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Published on: May 2, 2025
Targeting Pediatric Glioblastomas by Combining OLIG2 Inhibitor CT-179 with Fractionated Radiation in a Panel of
Holly Lindsay1,2, Yuchen Du1,3, Lin Qi1,3,4
1Texas Children's Cancer Center, Texas Children's Hospital, Baylor College of Medicine, Houston, TX 77030, USA.
Abstract:
The poor clinical outcomes of pediatric high-grade glioma (pHGG) highlight the urgent need for new therapies. Oligodendrocyte lineage transcription factor 2 (OLIG2) is a pro-mitotic transcription factor highly expressed in glioma stem cells and may represent a novel therapeutic target. To evaluate the therapeutic efficacy of an OLIG2 inhibitor CT-179 in pHGG, we determined the OLIG2 mRNA expression in 10 patient-derived orthotopic xenograft (PDOX) models. In vitro activities of CT-179 were analyzed in monolayer and neurosphere cells (0-10 µM) with and without radiation (XRT) (0-8 Gy), brain penetration was evaluated in tumor-bearing PDOX mice, and in vivo efficacy was determined at 15-240 mg/kg (oral) alone or combined with XRT (2 Gy/day × 5 days). Changes in animal survival times were analyzed using the Kaplan-Meier method, followed by pair-wise comparisons. Increased OLIG2 mRNA expression was detected in seven out of ten PDOX models. CT-179 inhibited cell viability in a time- and dose-dependent manner in all eight pGBM xenograft tumors (IC50 0.03-10 µM) and was potentiated by XRT (0.03-1 µM). Oral gavage (24 mg/kg) of CT-179 for 5 days led to effective penetration in mouse cerebrum (3232.7 ± 569.2 ng/g), cerebellum (1563.3 ± 269.6 ng/g), brain stem (1685.3 ± 309 ng/g), and PDOX tumors (1814 ± 110.3 ng/g) vs. 361.3 ± 1.5 ng/mL in serum. CT-179 alone was not active at 200 mg/kg in four models, although it was moderately effective at 240 mg/kg in one model. When combined with XRT, a significant extension of animal survival times was observed in two out of four models. Doses needed to eliminate OLIG2 expression in vitro varied from 0.3 to >1 µM in pGBM cells. In summary, our data showed that orally administered CT-179 penetrated the blood-brain barrier (BBB) and exhibited potential for inhibiting pGBM growth when combined with XRT.
Insights
The OLIG2 inhibitor CT-179 shows promise for treating pediatric high-grade glioma (pHGG). This drug penetrates the blood-brain barrier and, when combined with radiation therapy, may improve survival in pHGG patients.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Pharmacology
Background:
- Pediatric high-grade glioma (pHGG) has poor clinical outcomes, necessitating novel therapeutic strategies.
- Oligodendrocyte lineage transcription factor 2 (OLIG2) is highly expressed in glioma stem cells and is a potential therapeutic target.
- The OLIG2 inhibitor CT-179 is being evaluated for its efficacy in pHGG treatment.
Purpose of the Study:
- To assess the therapeutic efficacy of the OLIG2 inhibitor CT-179 in pediatric high-grade glioma (pHGG) models.
- To determine OLIG2 mRNA expression in patient-derived orthotopic xenograft (PDOX) models.
- To evaluate CT-179's in vitro and in vivo activity, including its brain penetration and combination effects with radiation therapy (XRT).
Main Methods:
- Determined OLIG2 mRNA expression in ten PDOX models.
- Assessed CT-179's in vitro activity in monolayer and neurosphere cells with and without XRT.
- Evaluated CT-179's brain penetration in tumor-bearing PDOX mice and its in vivo efficacy alone and with XRT.
- Analyzed survival data using the Kaplan-Meier method.
Main Results:
- Increased OLIG2 mRNA expression was found in seven out of ten PDOX models.
- CT-179 inhibited cell viability in a dose- and time-dependent manner, with activity potentiated by XRT.
- CT-179 demonstrated effective penetration into the brain and PDOX tumors in mice.
- CT-179 combined with XRT significantly extended animal survival in two out of four models.
Conclusions:
- Orally administered CT-179 penetrates the blood-brain barrier.
- CT-179 shows potential for inhibiting pHGG growth, particularly when combined with XRT.
- Further investigation into CT-179 as a therapeutic agent for pHGG is warranted.
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