Related Experiment Video
Updated: Jun 27, 2025

Generation of CAR T Cells for Adoptive Therapy in the Context of Glioblastoma Standard of Care
Published on: February 16, 2015
CAR T-cell therapy: a potential treatment strategy for pediatric midline gliomas
Anand Kumar Das1, Mainak Sinha1, Saraj Kumar Singh2
1All India Institute of Medical Sciences, Phulwari Sharif, Patna, Bihar, 801507, India.
Abstract:
Pediatric brain tumors are the primary cause of death in children with cancer. Diffuse midline glioma (DMG) and diffuse intrinsic pontine glioma (DIPG) are frequently unresectable due to their difficult access location, and 5-year survival remains less than 20%. Despite significant advances in tumor biology and genetics, treatment options remain limited and ineffective. Immunotherapy using T cells with a chimeric antigen receptor (CAR) that has been genetically engineered is quickly emerging as a new treatment option for these patients. High levels of expression were detected for both disialoganglioside (GD2) and B7-H3 in pediatric DMG/DIPG. Numerous studies have been conducted in recent years employing various generations of GD2-CAR T cells. The two most prevalent adverse effects found with this therapy are cytokine release syndrome, which varies in severity from mild constitutional symptoms to a high-grade disease associated with potentially fatal multi-organ failure, and neurotoxicity, known as CAR T-cell-related encephalopathy syndrome. During the acute phase of anticancer action, peri-tumoral neuro-inflammation might cause deadly hydrocephalus. The initial results of clinical trials show that the outcomes are not highly encouraging as B cell malignancies and myelomas. In vivo research on CAR T-cell therapy for DIPG has yielded encouraging results, but in human trials, the early results have shown potentially fatal side effects and very modest, but fleeting improvements. Solid tumors present a hindrance to CAR T-cell therapy because of the antigenic dilemma and the strong immune-suppressing tumor microenvironment.
Insights
Chimeric antigen receptor (CAR) T-cell therapy shows promise for pediatric brain tumors like diffuse midline glioma (DMG) and diffuse intrinsic pontine glioma (DIPG). However, severe side effects and limited efficacy in clinical trials necessitate further research.
Area of Science:
- Pediatric neuro-oncology
- Immunotherapy
- Cancer genetics
Background:
- Pediatric brain tumors, including diffuse midline glioma (DMG) and diffuse intrinsic pontine glioma (DIPG), are leading causes of cancer-related death in children.
- These tumors are often unresectable, with a dismal 5-year survival rate below 20%, and current treatments are limited.
- Chimeric antigen receptor (CAR) T-cell therapy is an emerging immunotherapy approach.
Purpose of the Study:
- To review the potential of CAR T-cell therapy for pediatric DMG/DIPG.
- To discuss the expression of target antigens (GD2 and B7-H3) in these tumors.
- To evaluate the efficacy and safety of CAR T-cell therapy in preclinical and clinical settings.
Main Methods:
- Review of recent studies on GD2-CAR T-cell therapy for pediatric brain tumors.
- Analysis of clinical trial data regarding treatment outcomes and adverse events.
- Discussion of challenges in CAR T-cell therapy for solid tumors.
Main Results:
- High expression of GD2 and B7-H3 antigens in pediatric DMG/DIPG supports CAR T-cell targeting.
- CAR T-cell therapy has shown encouraging in vivo results for DIPG.
- Clinical trials report potentially fatal side effects, including cytokine release syndrome and neurotoxicity, with modest and transient improvements.
Conclusions:
- While CAR T-cell therapy holds potential for pediatric brain tumors, current clinical outcomes are not highly encouraging.
- Significant challenges, including severe adverse events and the immunosuppressive tumor microenvironment, hinder its effectiveness.
- Further research is needed to optimize CAR T-cell therapy for solid tumors like DMG/DIPG.
More Related Videos
05:22Intracranial Cannula Implantation for Serial Locoregional Chimeric Antigen Receptor CAR T Cell Infusions in Mice
Published on: February 24, 2023
09:56A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025