Arthur G. James Cancer Hospital and Solove Research Institute at Ohio State University Medical Center
Columbus, Ohio, 43210, United States
NCT Number: NCT02093403
This phase I trial studies the side effects and best dose of Selinexor when given together with decitabine in treating patients with acute myeloid leukemia that has returned after treatment (relapsed) or does not respond to treatment (refractory). Drugs used in chemotherapy, such as decitabine and Selinexor, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing.
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Notify Me19 year and older
All sexes
Interventional
Phase 1
Columbus, Ohio, 43210, United States
PRIMARY OBJECTIVES:
I. To evaluate the safety and tolerability of Selinexor (KPT-330) in combination with decitabine in patients with acute myeloid leukemia (AML).
II. To define the specific toxicities, maximum tolerated dose (MTD) and the dose limiting toxicity (DLT) of this combination.
III. To determine the Recommended Phase 2 Dose (RP2D) of this combination.
SECONDARY OBJECTIVES:
I. To determine the overall response rate (ORR). II. To determine the rate and duration of complete remission (CR) +/- hematological recovery of KPT-330 plus decitabine in AML.
III. To conduct pharmacodynamic studies by measuring the effect of this chemotherapy combination on the kinome, micronome and epigenome.
OUTLINE: This is a dose-escalation study of selinexor.
INDUCTION: Patients receive decitabine intravenously (IV) over 1 hour on days 1-10 and Selinexor orally (PO) on days 11, 13, 18, 20, 25 and 27. Treatment repeats every 31 days for up to 4 courses in the absence of disease progression or unacceptable toxicity.
MAINTENANCE: Patients receive decitabine IV over 1 hour on days 1-5 and Selinexor PO on days 6, 8, 13, 15, 20 and 22. Courses repeat every 31 days in the absence of disease progression or unacceptable toxicity.
After completion of study treatment, patients are followed up periodically.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Given IV
Other names: 5-aza-dCyd, 5AZA, DAC
Given PO
Other names: CRM1 nuclear export inhibitor KPT-330, KPT-330, selective inhibitor of nuclear export KPT-330, SINE KPT-330
Correlative studies
Other names: pharmacological studies
Correlative studies
Time frame: 31 days
Time frame: Up to 3 years
The maximum grade for each type of toxicity will be recorded for each patient, and frequency tables will be reviewed to determine toxicity patterns.
Time frame: Up to 3 years
Time frame: Up to 3 years
Time frame: Up to 3 years
Responses will be summarized by simple descriptive summary statistics across all dose levels. Overall response rate will estimated at the MTD and defined as the number of patients who achieve any level of clinical response (e.g. CR, incomplete blood count recovery, morphologic CR) divided by the total number of evaluable patients (i.e. any patient who received at least one dose of study treatment).
Time frame: Up to 3 years
Responses will be summarized by simple descriptive summary statistics across all dose levels. Complete response rate will be estimated in those patients treated at the MTD.
Time frame: Baseline to up to day 31 of course 1
Changes in expression of these markers across time will be explored by dose level graphically. Relationships between baseline expression levels and changes in expression levels with response and certain toxicities will also be explored graphically (e.g. side-by-side boxplots) and with quantitative summaries. Confidence intervals will be presented as the primary method of analysis. Correlations among expression of the genes, micro-ribonucleic acids (miRs), and methylated signatures will be evaluated using scatterplots and the Spearman-rank correlation coefficient.
Time frame: Baseline to up to day 31 of course 1
Changes in expression of these markers across time will be explored by dose level graphically. Relationships between baseline expression levels and changes in expression levels with response and certain toxicities will also be explored graphically (e.g. side-by-side boxplots) and with quantitative summaries. Confidence intervals will be presented as the primary method of analysis. Correlations among expression of the genes, miRs, and methylated signatures will be evaluated using scatterplots and the Spearman-rank correlation coefficient.
Time frame: Baseline to up to day 31 of course 1
Changes in expression of these markers across time will be explored by dose level graphically. Relationships between baseline expression levels and changes in expression levels with response and certain toxicities will also be explored graphically (e.g. side-by-side boxplots) and with quantitative summaries. Confidence intervals will be presented as the primary method of analysis. Correlations among expression of the genes, miRs, and methylated signatures will be evaluated using scatterplots and the Spearman-rank correlation coefficient.
Time frame: Baseline to up to day 31 of course 1
Changes in expression of these markers across time will be explored by dose level graphically. Relationships between baseline expression levels and changes in expression levels with response and certain toxicities will also be explored graphically (e.g. side-by-side boxplots) and with quantitative summaries. Confidence intervals will be presented as the primary method of analysis. Correlations among expression of the genes, miRs, and methylated signatures will be evaluated using scatterplots and the Spearman-rank correlation coefficient.
Bhavana Bhatnagar
Other
Phase I Study of Decitabine (Dacogen) and Selinexor (KPT-330) in Acute Myeloid Leukemia
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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