-optimization cohorts. Annals Of Oncology 2019, 30: v169-v170. DOI: 10.1093/annonc/mdz244.019.Peer-Reviewed Original ResearchDose levelsPancreatic cancerNon-cardiac chest painGenentech/RochePhase 2 dosePrior treatment regimensAntitumor activityAcceptable safety profileDose-limiting toxicityRoche/GenentechDeath receptor 4Bristol-Myers SquibbEligible ptsPleuritic painStable diseaseChest painGrade 3/4Respiratory failureMedian durationPartial responseToxic hepatitisDose escalationTreatment regimensSafety profileConclusion AdministrationPhase 1, first-in-human study of TRAIL receptor agonist fusion protein ABBV-621.
Ratain M, Doi T, De Jonge M, LoRusso P, Dunbar M, Chiney M, Motwani M, Glasgow J, Petrich A, Rasco D, Calvo E. Phase 1, first-in-human study of TRAIL receptor agonist fusion protein ABBV-621. Journal Of Clinical Oncology 2019, 37: 3013-3013. DOI: 10.1200/jco.2019.37.15_suppl.3013.Peer-Reviewed Original ResearchDose escalationDose-limiting toxicityBlood-based markersECOG 0Prior regimensStable diseaseAcceptable toxicityMedian durationRespiratory failureMedian agePartial responseColorectal cancerPancreatic cancerBlood bilirubinBayesian continual reassessment methodPD markersContinual reassessment methodHuman studiesDay 1Solid tumorsTumor typesPK studiesTumor modelAntitumor activityApoptotic cell death
2018
Safety, efficacy and pharmacodynamics (PD) of MEDI9447 (oleclumab) alone or in combination with durvalumab in advanced colorectal cancer (CRC) or pancreatic cancer (panc).
Overman M, LoRusso P, Strickler J, Patel S, Clarke S, Noonan A, Prasanna T, Amin M, Nemunaitis J, Desai J, O'Byrne K, George T, Englert J, She D, Cooper Z, Wu Y, Khan A, Kumar R, Bendell J. Safety, efficacy and pharmacodynamics (PD) of MEDI9447 (oleclumab) alone or in combination with durvalumab in advanced colorectal cancer (CRC) or pancreatic cancer (panc). Journal Of Clinical Oncology 2018, 36: 4123-4123. DOI: 10.1200/jco.2018.36.15_suppl.4123.Peer-Reviewed Original Research
2014
882PD Phase 1/2 Study of Oral Rucaparib: Updated Phase 1 and Preliminary Phase 2 Results
Kristeleit R, Shapira-Frommer R, Burris H, Patel M, Lorusso P, Oza A, Balmaña J, Domchek S, Chen L, Montes A, Plummer R, Arkenau H, Maloney L, Dominy E, Shapiro G. 882PD Phase 1/2 Study of Oral Rucaparib: Updated Phase 1 and Preliminary Phase 2 Results. Annals Of Oncology 2014, 25: iv307. DOI: 10.1093/annonc/mdu338.8.Peer-Reviewed Original ResearchAdvanced solid tumorsDurable benefitSolid tumorsDana-Farber Cancer InstituteHighest LOHCA-125 responsePhase 1/2 studyDose-escalation designPhase 1Homologous recombination-deficient tumorsOral PARP inhibitorClinical trial fundingPhase 2CA125 responseCommon AEsOral rucaparibRelapsed diseaseLow HgbEscalation designLow plateletsClinical benefitLab abnormalitiesBRCA mutationsPancreatic cancerClinical trials
1998
Evaluation of pyrazoloacridine in patients with advanced pancreatic carcinoma
Zalupski M, Shields A, Philip P, Kraut M, LoRusso P, Heilbrun L, Vaitkevicius V. Evaluation of pyrazoloacridine in patients with advanced pancreatic carcinoma. Investigational New Drugs 1998, 16: 93-96. PMID: 9740550, DOI: 10.1023/a:1006087114621.Peer-Reviewed Original ResearchConceptsPancreatic carcinomaBroad preclinical antitumor activityUntreated advanced pancreatic cancerAdvanced pancreatic cancerAdvanced pancreatic carcinomaPhase II trialSchedule of administrationPreclinical antitumor activityModerate neutropeniaPredictable toxicityII trialMajor toxicityClinical efficacyMild neurotoxicityPancreatic cancerClinical developmentPatientsPyrazoloacridinePhase IAntitumor activitySolid tumor selectivityTumor selectivityCarcinomaDoseToxicity