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CHIP-AML22/Master: An Open Label Complex Clinical Trial in Newly Diagnosed Pediatric de Novo AML Patients

An Open Label Complex Clinical Trial in Newly Diagnosed Pediatric de Novo AML Patients - a Study by the NOPHO-DB-SHIP Consortium, Master Protocol

Status
Recruiting
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05994690
Enrollment
905
Registered
2023-08-16
Start date
2023-07-14
Completion date
2035-12-31
Last updated
2025-08-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Acute Myeloid Leukemia in Children

Brief summary

The CHIP-AML22 Master protocol has the overall aim of increasing the cure rate in newly diagnosed pediatric de novo AML patients, while avoiding unnecessary toxicity.

Detailed description

This is a master protocol comprising a complex clinical trial with a stratification approach to allocate patients to randomized studies described in the master protocol or linked trials. The overarching objective of the CHIP-AML22 study is to improve event-free survival (EFS) in children and adolescents with AML, as compared to NOPHO-DBH 2012. The consortium strives to achieve the overarching aim by: 1. Avoiding unnecessary toxicity. This will be investigated in a randomized setting (non-inferiority) by omitting a third standard-of-care consolidation course for standard-risk patients (4 versus 5 courses of chemotherapy). 2. Introducing quizartinib as FLT3-inhibitor in addition to the first three sequential chemotherapy courses for all patients with FLT3-ITD/NPM1wt, and as post-SCT continuation treatment for the subset of patients that have MRD ≥0.1% after course 1 or at any time-point later on (historical comparison, higher efficacy). 3. Refining risk-group adapted treatment, by classifying patients with KMT2A-rearrangement (except KMT2A/MLLT3) and MRD≥0.1% in BM after course 1 as high-risk (historical comparison, higher efficacy), as well as patients with the RAM-phenotype and/or CBFA2T3::GLIS2 fusion (historical comparison, higher efficacy). High-risk (non-FLT3-ITD/NPM1wt patients) will also be concluded for patients having ≥15% leukemic cells in BM after course 1, or ≥0.1-5% after course 2. Refractory disease will be defined as ≥5% leukemic cells in bone marrow after 2 courses of induction treatment, or disease elsewhere, or both. 4. Recommending the use of the cardioprotective drug dexrazoxane in all courses incorporating an anthracycline or mitoxantrone (exploratory objective, no statistical design), with the aim to prevent cardiotoxicity. 5. To assess if adding gemtuzumab ozogamicin to the first induction course results in better anti-leukemic efficacy in CD33-positive AML patients. Children with FLT3-ITD/NPM1wt are not eligible for this randomization. 6. To explore health-related Quality of Life during and after completion of treatment by using short questionnaires (exploratory objective, no statistical design).

Interventions

DRUGStandard Intervention Rc

3 consolidation courses (HAM + HA3E + FLA)

DRUGInvestigational Intervention Rc

2 consolidation courses (HAM + FLA)

DRUGStandard Intervention Ri

No addition of GO to first induction course

DRUGInvestigational Intervention Ri

Addition of GO to first induction course

Sponsors

European Commission
CollaboratorOTHER
Princess Maxima Center for Pediatric Oncology
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
1 Days to 18 Years
Healthy volunteers
No

Inclusion criteria

General inclusion criteria for CHIP-AML22/Master: Patients are eligible for the study if they fulfil all four criteria below: 1. Newly diagnosed AML as defined by the diagnostic criteria in section 8.1. Note that different blast thresholds may apply for different genetic abnormalities in case of low blast percentages. The origin of AML must be de novo (not secondary to bone marrow failure or therapy-related). 2. Age ≥ day and ≤18 years old at initial diagnosis. 3. Written informed consent/assent from patients and/or from parents or legal guardians for minor patients, according to local law and regulations. Informed consent should ideally be obtained before day 7 of induction course 1, as patients that are eligible for the linked quizartinib trial should be enrolled before the end of induction course 1, and in view of the planned Mylotarg® randomisation. Thus, standard of care diagnostics and induction treatment may be started before informed consent has been obtained. 4. Able to comply with scheduled follow-up and with management of toxicity. Additional inclusion criteria for Ri randomization 1. CD33 positivity of leukemic blasts as measured by flow cytometry at diagnosis (bone marrow aspirate and/or peripheral blood). 2. Informed consent for participation in randomization Ri Additional inclusion criteria for Rc randomization 1. Patients included in the CHIP-AML22 protocol and stratified to Standard Risk Group according to the stratification algorithm of the protocol 2. Informed consent for participation in randomization Rc General

Exclusion criteria

for CHIP-AML22/Master Patients are excluded if any of the criteria below are present: 1. Previous chemotherapy or radiotherapy. This includes patients with therapy-related AML after previous cancer therapy. These patients may be treated according to the master protocol but will not be part of the formal study population, and data of these patients will not be collected. 2. Patients with a (known) germline predisposition for bone marrow failure, like Fanconi anemia. 3. Myeloid Leukemia of Down syndrome (ML-DS). Patients with ML-DS are recommended to be treated according to the international ML-DS protocol. Patients with AML and DS older than 5 years who often lack GATA1 mutation and do not have typical myeloid leukemia of DS may be treated according to the master protocol but will not be part of the formal study population, hence data of these patients will not be collected. 4. Acute promyelocytic leukemia (APL). 5. Myelodysplastic syndrome (MDS). 6. Juvenile Myelomonocytic Leukemia (JMML). 7. Known intolerance to any of the chemotherapeutic drugs in the protocol. 8. Evidence of cardiac dysfunction (shortening fraction below 28%). 9. Pregnant or lactating patients, or sexually active female patients of childbearing potential not willing to use an highly effective method of contraception for the duration of study therapy and up to 7 months after the completion of all study therapy. 10. Sexually active, fertile male patients, not willing to use an effective method of contraception, for the duration of study therapy, and up to 6 months after the completion of all study therapy. 11. Concomitant administration of any other experimental drug under investigation, or concurrent treatment with any other anti-cancer therapy other than specified in this protocol or in one of the trials linked to this Master protocol, is not allowed. 12. Patients who in the opinion of the investigator, may not be able to comply with the study requirements of the study. 13. Patients with known active hepatitis B, hepatitis C, or HIV infection. 14. Patients for whom informed consent was not obtained.

Design outcomes

Primary

MeasureTime frameDescription
Overarching primary objective5 yearsEvent Free Survival (EFS)
Primary objective Randomisation Consolidation5 yearsDisease Free Survival (DFS)
Primary objective Randomisation Induction5 yearsMRD \<0.1% leukemic cells in the BM

Secondary

MeasureTime frameDescription
Overarching secondary objective - efficacy 48 monthsAbsolute MRD levels after course #1 and #2 and before allo-SCT
Overarching secondary objective - efficacy 55 years• OS
Overarching secondary objective - efficacy 65 years• DFS
Overarching secondary objective - efficacy 75 years• CIR
Overarching secondary objective - toxicity 15 years• Cumulative toxicity, defined as the total of all grades AEs over time, which are graded by NCI CTCAE version 5.0.
Overarching secondary objective - efficacy 18 months• Bone marrow blast counts by morphology and multicolor flow cytometry (MFCM) after course #1 and #2 and before allo-SCT
Secondary objective Randomisation consolidation - safety 18 months• Cumulative toxicity, defined as the total of grade ≥3 AESIs over time, which are graded by NCI CTCAE version 5.0.
Secondary objective Randomisation consolidation - safety 25 years• NRM.
Secondary objective Randomisation consolidation - healthcare resources1 yearCumulative Hospitalized Days
Secondary objective Randomisation consolidation - efficacy 15 years• OS
Secondary objective Randomisation consolidation - efficacy 25 years• CIR
Overarching secondary objective - toxicity 25 years• NRM.
Overarching secondary objective - efficacy 23 monthsORR (CR, CRp, and CRi) and morphologic leukemia-free state (MLFS) rates after course #1 and #2;
Overarching secondary objective - efficacy 38 monthsMRD negativity after course #1 and #2 and before allo-SCT

Countries

Netherlands

Contacts

Primary ContactRenske Benedictus
CHIP-AML22@prinsesmaximacentrum.nl+31889727272

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jun 21, 2026