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TGF-β2 signaling in high-grade gliomas
Peter Hau1, Piotr Jachimczak, Jürgen Schlaier
1University of Regensburg, Department of Neurology, Universitatsstr. 84, 93053 Regensburg, Germany.
Abstract:
High-grade gliomas are the most common primary tumors in the central nervous system (CNS) in adults. Despite efforts to improve treatment by combination therapies (neurosurgery, radio- and chemotherapy), high-grade glioma patients still have a grim prognosis, indicating an urgent need for new therapeutic approaches. The molecular processes of gliomagenesis are being unraveled, and novel targeted therapeutic strategies to defy high-grade gliomas are emerging. Transforming growth factor-beta (TGF-β), in particular the TGF-β2 isoform, has been identified as a key factor in the progression of malignant gliomas. TGF-β2, originally described as "glioblastoma-derived T-cell suppressor factor", is associated with the immuno-suppressed status of patients with glioblastoma, and is therefore responsible for loss of tumor immune surveillance. Elevated TGF-β2 levels in tumors and in the plasma of patients have been associated with advanced disease stage and poor prognosis. Consequently, a targeted strategy to modulate TGF-β2 signaling is highly promising. The antisense oligonucleotide trabedersen (AP 12009) that specifically blocks TGF-β2 mRNA will be the main focus of this review. In three phase I/II studies and a randomized, active-controlled dose-finding phase IIb study, trabedersen treatment of high-grade glioma patients with recurrent or refractory tumor disease led to long-lasting tumor responses and so far promising survival data. On the basis of these data the currently ongoing phase III study SAPHIRRE was initiated.
Insights
High-grade gliomas, aggressive brain tumors, show poor prognosis. Targeting TGF-β2 with trabedersen offers a promising new therapeutic strategy, showing positive survival data in clinical trials.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Immunology
Background:
- High-grade gliomas are aggressive primary brain tumors with poor patient prognosis despite standard treatments.
- Transforming growth factor-beta 2 (TGF-β2) is implicated in glioma progression and immune suppression, correlating with advanced disease and poor outcomes.
- There is a critical need for novel therapeutic strategies targeting the molecular pathways driving gliomagenesis.
Purpose of the Study:
- To review the role of TGF-β2 in high-grade glioma progression.
- To evaluate the therapeutic potential of trabedersen (AP 12009), an antisense oligonucleotide targeting TGF-β2 mRNA, for high-grade gliomas.
Main Methods:
- Review of preclinical and clinical data on TGF-β2 in gliomas.
- Analysis of results from Phase I/II and Phase IIb clinical studies of trabedersen in patients with recurrent or refractory high-grade gliomas.
Main Results:
- Elevated TGF-β2 levels are associated with increased glioma malignancy and immune evasion.
- Trabedersen demonstrated long-lasting tumor responses and promising survival data in early-phase clinical studies.
- These findings support the ongoing Phase III SAPHIRRE trial for trabedersen in high-grade gliomas.
Conclusions:
- Targeting TGF-β2 signaling with trabedersen represents a promising therapeutic approach for high-grade gliomas.
- Trabedersen has shown encouraging efficacy and safety in patients with recurrent or refractory disease.
- Further investigation in Phase III trials is warranted to confirm the clinical benefit of trabedersen.
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