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Updated: Dec 27, 2025

A Protocol for Rapid Post-mortem Cell Culture of Diffuse Intrinsic Pontine Glioma DIPG
Published on: March 7, 2017
Invaders Exposed: Understanding and Targeting Tumor Cell Invasion in Diffuse Intrinsic Pontine Glioma
T A Kluiver1,2,3, M Alieva1,2,3, D G van Vuurden1
1Princess Máxima Center for Pediatric Oncology, Utrecht, Netherlands.
Insights
Diffuse Intrinsic Pontine Glioma (DIPG), a fatal pediatric brain tumor, spreads invasively. Understanding DIPG invasion mechanisms is crucial for developing effective therapies targeting this aggressive childhood cancer.
Area of Science:
- Pediatric neuro-oncology
- Cancer biology
- Molecular mechanisms of tumor invasion
Background:
- Diffuse Intrinsic Pontine Glioma (DIPG) is a rare, aggressive pediatric brain tumor originating in the pons.
- DIPG is characterized by its diffuse, infiltrative spread, making it untreatable with a median survival of less than one year.
- Current treatment options including surgery, radiotherapy, and chemotherapy have proven ineffective.
Purpose of the Study:
- To review the intrinsic molecular processes and extrinsic environmental factors driving DIPG invasion.
- To highlight the heterogeneity of DIPG, including subtypes based on driver mutations and intra-tumor heterogeneity in invasiveness.
- To discuss the implications of newly discovered invasive mechanisms for therapeutic targeting.
Main Methods:
- Comprehensive literature review of studies on DIPG invasion.
- Analysis of molecular processes within DIPG tumor cells.
- Examination of extrinsic environmental factors influencing DIPG spread.
- Integration of findings from whole-genome sequencing and intra-tumor heterogeneity studies.
Main Results:
- DIPG invasion is driven by both intrinsic tumor cell processes and extrinsic environmental factors.
- DIPG is a heterogeneous disease with distinct subtypes and varying degrees of invasiveness.
- Tumor microtubes and extracellular vesicles play a role in mediating cell-to-cell communication and enhancing migratory behavior.
- Some identified invasion mechanisms are currently being explored in clinical trials.
Conclusions:
- Targeting DIPG invasion holds therapeutic potential for this devastating pediatric cancer.
- Further research into the mechanisms of DIPG invasion is urgently needed to develop effective treatments.
- Understanding DIPG heterogeneity and invasive mechanisms is critical for advancing therapy development, especially considering the developing brain context.
Abstract:
Diffuse Intrinsic Pontine Glioma (DIPG) is a rare, highly aggressive pediatric brain tumor that originates in the pons. DIPG is untreatable and universally fatal, with a median life expectancy of less than a year. Resection is not an option, due to the anatomical location of the tumor, radiotherapy has limited effect and no chemotherapeutic or targeted treatment approach has proven to be successful. This poor prognosis is partly attributed to the tumor's highly infiltrative diffuse and invasive spread. Thus, targeting the invasive behavior of DIPG has the potential to be of therapeutic value. In order to target DIPG invasion successfully, detailed mechanistic knowledge on the underlying drivers is required. Here, we review both DIPG tumor cell's intrinsic molecular processes and extrinsic environmental factors contributing to DIPG invasion. Importantly, DIPG represents a heterogenous disease and through advances in whole-genome sequencing, different subtypes of disease based on underlying driver mutations are now being recognized. Recent evidence also demonstrates intra-tumor heterogeneity in terms of invasiveness and implies that highly infiltrative tumor subclones can enhance the migratory behavior of neighboring cells. This might partially be mediated by "tumor microtubes," long membranous extensions through which tumor cells connect and communicate, as well as through the secretion of extracellular vesicles. Some of the described processes involved in invasion are already being targeted in clinical trials. However, more research into the mechanisms of DIPG invasion is urgently needed and might result in the development of an effective therapy for children suffering from this devastating disease. We discuss the implications of newly discovered invasive mechanisms for therapeutic targeting and the challenges therapy development face in light of disease in the developing brain.
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