Unitversity Hospital Antwerp
Edegem, Belgium
NCT Number: NCT04911621
Childhood aggressive gliomas are rare brain tumors with very poor prognosis. Due to the tumor's location and infiltrative nature, surgical removal is not always possible, and even when resection is performed and combined with chemo- and/or radiotherapy, tumor cells frequently persist, eventually giving rise to tumor recurrence. A promising strategy to eradicate persisting tumor cells is vaccination with dendritic cells (DC). DC are immune cells that play an important role in organizing the body's defense against cancer. The goal of DC vaccination is to activate these natural anti-tumor defense mechanisms to delay or prevent tumor progression or recurrence. Previous clinical studies have demonstrated that DC vaccination is well-tolerated, safe and capable of eliciting tumorspecific immunity.
A clinical study including 10 pediatric patients (aged ≥ 12 months and < 18 years at the time of signing the informed consent) with brain (stem) tumors is initiated at the Antwerp University Hospital to investigate intradermal vaccination with WT1 mRNA-loaded autologous monocyte-derived DCs, either combined with first-line chemoradiation treatment or administered as adjuvant therapy following previous therapies. The general objective of this phase I/II clinical study is (1) to demonstrate that WT1-targeted DC vaccine production and administration in pediatric patients with HGG and DIPG, either combined with first-line chemoradiation treatment or administered as adjuvant therapy following previous therapies, is feasible and safe, (2) to study vaccine-induced immune responses, (3) to document patients' quality of life and clinical outcome for comparison with current patients' outcome allowing indication of the added value.
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Notify Me12 month–17 year
All sexes
Interventional
Phase 1 / Phase 2
Edegem, Belgium
1.1 Newly diagnosed HGG and DIPG patients (stratum A)
Patients will be screened and registered in the study following diagnosis, which is based on either histological confirmation or radiographic criteria. Maximal safe resection prior to study entry is strongly recommended, but not required.
Eligible patients will undergo leukapheresis prior to temozolomide-based chemoradiation and subsequent chemo-immunotherapy with maintenance temozolomide and autologous WT1 mRNA-loaded DC vaccination. Chemoradiation with subsequent maintenance temozolomide is considered best available treatment and therefore not considered investigational. The investigational treatment, i.e. adjuvant DC vaccination, is administered in 2 phases:
1.2 Non-treatment naïve HGG and DIPG patients (stratum B)
Patients who have undergone previous anti-glioma treatments can be included in the study, provided they are eligible according to the in- and exclusion criteria.
The decision to start, continue or re-initiate conventional anti-glioma treatment, including radio- and/or chemotherapy, and, if applicable, the treatment dose and scheme, are at the Investigator's discretion. The backbone DC immunotherapy scheme for the induction and booster phase will be maintained with minor modifications:
1.3 Continuation of DC vaccination
While the study treatment schedule consists of 9 DC vaccinations (i.e. 3 induction and 6 booster vaccines), continuation of DC vaccination after the booster phase is allowed, on the conditions that (1) the Investigator judges that the participant's clinical situation justifies additional vaccinations, (2) consent for continuation of DC vaccination of the parents/guardian and the participant (if aged 12 years or older) has been obtained, and (3) residual vaccine aliquots are available.
Disease evolution will be assessed radiologically according to the Response Assessment in Neuro-Oncology (RANO) criteria. In addition, blood samples will be collected for immunomonitoring purposes on the day of the first, fourth and seventh DC vaccine. Tumor resection or biopsy specimens, if available, will be used for local immunological and biomarker analysis. At regular time points throughout the study scheme, parents and participants will be asked to fill out questionnaires on general and disease-specific quality-of-life, as well as on executive function.
Patients will be followed-up until 90 days after administration of the final DC vaccine or 24 months after study entry, whichever occurs later.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: Vaccine production and quality testing (i.e. from leukapheresis until 4 weeks after)
Proportion of patients in the intention-to-treat (ITT) population that had successful leukapheresis
Time frame: Vaccine production and quality testing (i.e. from leukapheresis until 4 weeks after)
Proportion of patients in the ITT population that had successful vaccine production (i.e. production of 9 or more vaccine doses meeting quality control requirements)
Time frame: At the administration of the 1st vaccine (i.e. +- 2 months after leukapheresis)
Proportion of efficacy evaluable patients (i.e. having received at least 1 vaccine + no major protocol violation) in the intention-to-treat (ITT) population
Time frame: Study treatment scheme (i.e. from leukapheresis to administration of the 9th vaccine, +- 34 weeks)
Proportion of patients in the ITT population who completed the study treatment (i.e. from leukapheresis until administration of the 9th vaccine)
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later)
Proportion of patients of the safety population that experienced (S)AEs possibly, probably or definitely related to DC vaccination
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later)
Number of (S)AEs in the safety population (i.e. having received at least 1 DC vaccine)
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later)
Grade of (S)AEs in the safety population
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later).
BOR will be determined per patient as the best response designation over the study, based on radiologic RANO criteria. The response categories are: complete response (CR), partial response (PR), stable disease (SD) and progressive disease (PD).
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later). PFS may be updated after study completion.
PFS is defined as the time (in months) between diagnosis/study entry and the date of progression (recurrence in the case of total resection) or death due to any cause, whichever occurs first.
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later). OS may be updated after study completion.
OS is defined as the time (in months) between diagnosis/study entry and death due to any cause.
Time frame: On the day of the 1st (about 2 months after leukapheresis), 4th (about 3 months after leukapheresis) and 7th DC vaccine (about 6 months after leukapheresis)
Occurrence of WT1-specific CD8+ T cells as assessed by tetramer staining (% positive cells)
Time frame: On the day of the 1st (about 2 months after leukapheresis), 4th (about 3 months after leukapheresis) and 7th DC vaccine (about 6 months after leukapheresis)
Occurrence of WT1-specific CD8+ T cells as assessed by TCR sequencing
Time frame: On the day of the 1st (about 2 months after leukapheresis), 4th (about 3 months after leukapheresis) and 7th DC vaccine (about 6 months after leukapheresis)
Functional WT1-specific T cell responses as assessed by multiparametric flow cytometry following antigen-specific stimulation (% positive cells)
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later)
PedsQL Generic core scale and PedsQL Cancer Module. Higher scores indicate better health-related quality of life/lower problems.
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later)
PedsQL Cancer Module. Higher scores indicate lower problems.
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later)
PedsQL Generic core scale. Higher scores indicate better health-related quality of life.
Time frame: over the entire study duration (i.e. from inclusion to end of follow-up, which lasts until 90 days after the last DC vaccine, or 24 months after inclusion, whichever occurs later)
By means of associative analyses with clinical response and outcome, biomarkers will be identified among immunological parameters and tumor characteristics (if homogeneity of population allows).
Time frame: at baseline, upon completion of the study treatment scheme (i.e. after the 9th DC vaccine), at progression (if applicable) and 90 days after the final DC vaccine
By means of BRIEF (Behavior Rating Inventory of Executive Function) questionnaires, completed before and after the study treatment scheme, it will be assessed how the patient's executive function changes from baseline. Higher T scores mean worse outcome.
University Hospital, Antwerp
Other
Adjuvant Dendritic Cell Immunotherapy Complementing Conventional Therapy for Pediatric Patients With High-grade Glioma and Diffuse Intrinsic Pontine Glioma
Acronym: ADDICT-pedGLIO
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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