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Published on: October 27, 2014
Attenuating hypoxia driven malignant behavior in glioblastoma with a novel hypoxia-inducible factor 2 alpha inhibitor
Jaclyn J Renfrow1,2,3, Michael H Soike4, James L West5
1Department of Neurological Surgery, Wake Forest Baptist Medical Center, Winston-Salem, NC, USA. jaclyn.renfrow@gmail.com.
Abstract:
Hypoxia inducible factor (HIFs) signaling contributes to malignant cell behavior in glioblastoma (GBM). We investigated a novel HIF2α inhibitor, PT2385, both in vitro, with low-passage patient-derived cell lines, and in vivo, using orthotopic models of glioblastoma. We focused on analysis of HIF2α expression in situ, cell survival/proliferation, and survival in brain tumor-bearing mice treated with PT2385 alone and in combination with standard of care chemoradiotherapy. HIF2α expression increased with glioma grade, with over half of GBM specimens HIF2α positive. Staining clustered in perivascular and perinecrotic tumor regions. Cellular phenotype including proliferation, viability, migration/invasion, and also gene expression were not altered after PT2385 treatment. In the animal model, PT2385 single-agent treatment did improve median overall survival compared to placebo (p = 0.04, n = 21) without a bioluminescence correlate (t = 0.67, p = 0.52). No difference in animal survival was seen in combination treatment with radiation (RT)/temozolomide (TMZ)/PT2385 (p = 0.44, n = 10) or mean tumor bioluminescence (t 1.13, p = 0.32). We conclude that HIF2α is a reasonable novel therapeutic target as expressed in the majority of glioblastomas in our cohort. PT2385 as a single-agent was efficacious in vivo, however, an increase in animal survival was not seen with PT2385 in combination with RT/TMZ. Further study for targeting HIF2α as a therapeutic approach in GBM is warranted.
Insights
A novel HIF2α inhibitor, PT2385, showed efficacy as a single agent in glioblastoma (GBM) models. However, combining PT2385 with standard treatments did not improve survival in this study.
Area of Science:
- Oncology
- Molecular Biology
- Neuro-oncology
Background:
- Hypoxia-inducible factors (HIFs) promote malignant behaviors in glioblastoma (GBM).
- HIF2α is a potential therapeutic target in GBM due to its role in tumor progression.
Purpose of the Study:
- To evaluate the efficacy of the novel HIF2α inhibitor PT2385 in glioblastoma.
- To assess PT2385's effects on HIF2α expression, cell behavior, and survival in preclinical GBM models.
Main Methods:
- In vitro studies using patient-derived GBM cell lines.
- In vivo orthotopic GBM models in mice.
- Analysis of HIF2α expression, cell proliferation, viability, migration, and survival following PT2385 treatment alone and in combination with chemoradiotherapy (RT/TMZ).
Main Results:
- HIF2α expression increased with glioma grade and was prevalent in GBM specimens, particularly in perivascular and perinecrotic regions.
- PT2385 treatment did not alter cellular phenotypes (proliferation, viability, migration, invasion) or gene expression in vitro.
- Single-agent PT2385 improved median overall survival in mice, but combination therapy with RT/TMZ did not show a survival benefit.
Conclusions:
- HIF2α is a relevant therapeutic target in a majority of glioblastomas.
- PT2385 demonstrates in vivo efficacy as a single agent for GBM.
- Further investigation is warranted for targeting HIF2α in GBM, particularly regarding combination therapies.
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