Purpose We determined the safety, pharmacokinetics, pharmacodynamics, and recommended phase II dose of MK-8776 (SCH 900776), a potent, selective checkpoint kinase 1 (Chk1) inhibitor, as monotherapy and in combination with gemcitabine in a first-in-human phase I clinical trial in patients with advanced solid tumor malignancies. Patients and Methods Forty-three patients were treated by intravenous infusion with MK-8776 at seven dose levels ranging from 10 to 150 mg/m 2 as monotherapy and then in combination with gemcitabine 800 mg/m 2 (part A, n = 26) or gemcitabine 1,000 mg/m 2 (part B, n = 17). Forty percent of patients had three or more prior treatment regimens, and one third of patients had previously received gemcitabine. Results As monotherapy, MK-8776 was well tolerated, with QTc prolongation (19%), nausea (16%), fatigue (14%), and constipation (14%) as the most frequent adverse effects. Combination therapy demonstrated a higher frequency of adverse effects, predominantly fatigue (63%), nausea (44%), decreased appetite (37%), thrombocytopenia (32%), and neutropenia (24%), as well as dose-related, transient QTc prolongation (17%). The median number of doses of MK-8776 administered was five doses, with relative dose-intensity of 0.96. Bioactivity was assessed by γ-H2AX ex vivo assay. Of 30 patients evaluable for response, two showed partial response, and 13 exhibited stable disease. Conclusion MK-8776 was well tolerated as monotherapy and in combination with gemcitabine. Early evidence of clinical efficacy was observed. The recommended phase II dose is MK-8776 200 mg plus gemcitabine 1,000 mg/m 2 on days 1 and 8 of a 21-day cycle.
Background: Myelofibrosis (MF) is a clonal neoplastic disease resulting in bone marrow fibrosis, splenomegaly, and debilitating constitutional symptoms. The Janus kinase (JAK) pathway is often dysregulated in MF, and agents targeting this pathway have demonstrated efficacy in this disease. Ruxolitinib (RUX), a potent JAK1/JAK2 inhibitor, demonstrated superiority in spleen volume reduction, symptom improvement, and survival compared with the control arm in the phase III COMFORT-I and COMFORT-II studies. Panobinostat (PAN), a potent pan-deacetylase inhibitor (pan-DACi), inhibits JAK signaling through disruption of the interaction of JAK2 with the protein chaperone heat shock protein 90. In phase I/II studies, PAN has shown splenomegaly reduction and improvement of bone marrow fibrosis. The combination of RUX and PAN demonstrated synergistic anti-MF activity in preclinical studies. These preliminary results led to the initiation of a phase Ib study evaluating the combination of RUX and PAN in patients (pts) with MF. The updated results from the expansion phase of this trial are presented here.
Purpose: Incorporation of cytarabine into DNA activates checkpoint kinase 1 (Chk1), which stabilizes stalled replication forks, induces S-phase slowing, and diminishes cytarabine cytotoxicity. The selective Chk1 inhibitor SCH 900776 abrogates cytarabine-induced S-phase arrest and enhances cytarabine cytotoxicity in acute leukemia cell lines and leukemic blasts in vitro. To extend these findings to the clinical setting, we have conducted a phase I study of cytarabine and SCH 900776. Experimental Design: Twenty-four adults with relapsed and refractory acute leukemias received timed sequential, continuous infusion cytarabine 2 g/m2 over 72 hours (667 mg/m2/24 hours) beginning on day 1 and again on day 10. SCH 900776 was administered as a 15- to 30-minute infusion on days 2, 3, 11, and 12. The starting dose of SCH 900776 was 10 mg/m2/dose. Results: Dose-limiting toxicities consisting of corrected QT interval prolongation and grade 3 palmar-plantar erythrodysesthesia occurred at 140 mg flat dosing (dose level 5, equivalent to 80 mg/m2). Complete remissions occurred in 8 of 24 (33%) patients, with 7 of 8 at 40 mg/m2 or higher. SCH 900776 did not accumulate at any dose level. Marrow blasts obtained pretreatment and during therapy showed increased phosphorylation of H2Ax after SCH 900776 beginning at 40 mg/m2, consistent with unrepaired DNA damage. Conclusions: These data support a randomized phase II trial of cytarabine +/− SCH 900776 at a recommended flat dose of 100 mg (equivalent to 56 mg/m2) for adults with poor-risk leukemias. The trial (SP P05247) was registered at www.clinicaltrials.gov as NCT00907517. Clin Cancer Res; 18(24); 6723–31. ©2012 AACR.
Abstract Abstract 1531 Checkpoint kinase (Chk1) is a serine-threonine kinase that is activated via phosphorylation in response to DNA damage and is critical to the regulation of cell cycle progression. Ara-C triggers sequential activation of ATR kinase and Chk1 ex vivo to induce the S phase slowing that accompanies Ara-C treatment. Inhibition of Chk1 may abrogate S phase slowing, thereby preventing repair of Ara-C-induced DNA damage and potentiating the antitumor activity of Ara-C. The Hsp90 inhibitor tanespimycin (17-AAG) has been shown to enhance the cytotoxicity of Ara-C in part through Chk1 downregulation (RA Mesa et al., Blood 2005). While a phase I trial of Ara-C plus 17-AAG resulted in decreased blast cell Chk1 phosphorylation, drug toxicities precluded the clinical use of tanespimycin (SH Kaufmann et al., Haematologica, in press 2011). We have now tested the selective Chk1 inhibitor SCH 900776 (SCH 776) in combination with Ara-C in a Phase I dose-escalation trial in 24 adult patients with relapsed and refractory acute leukemias. AML (21) ALL (2) CML-BC (1) Male/Female 9/12 1/1 1/0 Age (range) 57 (23–73) 30, 63 36 Previous Ara-C 19 0 1 Relapsed 8 1 0 No. Prior CRs 2 (1–3) 2 0 Prior Stem Cell Transplant 6 0 0 Refractory 13 1 1 No. Prior Regimens 2 (1–4) 3 3 Prior Stem Cell Transplant 1 0 0 Secondary AML 8 0 0 MDS/MPD 6 0 0 Treatment-Related 2 0 0 Adverse Genetics 13 1 1 Single cytogenetics 3 1 0 Complex cytogenetics 11 0 1 Patients received Ara-C 667 mg/m2 on days 1–3 and 10–12 via 72-hour IV infusion along with SCH 776 on days 2, 3, 11, and 12 over 15 min IV starting at 10 mg/m2 (n=3) escalated to 20 mg/m2 (n=3), 40 mg/m2 (n=6), 56 mg/m2 (n=6), and flat dose of 140 mg (n=6) administered over 30 min IV. Maximal administered dose was achieved at 140 mg due to grade 3 prolonged QTc interval (n=1) and grade 3 hand-foot skin reaction (n=1). None of the expected mucosal or marrow toxicities of timed sequential Ara-C were exacerbated by SCH 776. Complete tumor clearance from day 14 bone marrow was detected in 13/24 (54%). CR plus CRi occurred in 7 patients (29%), with 6 of those CRs occurring at 40 mg/m2 or higher (response rate 40% for ≥ dose level 3). Examination of sequential samples of marrow blasts harvested pretreatment (day 0), 24 hours after initial Ara-C infusion prior to SCH 776 (day 2), and 2 hours after the second SCH 776 administration (day 3) demonstrated increased phosphorylation of Chk1 at Ser317 or Ser345 beginning at 40 mg/m2 consistent with the presence of unrepaired damage and further ATR activation. Pharmacokinetic (PK) data in each cohort showed lack of significant accumulation of SCH 776 in plasma. We plan for a randomized Phase II trial with 100 mg flat dose (or equivalent of 56 mg/m2) of SCH 900776 to assess any contributions to net Ara-C cytotoxicity and efficacy in relapsed and refractory acute leukemias. Disclosures: Gore: Celgene: Consultancy, Equity Ownership, Research Funding. Loechner:Merck Research Laboratories: Employment. Horowitz:Merck Research Labs: Employment, stock. Karp:Schering Merck: Research Funding.