Dinutuximab With Chemotherapy, Surgery and Stem Cell Transplantation for the Treatment of Children With Newly Diagnosed High Risk Neuroblastoma

Trial statusRecruiting
Trial phasePhase 3
Trial typeInterventional
Biological sexAll
AgeUp to 30
SponsorNational Cancer Institute (NCI)

About this trial

This phase III trial tests how well the addition of dinutuximab to Induction chemotherapy along with standard of care surgical resection of the primary tumor, radiation, stem cell transplantation, and immunotherapy works for treating children with newly diagnosed high-risk neuroblastoma. Dinutuximab is a monoclonal antibody that binds to a molecule called GD2, which is found on the surface of neuroblastoma cells, but is not present on many healthy or normal cells in the body. When dinutuximab binds to the neuroblastoma cells, it helps signal the immune system to kill the tumor cells. This helps the cells of the immune system kill the cancer cells, this is a type of immunotherapy. When chemotherapy and immunotherapy are given together, during the same treatment cycle, it is called chemoimmunotherapy. This clinical trial randomly assigns patients to receive either standard chemotherapy and surgery or chemoimmunotherapy (chemotherapy plus dinutuximab) and surgery during Induction therapy. Chemotherapy drugs administered during Induction include, cyclophosphamide, topotecan, cisplatin, etoposide, vincristine, and doxorubicin. These drugs work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing or by stopping them from spreading. Upon completion of 5 cycles of Induction therapy, a disease evaluation is completed to determine how well the treatment worked. If the tumor responds to therapy, patients receive a tandem transplantation with stem cell rescue. If the tumor has little improvement or worsens, patients receive chemoimmunotherapy on Extended Induction. During Extended Induction, dinutuximab is given with irinotecan, temozolomide. Patients with a good response to therapy move on to Consolidation therapy, when very high doses of chemotherapy are given at two separate points to kill any remaining cancer cells. Following, transplant, radiation therapy is given to the site where the cancer originated (primary site) and to any other areas that are still active at the end of Induction. The final stage of therapy is Post-Consolidation. During Post-Consolidation, dinutuximab is given with isotretinoin, with the goal of maintaining the response achieved with the previous therapy. Adding dinutuximab to Induction chemotherapy along with standard of care surgical resection of the primary tumor, radiation, stem cell transplantation, and immunotherapy may be better at treating children with newly diagnosed high-risk neuroblastoma.

Eligibility criteria

This trial does not accept healthy volunteers

Qualifiers

Patients must be enrolled on APEC14B1 and have consented to testing through the Molecular Characterization Initiative (MCI), prior to enrollment on ANBL2131

≤ 30 years at the time of initial diagnosis with high-risk disease

* Must have a diagnosis of neuroblastoma (NBL) or ganglioneuroblastoma (nodular) verified by tumor pathology analysis or demonstration of clumps of tumor cells in bone marrow with elevated urinary catecholamines

Any age with International Neuroblastoma Risk Group (INRG) Stage L2, MS, or M and MYCN amplification

Disqualifiers

Patients who are 365-546 days of age with INRG Stage M and MYCN non-amplified NBL, irrespective of additional biologic features

Patients ≥ 547 days of age with INRG Stage L2, MYCN non-amplified NBL, regardless of additional biologic features

Patients with known bone marrow failure syndromes

Patients on chronic immunosuppressive medications (e.g., tacrolimus, cyclosporine, corticosteroids) for reasons other than prevention/treatment of allergic reactions and adrenal replacement therapy are not eligible. Topical and inhaled corticosteroids are acceptable

Trial design

Design model

Parallel

Treatments tested in this trial

  • Biospecimen Collection

    Procedure/Surgery

    Undergo blood and urine sample collection

  • Bone Marrow Aspiration

    Procedure/Surgery

    Undergo bone marrow aspiration

  • Bone Marrow Biopsy

    Procedure/Surgery

    Undergo bone marrow biopsy

  • Carboplatin

    Drug

    Given IV

  • Cisplatin

    Drug

    Given IV

  • Computed Tomography

    Procedure/Surgery

    Undergo CT scan

  • Cyclophosphamide

    Drug

    Given IV

  • Dinutuximab

    Biological/Vaccine

    Given IV

  • Doxorubicin

    Drug

    Given IV

  • Echocardiography Test

    Procedure/Surgery

    Undergo ECHO

  • Etoposide

    Drug

    Given IV

  • FDG-Positron Emission Tomography and Computed Tomography Scan

    Procedure/Surgery

    Undergo FDG PET

  • Hematopoietic Cell Transplantation

    Procedure/Surgery

    Undergo stem cell infusion

  • Irinotecan

    Drug

    Given IV

  • Isotretinoin

    Drug

    Given PO

  • Leukapheresis

    Procedure/Surgery

    Undergo apheresis

  • Magnetic Resonance Imaging

    Procedure/Surgery

    Undergo MRI

  • Melphalan

    Drug

    Given IV

  • Multigated Acquisition Scan

    Procedure/Surgery

    Undergo MUGA

  • Radiation Therapy

    Radiation

    Undergo radiation therapy

  • Radionuclide Imaging

    Procedure/Surgery

    Undergo I-MIBG scan

  • Survey Administration

    Other intervention

    Ancillary studies

  • Temozolomide

    Drug

    Given PO or via NG or G tube

  • Thiotepa

    Drug

    Given IV

  • Topotecan

    Drug

    Given IV

  • Tumor Resection

    Procedure/Surgery

    Undergo tumor resection surgery

  • Vincristine

    Drug

    Given IV

Treatment groups

478 Participants
are divided into 2 treatment groups
Group A: Arm A (SOC treatment)Active comparator 27 interventions
Group B: Arm B (Dinutuximab in induction)Experimental treatment 27 interventions

Trial outcomes

Primary outcomes

1

Event free survival (EFS)

EFS time is calculated from time of randomization to Arms A or B to first episode of disease relapse or progression, second malignancy, or death, or until last contact if no event has occurred.

Time frame
Up to 3 years

Secondary outcomes

1

End of Induction (EOI) response rate

The response rate will be calculated among all evaluable patients at end of Induction. Responders are defined as patients who achieve a \>= partial response per the revised 2017 International Neuroblastoma Response Criteria (INRC)

Time frame
From randomization to end of extended Induction, up to 12 months
2

Overall survival (OS)

OS time is calculated from time of randomization to Arms A or B until death, or until last contact if patient is alive.

Time frame
Up to 3 years
3

Incidence of adverse events

The proportion of patients with at least one grade 3 or higher non-hematologic toxicity or grade 4 or higher hematologic toxicity during protocol therapy, graded according to the National Cancer Institute Common Terminology Criteria for Adverse Events version 5.0, will be reported.

Time frame
Up to 2 years
4

GD2 expression

Dinutuximab binding to pre-therapy patient tumor samples will be measured and categorized as high or low.

Time frame
Up to 12 months

Other outcomes

1

Association between tumor and host factors and outcomes

A series of univariate and multivariate Cox proportional hazards (for EFS and OS) and logistic regression (for responders vs. non-responders) models will be fit for patients in Arms A and B to evaluate the relationship between tumor and host factors (including tumor ALK and other somatic mutations, copy-number aberrations, gene fusions, gene expression, and pathogenic germline variants) and chemo-immunotherapy during Induction with outcome.

Time frame
Up to 10 years
2

Circulating biomarkers and markers of minimal residual disease

Will be assessed by comparing the proportion of patients with detectable vs. non-detectable tumor markers (including circulating tumor deoxyribonucleic acid, circulating free DNA, circulating tumor cells, and immune function profiling) between Arms A and B during and after induction and post-consolidation therapy using chi-squared tests at each individual time point, and Cochran's Q across time points to determine if there is a consistent difference in proportions between arms across time. In addition, the tumor markers will be analyzed as continuous variables using longitudinal data analysis methodology such as mixed effects models or generalized estimating equations as appropriate.

Time frame
Up to 10 years
3

Patterns of failure

The impact of early or late chemoimmunotherapy during Induction on the probability of the involvement of a specific disease site at first relapse will be evaluated using Fisher's exact test.

Time frame
Up to 10 years
4

Effect of telomere maintenance mechanisms

A series of univariate and multivariate Cox proportional hazards (for EFS and OS) and logistic regression (for responders vs. non-responders) models will be fit for patients in arms A and B to evaluate the relationship between telomere maintenance mechanism and chemoimmunotherapy during Induction with outcome. Patients will be classified into 3 groups by telomere maintenance mechanism (TMM) based on messenger ribonucleic acid expression of TERT and analysis of telomeric DNA C-circles: telomerase (TERT) positive, alternative of lengthening of telomeres (ALT) positive, or no identified TMM.

Time frame
Up to 10 years

Sponsors and contacts

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