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Updated: Jun 26, 2025

A Protocol for Rapid Post-mortem Cell Culture of Diffuse Intrinsic Pontine Glioma DIPG
Published on: March 7, 2017
Current status and advances to improving drug delivery in diffuse intrinsic pontine glioma
Lauren M Arms1, Ryan J Duchatel2, Evangeline R Jackson2
1Therapeutic Targeting Research Group, School of Biomedical Sciences and Pharmacy, University of Newcastle, Callaghan, NSW, Australia; Precision Medicine Research Program, Hunter Medical Research Institute, New Lambton Heights, NSW, Australia; Paediatric Program, Mark Hughes Foundation Centre for Brain Cancer Research, College of Health, Medicine & Wellbeing, University of Newcastle, Callaghan, NSW, Australia.
Insights
Diffuse midline glioma (DMG) and diffuse intrinsic pontine glioma (DIPG) are aggressive pediatric brain tumors. Overcoming the blood-brain barrier (BBB) is crucial for effective drug delivery and improved survival rates.
Area of Science:
- Neuro-oncology
- Pediatric oncology
- Drug delivery systems
Background:
- Diffuse midline glioma (DMG), including diffuse intrinsic pontine glioma (DIPG), is a leading cause of pediatric brain tumor mortality with a median survival under 12 months.
- Current treatments like corticosteroids and radiation offer only temporary symptom relief, highlighting the need for more effective therapies.
- The blood-brain barrier (BBB) and blood-brain tumor barrier (BBTB) present significant obstacles to delivering therapeutic agents to the brainstem, a critical area affected by DIPG.
Purpose of the Study:
- To review the current understanding of the BBB/BBTB in the context of DIPG.
- To discuss the limitations of conventional treatments and explore novel drug delivery strategies for DIPG.
- To emphasize the need for better characterization of the BBB/BBTB in DIPG patients to inform future treatment development.
Main Methods:
- Literature review of existing research on BBB/BBTB in DIPG.
- Analysis of conventional and emerging therapeutic approaches for DIPG.
- Discussion of drug delivery technologies aimed at overcoming the BBB/BBTB.
Main Results:
- The BBB/BBTB in DIPG is poorly understood, complicating treatment strategies.
- Conventional therapies provide limited survival benefits.
- Novel drug delivery technologies like convection enhanced delivery, focused ultrasound, nanoparticle-mediated delivery, and intranasal delivery show promise but are not yet clinically established for DIPG.
Conclusions:
- Improved characterization of the BBB/BBTB in DIPG is essential for developing effective treatments.
- Novel drug delivery methods are critical for enhancing therapeutic efficacy in DIPG.
- Further research and clinical validation of advanced drug delivery technologies are needed to improve outcomes for pediatric patients with DIPG.
Abstract:
Diffuse midline glioma (DMG), including tumors diagnosed in the brainstem (diffuse intrinsic pontine glioma - DIPG), is the primary cause of brain tumor-related death in pediatric patients. DIPG is characterized by a median survival of <12 months from diagnosis, harboring the worst 5-year survival rate of any cancer. Corticosteroids and radiation are the mainstay of therapy; however, they only provide transient relief from the devastating neurological symptoms. Numerous therapies have been investigated for DIPG, but the majority have been unsuccessful in demonstrating a survival benefit beyond radiation alone. Although many barriers hinder brain drug delivery in DIPG, one of the most significant challenges is the blood-brain barrier (BBB). Therapeutic compounds must possess specific properties to enable efficient passage across the BBB. In brain cancer, the BBB is referred to as the blood-brain tumor barrier (BBTB), where tumors disrupt the structure and function of the BBB, which may provide opportunities for drug delivery. However, the biological characteristics of the brainstem's BBB/BBTB, both under normal physiological conditions and in response to DIPG, are poorly understood, which further complicates treatment. Better characterization of the changes that occur in the BBB/BBTB of DIPG patients is essential, as this informs future treatment strategies. Many novel drug delivery technologies have been investigated to bypass or disrupt the BBB/BBTB, including convection enhanced delivery, focused ultrasound, nanoparticle-mediated delivery, and intranasal delivery, all of which are yet to be clinically established for the treatment of DIPG. Herein, we review what is known about the BBB/BBTB and discuss the current status, limitations, and advances of conventional and novel treatments to improving brain drug delivery in DIPG.
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