CClinicalTrials.gg
CompletedNCT00703820Updated Aug 10, 2021Results posted

Clofarabine Plus Cytarabine Versus Conventional Induction Therapy And A Study Of NK Cell Transplantation In Newly Diagnosed Acute Myeloid Leukemia

A Phase 3 interventional study of Cytarabine and Daunorubicin in Acute Myeloid Leukemia, sponsored by St. Jude Children's Research Hospital. Completed at 8 sites in 2 countries. Open to participants aged Up to 21 Years. Per ClinicalTrials.gov, last updated 2021-08-10.

Sponsored by St. Jude Children's Research Hospital · Phase 3, Interventional, and Treatment

Phase
Phase 3
Study type
Interventional
Enrollment
324
Allocation
Randomized
Ages
Up to 21 Years
Sex
All
01

Study summary

The purpose of this study is to assess the feasibility and efficacy of a novel form of therapy-haploidentical NK cell transplantation-in patients with standard-risk AML. In addition, we will investigate the efficacy of clofarabine + cytarabine (Clo/AraC) in newly diagnosed patients with AML and attempt to optimize outcome through the use of MRD-adapted therapy and further improvements in supportive care.

Read the detailed description

The overall objective of this protocol is to improve the cure rate of acute myeloid leukemia (AML).

We will compare the immunologic complete response rate after one course of therapy in patients who receive cytarabine + daunorubicin + etoposide (ADE) with that in patients who receive clofarabine + cytarabine (Clo/AraC)

Secondary objectives include

  • To estimate the event-free survival (EFS) of standard risk (SR) patients who receive chemotherapy alone and the EFS of SR patients who receive chemotherapy followed by natural killer (NK) cell transplantation.

Exploratory Objectives:

  • To genotype natural killer (NK) cell receptors and measure their expressions at diagnosis and after induction therapy, and to explore the associations of these features with treatment outcome
  • To assess the prognostic value of levels of minimal residual disease in peripheral blood at day 8 of induction I
  • To validate new markers and methods for minimal residual disease (MRD) detection
  • To identify new prognostic factors by applying new technologies to study patient material
  • To identify pharmacogenetic, pharmacokinetic and pharmacodynamic predictors for treatment-related outcomes in the context of the systemic therapy used in the protocol
  • To describe the impact of antibiotic and antifungal prophylaxis on invasive bacterial and fungal infections, febrile neutropenia, hospitalization, and antibiotic resistance.
  • To determine the performance characteristics of broad-range, molecular diagnostic methods for detection of bacterial, fungal, and viral agents, in comparison to methods currently in routine clinical use

Treatment will be based on cytogenetic and molecular characteristics, morphology, and response to therapy as assessed by flow cytometry. Risk groups are defined below. The general treatment plan will consist of chemotherapy for LR patients, chemotherapy ± NK cell therapy for SR patients, and chemotherapy + stem cell transplant (SCT) for HR patients. HR patients who do not have a suitable stem cell donor or who decline SCT will be eligible for NK cell therapy.

Low-risk (LR) criteria (not eligible for SCT or NK cell therapy)

  • Core binding factor (CBF) leukemia [t(8;21)/AML1-ETO or inv(16)/t(16;16)/CBF-MYH11,] and MRD \< 0.1% at day 22,regardless of other genetic features.
  • Patients with CBF leukemia who have MRD ≥ to 0.1% at day 22 or who have increasing levels of fusion transcript will be considered SR and thus eligible for NK cell therapy.

Standard-risk (SR) criteria (eligible for NK cell therapy)

  • Absence of low-risk or high-risk features.
  • CBF leukemia with MRD ≥ 0.1% at day 22 or increasing levels of fusion transcript
  • FLT3-ITD and MRD \< 0.1% at day 22

High-risk (HR) criteria (candidates for SCT; eligible for NK cell therapy)

Presence of one of the following features:

  • t(6;9), t(8;16), t(16;21), -7, -5, or 5q-
  • FAB M0 or M6
  • FAB M7 without t(1;22)
  • Treatment-related (secondary) AML
  • RAEB-2 or AML arising from prior MDS
  • FLT3-ITD and MRD ≥ 0.1% at day 22
  • All other patients with poor response to therapy (must have one of the following features) MRD ≥ to 5% at day 22 MRD ≥ to 0.1% after Induction II

Induction therapy (2 courses)

All patients will receive two courses of induction therapy that will include one course of either high dose cytarabine, daunorubicin, and etoposide (HD-ADE) or one course of clofarabine and cytarabine (Clo/AraC), followed by one course of low dose cytarabine, daunorubicin, and etoposide (LD-ADE). Patients will be randomly assigned to receive one of the following induction regimens.

Induction I: HD-ADE

Cytarabine: 3 g/m2 IV over 3 hours q12 hours x 6 doses (days 1, 3, 5) Daunorubicin: 50 mg/m2 (1.67 mg/kg for patients less than 10 kg) IV over 6 hours on days 2, 4, 6 (3 doses) Etoposide: 100 mg/m2 IV over 4 hours on days 2-6 (5 doses)

Induction I: Clo/AraC

Clofarabine: 52 mg/m2 IV over 2 hours on days 1-5 (5 doses) Cytarabine: 1 gram/m2 IV over 2 hours on days 1-5 (5 doses; each dose to start 4 hours after the start of clofarabine)

Induction II: LD-ADE

Cytarabine: 100 mg/m2 IV over 30 minutes q12 hours on days 1-8 (16 doses), Daunorubicin: 50 mg/m2 (1.67 mg/kg for patients less than 10 kg) IV over 6 hours on days 2, 4, 6 (3 doses) Etoposide: 100 mg/m2 IV over 4 hours on days 1-5 (5 doses)

Induction II for patients with FLT3-ITD: LD-ADE + Sorafenib

Patients with FLT3-ITD will take Sorafenib, 400 mg/m2 per day, orally in two divided doses (200 mg/m2/dose BID) starting one day after the completion of Induction II and continuing for 21 days Patients with FLT3-ITD who do not experience toxicity related to Sorafenib will also receive a 21-day course of Sorafenib after subsequent courses of chemotherapy.

Induction II for other HR patients: LD-ADE + vorinostat

[NOTE: Collaborating institutions may elect to opt out of treatment with vorinostat. If a site opts out, then all applicable patients at that site will receive standard induction therapy with LD-ADE (without vorinostat).]

Patients with M7 AML without t(1;22) and other HR patients without FLT3-ITD will be treated with a combination of vorinostat and LD-ADE. Vorinostat will be given orally for 3 days (Days -2, -1, 0) prior to the initiation of Induction II chemotherapy.

Special subgroup HR patients with MRD \< 0.1% may proceed directly to SCT after Induction I if a suitable donor is available and the transplant can be performed without delay.

Consolidation I:

Mitoxantrone: 12 mg/m2 (0.4 mg/kg for patients less than 10 kg) IV over 1 hour on days 3-5 (3 doses) Cytarabine: 1 g/m2 IV over 2 hours every 12 hours on days 1-4 (8 doses)

Consolidation II:

Cytarabine 3 g/m2 IV over 3 hours every 12 hours on days 1, 2, 8, 9 (8 doses). Erwinia Asparaginase 25,000 Units/m2 (833 Units/kg for infants \< 1 month of age, or for infants \< 3 months of age who were born significantly prematurely defined as \< 36 weeks gestation) IM or IV over 1 hour, 3 hours after the 4th and 8th doses of cytarabine.

NK cell therapy Standard risk patients who have a KIR-mismatched family member who is greater than 18 years old will undergo NK cell transplantation. In addition, HR patients who do not have a suitable stem cell donor or who decline SCT will be eligible for NK cell therapy if they have a KIR-mismatched family member.

Treatment schema Day -7: Cyclophosphamide 60 mg/kg IV over 1 hour. Mesna 15 mg/kg/dose IV Days -6 through -2: Fludarabine 25 mg/m2/day IV over 30 minutes (5 doses) Days -1, +1, +3, +5, +7, +9: IL-2 1 million units/m2 given subcutaneously Day -1: Donor pheresis Day 0: NK cell infusion

No steroids, including the use of hydrocortisone as pre-medication, may be given to patients during the 3 days prior to the NK cell infusion or during the first 7 days after the infusion.

CNS therapy

Triple intrathecal therapy with methotrexate, hydrocortisone, and cytarabine (MHA) will be used for all CNS therapy at the doses:

\< 1 year methotrexate 6 mg, hydrocortisone 12 mg, cytarabine 18 mg, 1-2 years methotrexate 8 mg, hydrocortisone 16 mg, cytarabine 24 mg, 2-3 years methotrexate 10 mg, hydrocortisone 20 mg, cytarabine 30 mg, > 3 years methotrexate 12 mg, hydrocortisone 24 mg, cytarabine 36 mg

Leucovorin rescue (5 mg/m2 per dose; 5 mg maximum per dose) will be given orally or intravenously at 24 and 30 hours after each IT MHA treatment.

Patients with no evidence of CNS disease \[(i.e., no leukemic blast cells on cerebrospinal fluid (CSF) cytospin] will receive 4 total doses of intrathecal therapy, given at approximately one month intervals or at the beginning of each of the first 4 courses of chemotherapy.IT therapy will not be given before NK cell therapy.

Patients with overt CNS leukemia (less than or equal to 5 leukocytes per l of CSF and the presence of leukemic blast cells on CSF cytospin) will receive weekly intrathecal therapy until the CSF is free of blast cells (minimum number of doses, 4). These patients will then receive 4 additional doses of intrathecal therapy (minimum total number of doses, 8) at approximately 1-month intervals (generally given with each subsequent course of chemotherapy).IT therapy will not be given before NK cell therapy.

Patients with \< 5 leukocytes per mul of CSF and the presence of leukemic blast cells on CSF cytospin (CNS2)will receive weekly intrathecal therapy until the CSF is free of blast cells. These patients will then receive 4 additional doses of intrathecal therapy at approximately 1-month intervals (generally given with each subsequent course of chemotherapy).IT therapy will not be given before NK cell therapy.

Patients who are unable to undergo lumbar puncture and receive intrathecal therapy prior to starting induction I should be treated as CNS2 unless they have overt CNS leukemia (CNS3).

02

Conditions studied

03

In context

Leukemia

5,441 studies on the registry are indexed under Leukemia; 636 are open to participants now.

This study's enrollment of 324 is above the median of 38 across 4,247 interventional studies indexed under Leukemia.

Browse Leukemia studies →

Lead sponsor

St. Jude Children's Research Hospital is the lead sponsor of 434 studies on the registry; 99 are open to participants now.

Of its 60 completed or terminated interventional studies of FDA-regulated products, 35 (58%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
Up to 21 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Age less than or equal to 21 years at time of study entry.
  • No prior therapy for this malignancy except for one dose of intrathecal therapy and the use of hydroxyurea or low-dose cytarabine (100-200 mg/m2 per day for one week or less ) for hyperleukocytosis.
  • Written informed consent according to institutional guidelines
  • Female patients of childbearing potential must have a negative serum pregnancy test within 2 weeks prior to enrollment
  • Male and female participants must use an effective contraceptive method during the study and for a minimum of 6 months after study treatment.

Exclusion criteria

Exclusion Criteria:

  • Down syndrome
  • Acute Promyelocytic Leukemia (APL)
  • Juvenile Myelomonocytic Leukemia (JMML)
  • Fanconi anemia (FA)
  • Kostmann syndrome
  • Shwachman syndrome
  • Other bone marrow failure syndromes
  • Use of concomitant chemotherapy, radiation therapy, or immunotherapy other than as specified in the protocol.
  • Use of investigational agents within 30 days or any anticancer therapy within 2 weeks before study entry with the exception of IT therapy, hydroxyurea, or low-dose cytarabine as stated above. The patient must have recovered from all acute toxicities from any previous therapy.
  • Systemic fungal, bacterial, viral, or other infection not controlled (defined as exhibiting ongoing signs/symptoms related to the infection and without improvement, despite appropriate antibiotics or other treatment).
  • Pregnant or lactating patients.
  • Any significant concurrent disease, illness, or psychiatric disorder that would compromise patient safety or compliance, interfere with consent, study participation, follow up, or interpretation of study results.
05

Study design

Phase
Phase 3
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
324 participants (actual)

Study arms

  • Active comparator
    ADE

    Cytarabine + Daunorubicin + Etoposide NK cells for infusion are prepared using the CliniMACS System.

    Drug: Cytarabine · Drug: Daunorubicin · Drug: Etoposide · Device: CliniMACS

  • Active comparator
    Clo/AraC

    Clofarabine + Cytarabine NK cells for infusion are prepared using the CliniMACS System.

    Drug: Cytarabine · Drug: Clofarabine · Device: CliniMACS

Interventions

  • DrugCytarabine

    See Detailed Description

    Also known as: Ara-C, Cytosar-U®

  • DrugDaunorubicin

    See Detailed Description

    Also known as: Daunomycin, Cerubidine®

  • DrugEtoposide

    See Detailed Description

    Also known as: VP-16, Vepesid®

  • DrugClofarabine

    See Detailed Description

    Also known as: Clolar^TM, Clofarex

  • DeviceCliniMACS

    The mechanism of action of the CliniMACS Cell Selection System is based on magnetic-activated cell sorting (MACS). The CliniMACS device is a powerful tool for the isolation of many cell types from heterogeneous cell mixtures, (e.g. apheresis products). These can then be separated in a magnetic field using an immunomagnetic label specific for the cell type of interest, such as CD3+ human T cells.

    Also known as: Cell Selection System

06

What researchers measure

Primary outcomes

  1. Day 22 Minimal Residual Disease (MRD) Measured by Flow Cytometry

    MRD-negative is defined as \<0.1% blasts with leukemia-associated phenotype detected by flow cytometry. MRD-positive is defined as \>=0.1% blasts with leukemia-associated phenotype detected by flow cytometry.

    Time frame: Day 22 MRD measurement after one course of therapy

Secondary outcomes

  1. Event-free Survival of Standard Risk Patients Who Receive Chemotherapy Alone.

    Kaplan-Meier estimate of the probability of being alive and free of relapse or second malignancy three years after protocol enrollment

    Time frame: 3 years after completion of therapy

  2. Event-free Survival of Standard Risk Patients Who Receive Chemotherapy Followed by Natural Killer Cell Transplantation.

    Kaplan-Meier estimate of the probability of being alive and free of relapse or second malignancy three years after protocol enrollment

    Time frame: 3 years after completion of therapy

07

Results

Posted Apr 2, 2018

Participant flow

324 participants enrolled between August 2008 and March 2017.

Participant flow — Overall Study
MilestoneCytarabine+Daunorubicin+EtoposideClofarabine+Cytarabine
Started133129
Completed9895
Not completed3534
Withdrew: Adverse event1217
Withdrew: Death50
Withdrew: Lack of efficacy1111
Withdrew: Received non-protocol therapy10
Withdrew: Physician decision45
Withdrew: Withdrawal by subject21

Outcome measures

PrimaryDay 22 Minimal Residual Disease (MRD) Measured by Flow Cytometry

MRD-negative is defined as \<0.1% blasts with leukemia-associated phenotype detected by flow cytometry. MRD-positive is defined as \>=0.1% blasts with leukemia-associated phenotype detected by flow cytometry.

Time frame:
Day 22 MRD measurement after one course of therapy
Reported as:
Count of participants · Participants
Day 22 Minimal Residual Disease (MRD) Measured by Flow Cytometry
ParticipantsCytarabine+Daunorubicin+EtoposideClofarabine+Cytarabine
MRD Positive4257
MRD Negative7964
Statistical analysis
  • Cytarabine+Daunorubicin+Etoposide vs Clofarabine+Cytarabine · Cochran-Mantel-Haenszel · p = 0.035 (The p-value is not adjusted for multiple comparisons. The a priori threshold for statistical significance is 0.0429 so that the overall level of the study is maintained at 0.05 across the 4 interim analyses and the final analysis.) · Odds ratio (or): 1.87 · 95% CI 1.03 to 3.41The odds ratio is defined as the ratio of the odds that a Clofarabine+Cytarabine patient is MRD positive to the odds that a Cytarabine+Daunorubicin+Etoposide patient is MRD positive.
SecondaryEvent-free Survival of Standard Risk Patients Who Receive Chemotherapy Alone.

Kaplan-Meier estimate of the probability of being alive and free of relapse or second malignancy three years after protocol enrollment

Time frame:
3 years after completion of therapy
Reported as:
Number · Percentage of participants
Event-free Survival of Standard Risk Patients Who Receive Chemotherapy Alone.
Percentage of participantsCytarabine+Daunorubicin+EtoposideClofarabine+Cytarabine
Event-free Survival of Standard Risk Patients Who Receive Chemotherapy Alone.55.6 (43.3 to 71.4)54.3 (40.6 to 72.5)
SecondaryEvent-free Survival of Standard Risk Patients Who Receive Chemotherapy Followed by Natural Killer Cell Transplantation.

Kaplan-Meier estimate of the probability of being alive and free of relapse or second malignancy three years after protocol enrollment

Time frame:
3 years after completion of therapy
Reported as:
Number · Percentage of participants
Event-free Survival of Standard Risk Patients Who Receive Chemotherapy Followed by Natural Killer Cell Transplantation.
Percentage of participantsCytarabine+Daunorubicin+EtoposideClofarabine+Cytarabine
Event-free Survival of Standard Risk Patients Who Receive Chemotherapy Followed by Natural Killer Cell Transplantation.55.6 (31.0 to 99.7)77.8 (54.9 to 100.0)

Adverse events

Collected over Participants were monitored from the start of therapy through 30 days after this protocol's treatment plan was completed. Participants who received NK cell infusions were followed until any identified toxicities resolved to less than grade 2. Donors were followed for adverse events from the day of apheresis through seven days following apheresis.. Non-serious events are listed at a 5% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Cytarabine+Daunorubicin+Etoposide43/133 (32.3%)127/133 (95.5%)9/133 (6.8%)
Clofarabine+Cytarabine32/129 (24.8%)122/129 (94.6%)9/129 (7%)
Stem Cell Donors0/29 (0%)0/29 (0%)0/29 (0%)
Most frequent serious events
Showing 10 of 177
Most frequent serious events
EventCytarabine+Daunorubicin+EtoposideClofarabine+CytarabineStem Cell Donors
Febrile neutropenia (fever of unknown origin: not clinically or microbiologically documented)Blood and lymphatic system disorders90/13395/1290/29
Infection (documented clinically or microbioogically) with Grade 3 or 4 neutrophils (ANC<1.0x10e9/L)Infections and infestations71/13377/1290/29
ALT, SGPT (serum glutamic pyruvic transaminase)Metabolism and nutrition disorders33/13348/1290/29
Potassium, serum-low (hypokalemia)Metabolism and nutrition disorders45/13348/1290/29
AST, SGOT (serum glutamic oxaloacetic transaminase)Metabolism and nutrition disorders20/13327/1290/29
Infection (documented clinically or microbiologically documented, ANC<1.0x10e9/L, fever>38.5C),bloodInfections and infestations20/13321/1290/29
Colitis, infectious (e.g., Clostridium difficile)Infections and infestations21/13318/1290/29
HypoxiaRespiratory, thoracic and mediastinal disorders10/13319/1290/29
Phosphate, serum-low (hypophosphatemia)Metabolism and nutrition disorders17/13310/1290/29
VomitingGastrointestinal disorders7/13316/1290/29
Most frequent other events
Most frequent other events
EventCytarabine+Daunorubicin+EtoposideClofarabine+CytarabineStem Cell Donors
Allergic reaction/hypersensitivity (including drug fever)Immune system disorders9/1339/1290/29

Baseline characteristics

Age, Continuous
Age, Continuous(years)Cytarabine+Daunorubicin+EtoposideClofarabine+CytarabineTotal
Mean9.57 ± 6.009.05 ± 6.409.31 ± 6.18
Sex: Female, Male
Sex: Female, Male(Participants)Cytarabine+Daunorubicin+EtoposideClofarabine+CytarabineTotal
Female6059119
Male7370143
Ethnicity (NIH/OMB)
Ethnicity (NIH/OMB)(Participants)Cytarabine+Daunorubicin+EtoposideClofarabine+CytarabineTotal
Hispanic or Latino281745
Not Hispanic or Latino99110209
Unknown or Not Reported628
Race (NIH/OMB)
Race (NIH/OMB)(Participants)Cytarabine+Daunorubicin+EtoposideClofarabine+CytarabineTotal
American Indian or Alaska Native000
Asian61218
Native Hawaiian or Other Pacific Islander112
Black or African American202141
White10081181
More than one race459
Unknown or Not Reported2911
08

Study locations

8 sites
  • Stanford University Medical Center
    Palo Alto, California 94304, United States
  • Rady Children's Hospital
    San Diego, California 92123, United States
  • University of Chicago
    Chicago, Illinois 60637, United States
  • Dana Farber Cancer Institute and Children's Hospital
    Boston, Massachusetts 02215-5450, United States
  • Children's Hospital of Michigan
    Detroit, Michigan 48201, United States
  • St. Jude Children's Research Hospital
    Memphis, Tennessee 38105, United States
  • Cook's Children's Medical Center
    Fort Worth, Texas 76104, United States
  • National University Health System
    Singapore, 119228, Singapore
09

References and documents

Publications

  • Rubnitz JE, Lacayo NJ, Inaba H, Heym K, Ribeiro RC, Taub J, McNeer J, Degar B, Schiff D, Yeoh AE, Coustan-Smith E, Wang L, Triplett B, Raimondi SC, Klco J, Choi J, Pounds S, Pui CH. Clofarabine Can Replace Anthracyclines and Etoposide in Remission Induction Therapy for Childhood Acute Myeloid Leukemia: The AML08 Multicenter, Randomized Phase III Trial. J Clin Oncol. 2019 Aug 10;37(23):2072-2081. doi: 10.1200/JCO.19.00327. Epub 2019 Jun 27. PubMed 31246522 ↗
  • Nguyen R, Wu H, Pounds S, Inaba H, Ribeiro RC, Cullins D, Rooney B, Bell T, Lacayo NJ, Heym K, Degar B, Schiff D, Janssen WE, Triplett B, Pui CH, Leung W, Rubnitz JE. A phase II clinical trial of adoptive transfer of haploidentical natural killer cells for consolidation therapy of pediatric acute myeloid leukemia. J Immunother Cancer. 2019 Mar 20;7(1):81. doi: 10.1186/s40425-019-0564-6. PubMed 30894213 ↗

Study documents

  • Protocol and statistical analysis plan · Jun 7, 2016

Documents are hosted by the registry — open the source record to download them.

10

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Aug 10, 2021, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
11

Registry details

Key details

Study ID
NCT00703820
Lead sponsor
St. Jude Children's Research Hospital
Collaborators
Genzyme, a Sanofi Company, National Cancer Institute (NCI)
Responsible party
Sponsor
First posted
Jun 24, 2008
Start date
Aug 4, 2008
Primary completion
Mar 30, 2017
Completion
Aug 14, 2020
Results posted
Apr 2, 2018
Last update
Aug 10, 2021

Study contacts

Jeffrey Rubnitz, MD
principal investigator · St. Jude Children's Research Hospital

Oversight

Data monitoring committee
Yes
FDA-regulated drug
Yes
FDA-regulated device
Yes
View the source record on ClinicalTrials.gov ↗

Not currently enrolling

This study is completed, as verified in Jul 2021. You cannot join it, but the record below documents what was studied.

Follow this study

Get an email when the registry record changes — status, dates, results — or when someone posts here.

Sign in to follow

Discussion

Questions and observations about this study, from anyone following it. Not medical advice, and not a channel to the study team — their contact details are on the registry record.

Sign in to join the discussion. Reading takes no account; posting does. You choose a display name, and a pseudonym is the default.

Nothing here yet. If you are running this trial, taking part in it, or weighing whether to, this is the place to say so.

Start the discussion