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Blood | 2011

Results from a randomized trial of salvage chemotherapy followed by lestaurtinib for patients with FLT3 mutant AML in first relapse

Mark Levis; Farhad Ravandi; Eunice S. Wang; Maria R. Baer; Alexander E. Perl; Steven Coutre; Harry P. Erba; Robert K. Stuart; Michele Baccarani; Larry D. Cripe; Martin S. Tallman; Giovanna Meloni; Lucy A. Godley; Amelia Langston; S. Amadori; Ian D. Lewis; Arnon Nagler; Richard Stone; Karen Yee; Anjali S. Advani; Dan Douer; Wieslaw Wiktor-Jedrzejczak; Gunnar Juliusson; Mark R. Litzow; Stephen H. Petersdorf; Miguel A. Sanz; Hagop M. Kantarjian; Takashi Sato; Lothar Tremmel; Debra M. Bensen-Kennedy

In a randomized trial of therapy for FMS-like tyrosine kinase-3 (FLT3) mutant acute myeloid leukemia in first relapse, 224 patients received chemotherapy alone or followed by 80 mg of the FLT3 inhibitor lestaurtinib twice daily. Endpoints included complete remission or complete remission with incomplete platelet recovery (CR/CRp), overall survival, safety, and tolerability. Correlative studies included pharmacokinetics and analysis of in vivo FLT3 inhibition. There were 29 patients with CR/CRp in the lestaurtinib arm and 23 in the control arm (26% vs 21%; P = .35), and no difference in overall survival between the 2 arms. There was evidence of toxicity in the lestaurtinib-treated patients, particularly those with plasma levels in excess of 20 μM. In the lestaurtinib arm, FLT3 inhibition was highly correlated with remission rate, but target inhibition on day 15 was achieved in only 58% of patients receiving lestaurtinib. Given that such a small proportion of patients on this trial achieved sustained FLT3 inhibition in vivo, any conclusions regarding the efficacy of combining FLT3 inhibition with chemotherapy are limited. Overall, lestaurtinib treatment after chemotherapy did not increase response rates or prolong survival of patients with FLT3 mutant acute myeloid leukemia in first relapse. This study is registered at www.clinicaltrials.gov as #NCT00079482.


Clinical Cancer Research | 2008

A phase i study of the pan bcl-2FamilyInhibitor obatoclax mesylate in patients with advanced hematologic malignancies

Aaron D. Schimmer; Susan O'Brien; Hagop M. Kantarjian; Joseph Brandwein; Bruce D. Cheson; Mark D. Minden; Karen Yee; Farhad Ravandi; Francis J. Giles; Andre C. Schuh; Vikas Gupta; Michael Andreeff; Charles Koller; Hong Chang; Suzanne Kamel-Reid; Mark S. Berger; Jean Viallet; Gautam Borthakur

Purpose: The outcome of patients with refractory leukemia and myelodysplasia is poor, and new therapies are needed. The antiapoptotic proteins of the Bcl-2 family are overexpressed in these malignancies and are potential therapeutic targets. Therefore, we conducted a phase I clinical trial of the small-molecule pan-Bcl-2 inhibitor, obatoclax mesylate, in patients with refractory leukemia and myelodysplasia to assess its safety and define its optimal dose. Experimental Design: Forty-four patients with refractory leukemia or myelodysplasia were treated with obatoclax mesylate by continuous intravenous infusion at increasing doses and frequencies. Results: A total of 306 infusions of obatoclax mesylate were administered with a median of 5 infusions per patient. The study drug was well tolerated up to the highest dose planned without dose-limiting toxicity. Grade 1/2 central nervous system symptoms were the most common adverse events attributable to the study drug. One patient with acute myeloid leukemia with mixed lineage leukemia t(9;11) rearrangement achieved a complete remission, which lasted 8 months. Three of 14 patients with myelodysplasia showed hematologic improvement with RBC or platelet transfusion independence. Conclusions: Obatoclax mesylate is well tolerated and these results support its further investigation in patients with leukemia and myelodysplasia.


Journal of Clinical Oncology | 2013

High-Dose Vincristine Sulfate Liposome Injection for Advanced, Relapsed, and Refractory Adult Philadelphia Chromosome–Negative Acute Lymphoblastic Leukemia

Susan O'Brien; Gary J. Schiller; John Lister; Lloyd E. Damon; Stuart L. Goldberg; Walter E. Aulitzky; Dina Ben-Yehuda; Wendy Stock; Steven Coutre; Dan Douer; Leonard T. Heffner; Melissa C. Larson; Karen Seiter; Scott E. Smith; Sarit Assouline; Philip Kuriakose; Lori J. Maness; Arnon Nagler; Jacob M. Rowe; Markus Schaich; Ofer Shpilberg; Karen Yee; Guenter Schmieder; Jeffrey A. Silverman; Deborah A. Thomas; Steven R. Deitcher; Hagop M. Kantarjian

PURPOSE Relapsed adult acute lymphoblastic leukemia (ALL) is associated with high reinduction mortality, chemotherapy resistance, and rapid progression leading to death. Vincristine sulfate liposome injection (VSLI), sphingomyelin and cholesterol nanoparticle vincristine (VCR), facilitates VCR dose-intensification and densification plus enhances target tissue delivery. We evaluated high-dose VSLI monotherapy in adults with Philadelphia chromosome (Ph) -negative ALL that was multiply relapsed, relapsed and refractory to reinduction, and/or relapsed after hematopoietic cell transplantation (HCT). PATIENTS AND METHODS Sixty-five adults with Ph-negative ALL in second or greater relapse or whose disease had progressed following two or more leukemia therapies were treated in this pivotal phase II, multinational trial. Intravenous VSLI 2.25 mg/m(2), without dose capping, was administered once per week until response, progression, toxicity, or pursuit of HCT. The primary end point was achievement of complete response (CR) or CR with incomplete hematologic recovery (CRi). RESULTS The CR/CRi rate was 20% and overall response rate was 35%. VSLI monotherapy was effective as third-, fourth-, and fifth-line therapy and in patients refractory to other single- and multiagent reinduction therapies. Median CR/CRi duration was 23 weeks (range, 5 to 66 weeks); 12 patients bridged to a post-VSLI HCT, and five patients were long-term survivors. VSLI was generally well tolerated and associated with a low 30-day mortality rate (12%). CONCLUSION High-dose VSLI monotherapy resulted in meaningful clinical outcomes including durable responses and bridging to HCT in advanced ALL settings. The toxicity profile of VSLI was predictable, manageable, and comparable to standard VCR despite the delivery of large, normally unachievable, individual and cumulative doses of VCR.


Lancet Oncology | 2015

Safety and tolerability of guadecitabine (SGI-110) in patients with myelodysplastic syndrome and acute myeloid leukaemia: a multicentre, randomised, dose-escalation phase 1 study

Jean-Pierre Issa; Gail J. Roboz; David A. Rizzieri; Elias Jabbour; Wendy Stock; Casey O'Connell; Karen Yee; Raoul Tibes; Elizabeth A. Griffiths; Katherine Walsh; Naval Daver; Woonbok Chung; Sue Naim; Pietro Taverna; Aram Oganesian; Yong Hao; James N. Lowder; Mohammad Azab; Hagop M. Kantarjian

BACKGROUND Hypomethylating agents are used to treat cancers driven by aberrant DNA methylation, but their short half-life might limit their activity, particularly in patients with less proliferative diseases. Guadecitabine (SGI-110) is a novel hypomethylating dinucleotide of decitabine and deoxyguanosine resistant to degradation by cytidine deaminase. We aimed to assess the safety and clinical activity of subcutaneously given guadecitabine in patients with acute myeloid leukaemia or myelodysplastic syndrome. METHODS In this multicentre, open-label, phase 1 study, patients from nine North American medical centres with myelodysplastic syndrome or acute myeloid leukaemia that was refractory to or had relapsed after standard treatment were randomly assigned (1:1) to receive subcutaneous guadecitabine, either once-daily for 5 consecutive days (daily × 5), or once-weekly for 3 weeks, in a 28-day treatment cycle. Patients were stratified by disease. A 3 + 3 dose-escalation design was used in which we treated patients with guadecitabine doses of 3-125 mg/m(2) in separate dose-escalation cohorts. A twice-weekly treatment schedule was added to the study after a protocol amendment. The primary objective was to assess safety and tolerability of guadecitabine, determine the maximum tolerated and biologically effective dose, and identify the recommended phase 2 dose of guadecitabine. Safety analyses included all patients who received at least one dose of guadecitabine. Pharmacokinetic and pharmacodynamic analyses to determine the biologically effective dose included all patients for whom samples were available. This study is registered with ClinicalTrials.gov, number NCT01261312. FINDINGS Between Jan 4, 2011, and April 11, 2014, we enrolled and treated 93 patients: 35 patients with acute myeloid leukaemia and nine patients with myelodysplastic syndrome in the daily × 5 dose-escalation cohorts, 28 patients with acute myeloid leukaemia and six patients with myelodysplastic syndrome in the once-weekly dose-escalation cohorts, and 11 patients with acute myeloid leukaemia and four patients with myelodysplastic syndrome in the twice-weekly dose-escalation cohorts. The most common grade 3 or higher adverse events were febrile neutropenia (38 [41%] of 93 patients), pneumonia (27 [29%] of 93 patients), thrombocytopenia (23 [25%] of 93 patients), anaemia (23 [25%] of 93 patients), and sepsis (16 [17%] of 93 patients). The most common serious adverse events were febrile neutropenia (29 [31%] of 93 patients), pneumonia (26 [28%] of 93 patients), and sepsis (16 [17%] of 93 patients). Six of the 74 patients with acute myeloid leukaemia and six of the 19 patients with myelodysplastic syndrome had a clinical response to treatment. Two dose-limiting toxicities were noted in patients with myelodysplastic syndrome at 125 mg/m(2) daily × 5, thus the maximum tolerated dose in patients with myelodysplastic syndrome was 90 mg/m(2) daily × 5. The maximum tolerated dose was not reached in patients with acute myeloid leukaemia. Potent dose-related DNA demethylation occurred on the daily × 5 regimen, reaching a plateau at 60 mg/m(2) (designated as the biologically effective dose). INTERPRETATION Guadecitabine given subcutaneously at 60 mg/m(2) daily × 5 is well tolerated and is clinically and biologically active in patients with myelodysplastic syndrome and acute myeloid leukaemia. Guadecitabine 60 mg/m(2) daily × 5 is the recommended phase 2 dose, and these findings warrant further phase 2 studies. FUNDING Astex Pharmaceuticals, Stand Up To Cancer.


The Lancet Haematology | 2016

Bromodomain inhibitor OTX015 in patients with acute leukaemia: a dose-escalation, phase 1 study

Céline Berthon; Emmanuel Raffoux; Xavier Thomas; Norbert Vey; Carlos Gomez-Roca; Karen Yee; David Taussig; Keyvan Rezai; Christophe Roumier; Patrice Herait; Carmen Kahatt; Bruno Quesnel; M. Michallet; Christian Recher; François Lokiec; Claude Preudhomme; Hervé Dombret

BACKGROUND Bromodomain and extraterminal (BET) proteins are chromatin readers that preferentially affect the transcription of genes with super-enhancers, including oncogenes. BET proteins bind acetylated histone tails via their bromodomain, bringing the elongation complex to the promoter region. OTX015 (MK-8628) specifically binds to BRD2, BRD3, and BRD4, preventing BET proteins from binding to the chromatin, thus inhibiting gene transcription. OTX015 inhibits proliferation in many haematological malignancy cell lines and patient cells, in vitro and in vivo. We aimed to establish the recommended dose of OTX015 in patients with haematological malignancies. We report the results of patients with acute leukaemia (leukaemia cohort). METHODS In this dose-escalation, phase 1 study we recruited patients from seven university hospital centres (in France [five], UK [one], and Canada [one]). Adults with acute leukaemia who had failed or had a contraindication to standard therapies were eligible to participate. OTX015 was given orally at increasing doses from 10 mg/day to 160 mg/day (14 of 21 days), using a conventional 3 + 3 design. In this open-label trial, OTX015 was initially administered once a day, with allowance for exploration of other schedules. The primary endpoint was dose-limiting toxicity (DLT), assessed during the first treatment cycle (21 days). The study is ongoing and is registered with ClinicalTrials.gov, NCT01713582. FINDINGS Between Jan 18, 2013, and Sept 9, 2014, 41 patients, 36 with acute myeloid leukaemia, a median age of 70 years (IQR 60-75) and two lines of previous therapy, were recruited and treated across six dose levels of OTX015. No DLT was recorded until 160 mg/day, when one patient had grade 3 diarrhoea and another had grade 3 fatigue. However, concomitant grade 1-2 non-DLT toxic effects (ie, gastrointestinal, fatigue, or cutaneous) from 120 mg doses hampered patient compliance and 80 mg once a day was judged the recommended dose with a 14 days on, 7 days off schedule. Common toxic effects for all OTX015 doses were fatigue (including grade 3 in three patients) and bilirubin concentration increases (including grade 3-4 in two patients). OTX015 plasma exposure increased proportionally up to 120 mg/day with trough concentrations in the in-vitro active range from 80 mg/day (274 nmol/L). Three patients (receiving 40 mg/day, 80 mg/day, and 160 mg/day) achieved complete remission or complete remission with incomplete recovery of platelets lasting 2-5 months, and two additional patients had partial blast clearance. No predictive biomarkers for response have been identified so far. INTERPRETATION The once-daily recommended dose for oral, single agent oral OTX015 use in patients with acute leukaemia for further phase 2 studies is 80 mg on a 14 days on, 7 days off schedule. FUNDING Oncoethix GmbH, a wholly owned subsidiary of Merck Sharp & Dohme Corp.


Nature | 2016

A 17-gene stemness score for rapid determination of risk in acute leukaemia.

Stanley W.K. Ng; Amanda Mitchell; James A. Kennedy; Weihsu C. Chen; Jessica McLeod; Narmin Ibrahimova; Andrea Arruda; Andreea C. Popescu; Vikas Gupta; Aaron D. Schimmer; Andre C. Schuh; Karen Yee; Lars Bullinger; Tobias Herold; Dennis Görlich; Thomas Büchner; Wolfgang Hiddemann; Wolfgang E. Berdel; Bernhard Wörmann; Meyling Cheok; Claude Preudhomme; Hervé Dombret; Klaus H. Metzeler; Christian Buske; Bob Löwenberg; Peter W. Zandstra; Mark D. Minden; John E. Dick; Jean C.Y. Wang

Refractoriness to induction chemotherapy and relapse after achievement of remission are the main obstacles to cure in acute myeloid leukaemia (AML). After standard induction chemotherapy, patients are assigned to different post-remission strategies on the basis of cytogenetic and molecular abnormalities that broadly define adverse, intermediate and favourable risk categories. However, some patients do not respond to induction therapy and another subset will eventually relapse despite the lack of adverse risk factors. There is an urgent need for better biomarkers to identify these high-risk patients before starting induction chemotherapy, to enable testing of alternative induction strategies in clinical trials. The high rate of relapse in AML has been attributed to the persistence of leukaemia stem cells (LSCs), which possess a number of stem cell properties, including quiescence, that are linked to therapy resistance. Here, to develop predictive and/or prognostic biomarkers related to stemness, we generated a list of genes that are differentially expressed between 138 LSC+ and 89 LSC− cell fractions from 78 AML patients validated by xenotransplantation. To extract the core transcriptional components of stemness relevant to clinical outcomes, we performed sparse regression analysis of LSC gene expression against survival in a large training cohort, generating a 17-gene LSC score (LSC17). The LSC17 score was highly prognostic in five independent cohorts comprising patients of diverse AML subtypes (n = 908) and contributed greatly to accurate prediction of initial therapy resistance. Patients with high LSC17 scores had poor outcomes with current treatments including allogeneic stem cell transplantation. The LSC17 score provides clinicians with a rapid and powerful tool to identify AML patients who do not benefit from standard therapy and who should be enrolled in trials evaluating novel upfront or post-remission strategies.


Clinical Cancer Research | 2016

Results of the Phase I Trial of RG7112, a Small-Molecule MDM2 Antagonist in Leukemia.

Michael Andreeff; Kevin R. Kelly; Karen Yee; Sarit Assouline; Roger Strair; Leslie Popplewell; David G. Bowen; Giovanni Martinelli; Mark W. Drummond; Paresh Vyas; Mark Kirschbaum; Swaminathan Padmanabhan Iyer; Vivian Ruvolo; Graciela Nogueras Gonzalez; Xuelin Huang; Gong Chen; Bradford Graves; Steven Blotner; Peter Bridge; Lori Jukofsky; Steve Middleton; Monica Reckner; Ruediger Rueger; Jianguo Zhi; Gwen Nichols; Kensuke Kojima

Purpose: RG7112 is a small-molecule MDM2 antagonist. MDM2 is a negative regulator of the tumor suppressor p53 and frequently overexpressed in leukemias. Thus, a phase I study of RG7112 in patients with hematologic malignancies was conducted. Experimental Design: Primary study objectives included determination of the dose and safety profile of RG7112. Secondary objectives included evaluation of pharmacokinetics; pharmacodynamics, such as TP53-mutation status and MDM2 expression; and preliminary clinical activity. Patients were divided into two cohorts: Stratum A [relapsed/refractory acute myeloid leukemia (AML; except acute promyelocytic leukemia), acute lymphoblastic leukemia, and chronic myelogenous leukemia] and Stratum B (relapsed/refractory chronic lymphocytic leukemia/small cell lymphocytic leukemia; CLL/sCLL). Some Stratum A patients were treated at the MTD to assess clinical activity. Results: RG7112 was administered to 116 patients (96 patients in Stratum A and 20 patients in Stratum B). All patients experienced at least 1 adverse event, and 3 dose-limiting toxicities were reported. Pharmacokinetic analysis indicated that twice-daily dosing enhanced daily exposure. Antileukemia activity was observed in the 30 patients with AML assessed at the MTD, including 5 patients who met International Working Group (IWG) criteria for response. Exploratory analysis revealed TP53 mutations in 14% of Stratum A patients and in 40% of Stratum B patients. Two patients with TP53 mutations exhibited clinical activity. p53 target genes were induced only in TP53 wild-type leukemic cells. Baseline expression levels of MDM2 correlated positively with clinical response. Conclusions: RG7112 demonstrated clinical activity against relapsed/refractory AML and CLL/sCLL. MDM2 inhibition resulted in p53 stabilization and transcriptional activation of p53-target genes. We provide proof-of-concept that MDM2 inhibition restores p53 function and generates clinical responses in hematologic malignancies. Clin Cancer Res; 22(4); 868–76. ©2015 AACR.


Blood | 2013

Treatment outcomes following leukemic transformation in Philadelphia-negative myeloproliferative neoplasms

James A. Kennedy; Eshetu G. Atenafu; Hans A. Messner; Kenneth J. Craddock; Joseph Brandwein; Jeffrey H. Lipton; Mark D. Minden; Aaron D. Schimmer; Andre C. Schuh; Karen Yee; Vikas Gupta

Leukemic transformation (LT) is a rare but fatal complication of Philadelphia-negative myeloproliferative neoplasms (MPNs) for which optimal treatment strategies are not known. At our center, we have adopted a treatment approach for LT where patients within the transplant age group who have a reasonable fitness level are treated with curative intent and offered induction chemotherapy. Subsequently, those who respond and have a suitable donor are considered for allogeneic hematopoietic cell transplantation (HCT). In this study, we evaluated the clinical outcomes of this treatment approach in 75 patients with LT. The 2-year overall survival (OS) from the time of LT was 15%. A total of 39 patients (52%) were treated with curative intent (induction ± HCT) and had a 2-y OS of 26% compared with 3% in those noncuratively treated (P < .0001). In the curative intent group, 18 individuals (46%) achieved complete remission (CR) or CR with incomplete recovery and 12 (31%) reverted to a chronic MPN phase, with 17 patients undergoing HCT. Survival of patients posttransplant was significantly improved compared with those who responded to induction but were not transplanted (2-y OS of 47% vs 15%; P = .03). Thus, induction chemotherapy followed by HCT has the potential for long-term disease control in select patients with LT preceded by a MPN.


Leukemia Research | 2008

Iron overload in myelodysplastic syndromes: A Canadian consensus guideline

Richard A. Wells; Brian Leber; Rena Buckstein; Jeffrey H. Lipton; Wanda Hasegawa; Kuljit Grewal; Karen Yee; Harold J. Olney; Loree Larratt; Linda Vickars; Alan Tinmouth

In December 2005, 11 Canadian hematologists met to develop an evidence-based clinical practice guideline that would address the diagnosis, monitoring, management, and rationale for the treatment of transfusional iron overload in patients with myelodysplastic syndromes (MDS). This Expert Panel consisted of hematologists from across Canada, each with an active practice in a major population centre or a rural area. Based on an extensive literature search and years of clinical experience, their mandate was to address common clinical practice questions, particularly why treat, whom to treat, when to initiate treatment, and how to treat iron overload in patients with MDS.


Leukemia | 2011

A phase I/II study of imatinib plus reinduction therapy for c-kit-positive relapsed/ refractory acute myeloid leukemia: inhibition of Akt activation correlates with complete response

Joseph Brandwein; David W. Hedley; S Chow; Aaron D. Schimmer; Karen Yee; Andre C. Schuh; Vikas Gupta; W Xu; S Kamel-Reid; Mark D. Minden

This phase I/II study evaluated imatinib as a c-kit inhibitor combined with mitoxantrone, etoposide and cytarabine therapy for patients with primary refractory or relapsed c-kit+ acute myeloid leukemia (AML). Imatinib was escalated through three dose levels in successive six patient cohorts. The combination was well tolerated up to 400 mg/day imatinib. Of 21 patients treated at this dose, 13 (62%) achieved complete response (CR), 7 (33%) were non-responders and one died during induction. The CR rate was 80% in patients with standard-risk karyotype versus 33% in patients with adverse karyotype. The CR rate for primary non-responders was 6/14 (43%) versus 7/7 (100%) for relapsed patients. AML blasts from peripheral blood were assayed for phosphorylated Akt (pAkt) and phosphorylated ERK (pERK) by flow cytometry before to and after imatinib dosing. Of eight patients achieving CR with reinduction, seven demonstrated marked (⩾60%) pAkt inhibition with imatinib therapy. In contrast, all the six non-responders to reinduction demonstrated <60% pAkt inhibition (P=0.005). There was no correlation between pERK inhibition and response to therapy. These results indicate that lack of pAkt inhibition in vivo is associated with resistance to reinduction therapy using this regimen. Further studies using agents that are able to inhibit Akt more effectively are warranted.

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Aaron D. Schimmer

Princess Margaret Cancer Centre

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Andre C. Schuh

Princess Margaret Cancer Centre

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Vikas Gupta

Princess Margaret Cancer Centre

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Mark D. Minden

Princess Margaret Cancer Centre

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Hagop M. Kantarjian

University of Texas MD Anderson Cancer Center

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