This study is designed to treat patients who have been diagnosed with brain cancer, including glioblastoma (GBM) and diffuse intrinsic pontine glioma (DIPG). The treatment uses immunomodulatory vaccine generated by autologous dendritic cells (DCs) pulsed with genetically modified tumor cells or tumor-related antigens including neoantigens to inject into patients. Vaccine-induced T cell responses have been associated with improved survival. The study will evaluate the safety and potential benefit of the novel immunomodulatory DC vaccines.
Important Regulatory Notice: This trial record is only for global academic information registration on ClinicalTrials.gov. Neither the sponsor Beijing Meikang Jimian Biotechnology Co., Ltd. nor collaborator Shenzhen Geno-Immune Medical Institute has obtained NMPA clinical trial approval or clinical technology filing permission to carry out interventional cell therapy trials in mainland China. ClinicalTrials.gov registration alone does not represent legal approval by Chinese health and drug regulatory authorities. Diffuse intrinsic pontine glioma (DIPG) or glioblastoma (GBM) is an aggressive malignancy. DIPG mainly occurs in the ventral pontine of childhood. The overall median survival time is 9 to 11 months. The 2-year survival rate is less than 10%. Thus DIPG has become one of the most fatal diseases in children. These tumors invade and infiltrate the surrounding brain, making complete surgical excision impossible. Several studies focused on the identification of GBM or DIPG-specific antigens and evaluated their potential for vaccine application. Immunomodulatory DC vaccines based on ex vivo genetic modifications in combination with known tumor-specific antigens may substantially enhance the activation potential of tumor-specific T cells with improved benefit to patients. Although certain antigens are highly specific in DIPG or GBM, existing immune tolerance suppresses anti-tumor immunity in cancer patients. To induce anti-cancer immune response in patients, ex vivo modification of immune modulatory antigens or immune cells will be necessary. Advanced whole exome sequencing has been developed to identify specific mutations in tumors and predict best-fit MHC-specific neoepitopes for T cell activation. In this study we will investigate novel DC vaccines based on autologous DCs pulsed with genetically modified tumor cells or related antigens such as neoantigens to induce a strong anti-tumor immunity. Early studies of DC-based vaccines targeting gliomas have shown acceptable safety and low toxicity profile. This is a multi-center randomized Phase I study to evaluate safety of novel DC vaccines.
Study Type
INTERVENTIONAL
This study will inject DC vaccine cells near lymphoid tissue close to the tumor. The patient will receive intravenous cyclophosphamide (200 mg/m2) or oral (cytoxan) before the vaccine, followed by DC vaccine and intravenous bevacizumab (15 mg/kg) the next day. The cells will be repeatedly infused every month for six consecutive months depending on the response and the condition of the patient. The amount of DC vaccine cells per injection is based on prior report at 5-10x106. An initial dose escalation scheme will be imposed.
Shenzhen Geno-immune Medical Institute
Shenzhen, Guangdong, China
Safety of infusion of autologous immunomodulatory DC Vaccine is assessed by the NCI CTCAE V4.0 criteria.
Safety of the vaccine will be assessed by monitoring for adverse events (AEs) based on scheduled laboratory assessments.
Time frame: 2 years
Overall survival (OS) at 12 months (OS12).
OS12 will be the clinical efficacy primary endpoint. For subjects who are still alive at 12 months, OS12 will be censored at the last contact date. OS will be estimated using the Kaplan-Meier method.
Time frame: 12 months
Treatment response rate of DIPG or GBM
Defined as the proportion of patients who achieved complete remission (CR), partial remission (PR), stable disease (SD), or progressive disease (PD) based on brain MRI imaging analysis.
Time frame: 6 months]
Overall survival Rate
Percentage of participants with objective response as determined by the investigator based on Response Evaluation Criteria In Solid Tumors Version 1.1 (RECIST v1.1)
Time frame: 1 year follow up
Progression-free survival rate
Progression-free Survival (PFS) as determined by the investigator based on RECIST v1.1
Time frame: 1 years
ELISPOT or antigen specific functional assays for evaluation of antigen specific immune response in patients
Tumor antigen specific immune response in the peripheral blood evaluated by ELISPOT or antigen specific functional assays.
Time frame: 1 year
Magnetic resonance imaging for evaluation of disease progression and prognosis
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Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
10
The prognosis of GBM or DIPG will be determined by MRI
Time frame: 1 years