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OpenTrials
Completed

NCT Number: NCT00262873

Bortezomib in Treating Patients With Myelodysplastic Syndromes

RATIONALE: Bortezomib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.

PURPOSE: This phase II trial is studying how well bortezomib works in treating patients with myelodysplastic syndromes.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 2

Primary location

James P. Wilmot Cancer Center at University of Rochester Medical Center

Rochester, New York, 14642, United States

About this study

OBJECTIVES:

Primary

  • Determine the efficacy of bortezomib, in terms of reduced cytopenia, in patients with myelodysplastic syndromes.
  • Determine the safety and toxic effects of this drug in these patients.

Secondary

  • Determine changes in marrow blast percentage or karyotypic profile in patients treated with this drug.

OUTLINE: This is an open-label study.

Patients receive bortezomib IV on days 1, 4, 8, and 11. Treatment repeats every 21 days for up to 12 courses in the absence of disease progression or unacceptable toxicity.

After completion of study treatment, patients are followed periodically for 1 year.

PROJECTED ACCRUAL: A total of 30 patients will be accrued for this study.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

DISEASE CHARACTERISTICS:

  • Diagnosis of myelodysplastic syndromes (MDS)
  • Requires treatment or transfusion support for MDS, as indicated by 1 of the following:
  • Demonstrates transfusion or epoetin alfa dependence
  • Transfusion dependence is defined as requiring ≥ 2 units of packed RBCs within an 8-week period prior to study entry
  • Hemoglobin < 11g/dL on 2 separate occasions 2 weeks apart
  • No iron, cyanocobalamin (vitamin B_12), or folic acid deficiency or other causes of anemia
  • Must have 1 of the following FAB subtypes:
  • Refractory anemia
  • Refractory anemia with ringed sideroblasts
  • Refractory anemia with excess blasts
  • Secondary MDS (if ≥ 3 years since active primary cancer)
  • No chronic myelomonocytic leukemia
  • Not refractory to platelet transfusion support (i.e., inability to maintain platelet count > 20,000/mm^3 with transfusion)
  • No current acute myelogenous leukemia (e.g., > 30% blasts)

PATIENT CHARACTERISTICS:

Performance status

  • Karnofsky 50-100%

Life expectancy

  • At least 6 months

Hematopoietic

  • See Disease Characteristics

Hepatic

  • Bilirubin ≤ 2 mg/dL
  • AST and ALT < 2 times upper limit of normal

Renal

  • Creatinine clearance ≥ 30 mL/min

Cardiovascular

  • No significant cardiovascular condition that would preclude study participation
  • No uncontrolled hypertension

Pulmonary

  • No significant pulmonary condition that would preclude study participation

Immunologic

  • No serious concurrent infection
  • Active infections must be adequately treated with antibiotics prior to study entry
  • No hypersensitivity to bortezomib, boron, or mannitol

Other

  • Not pregnant or nursing
  • Negative pregnancy test
  • Fertile patients must use effective contraception during and for up to 4 weeks after completion of study treatment
  • No peripheral neuropathy ≥ grade 2
  • No uncontrolled seizure activity, as defined by no activity within the past year on stable anticonvulsant medications
  • No other malignancy within the past 3 years except adequately treated basal cell skin cancer or carcinoma in situ of the cervix
  • No endocrine, neurologic, or other systemic disease that would preclude study entry

PRIOR CONCURRENT THERAPY:

Biologic therapy

  • See Disease Characteristics
  • No prior allogeneic bone marrow transplantation
  • Concurrent transfusion support allowed
  • Concurrent epoetin alfa or darbepoetin alfa allowed if initiated before start of study therapy, dose is stable for ≥ 4 weeks, and dose is stable during study participation
  • No concurrent platelet growth factor support
  • No concurrent thalidomide

Chemotherapy

  • No concurrent chemotherapy
  • No concurrent hydroxyurea

Endocrine therapy

  • Concurrent corticosteroids for chronic autoimmune or inflammatory condition allowed if initiated before start of study therapy and maintained on a stable or decreasing dose

Other

  • Recovered from all prior therapies
  • At least 4 weeks since prior MDS therapy, except epoetin alfa, darbepoetin alfa, filgrastim (G-CSF), pegfilgrastim (G-CSF), or transfusion support
  • At least 30 days since prior investigational agents
  • No prior bortezomib
  • No other concurrent investigational agents
  • No other concurrent therapy for MDS

Treatment and study plan

bortezomib

Drug

Primary outcomes

  1. Number of Participants Who Experienced an Adverse Event

    Time frame: For 21 days/course for up to 12 courses

  2. Number of Participants Who Experienced Cytopenias

    Time frame: 21 Days/course for up to 12 courses

Secondary outcomes

  1. Interleukin 6 Levels in Serum

    Time frame: day 14

    interleukin-6 levels were measured by enzyme-linked immunosorbant assay ELISA in serum from participants exposed to bortezomib.

    Levels were measured at Day 0 and Day 14 of cycle 1 of the clinical trial.

  2. Vascular Endothelial Growth Factor (VEGF) Levels in Serum

    Time frame: day 14

    VEGF levels were measured by ELISA (R&DSystems) in serum from participants exposed to bortezomib. Levels were measured at Day 0 and Day 14 of cycle 1 of the clinical trial.

  3. Average Percentage of Light Density Cells in Apoptosis

    Time frame: day 14

    The CD34+ fraction of light density marrow obtained from patients at baseline and while receiving bortezomib were assessed through measurement of Annexin V (assay obtained form R&D Systems) and by flow cytometry analysis.

  4. Average Number of Colony Forming Unit-granulocyte-macrophages in Bone Marrow

    Time frame: day 14

    Colony forming unit-granulocyte-macrophage (CFU-GM) progenitors, erythroid burst forming units (BFU-E), and leukemia colony forming units (CFU-L) were measured at day 0 and day 14 of cycle 1. Five × 10(4) light density cell for granulocyte-macrophage colony forming unit (CFU-GM) or erythroid burst forming unit (BFU-E) assays were plated in 0.9% methylcellulose, 30% FCS, 2 mmol/L L-glutamine, 10-4 mol/L β-mercaptoethanol, and 1% BSA with 3U/ml human erythropoietin, 10 ng/ml GM-CSF, 10 ng/ml IL-3, and 50 ng/ml stem cell factor (SCF) (c-kit ligand). For leukemia colony forming units (CFU-Ls), the plating mixture was comparable with the exception that the cytokines utilized were 4 U/ml erythropoietin, 10 ng/ml GM-CSF, 10 ng/ml IL-3, 100 ng/ml c-kit ligand, and 100 ng/ml Flt3 ligand. The methylcellulose mixture and associated reagents were purchased from Stem Cell Technologies (Vancouver, BC). Colonies were scored at Day 14 and were defined as > 20 grouped cells.

  5. Average Number of Erthroid Burst Forming Units in Bone Marrow

    Time frame: day 14

    Colony forming unit-granulocyte-macrophage (CFU-GM) progenitors, erythroid burst forming units (BFU-E), and leukemia colony forming units (CFU-L) were measured at day 0 and day 14 of cycle 1. Five × 10(4) light density cell for granulocyte-macrophage colony forming unit (CFU-GM) or erythroid burst forming unit (BFU-E) assays were plated in 0.9% methylcellulose, 30% FCS, 2 mmol/L L-glutamine, 10-4 mol/L β-mercaptoethanol, and 1% BSA with 3U/ml human erythropoietin, 10 ng/ml GM-CSF, 10 ng/ml IL-3, and 50 ng/ml stem cell factor (SCF) (c-kit ligand). For leukemia colony forming units (CFU-Ls), the plating mixture was comparable with the exception that the cytokines utilized were 4 U/ml erythropoietin, 10 ng/ml GM-CSF, 10 ng/ml IL-3, 100 ng/ml c-kit ligand, and 100 ng/ml Flt3 ligand. The methylcellulose mixture and associated reagents were purchased from Stem Cell Technologies (Vancouver, BC). Colonies were scored at Day 14 and were defined as > 20 grouped cells.

  6. Average Number of Leukemia Forming Units in Bone Marrow

    Time frame: day 14

    Colony forming unit-granulocyte-macrophage (CFU-GM) progenitors, erythroid burst forming units (BFU-E), and leukemia colony forming units (CFU-L) were measured at day 0 and day 14 of cycle 1. Five × 10(4) light density cell for granulocyte-macrophage colony forming unit (CFU-GM) or erythroid burst forming unit (BFU-E) assays were plated in 0.9% methylcellulose, 30% FCS, 2 mmol/L L-glutamine, 10-4 mol/L β-mercaptoethanol, and 1% BSA with 3U/ml human erythropoietin, 10 ng/ml GM-CSF, 10 ng/ml IL-3, and 50 ng/ml stem cell factor (SCF) (c-kit ligand). For leukemia colony forming units (CFU-Ls), the plating mixture was comparable with the exception that the cytokines utilized were 4 U/ml erythropoietin, 10 ng/ml GM-CSF, 10 ng/ml IL-3, 100 ng/ml c-kit ligand, and 100 ng/ml Flt3 ligand. The methylcellulose mixture and associated reagents were purchased from Stem Cell Technologies (Vancouver, BC). Colonies were scored at Day 14 and were defined as > 20 grouped cells.

Sponsors and collaborators

Lead sponsor

University of Rochester

Other

Registry information

Official study title

A Phase II Pilot Study of VELCADE in Patients With MDS

Important dates

Study start
2005
Primary completion
2010
Study completion
2010
First posted
Dec 7, 2005
Registry last updated
May 9, 2016

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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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