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Ketoconazole and Posaconazole Selectively Target HK2-expressing Glioblastoma Cells
Sameer Agnihotri1, Sheila Mansouri2, Kelly Burrell2
1Department of Neurological Surgery, Children's Hospital of Pittsburgh, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania. gelareh.zadeh@uhn.ca SAA185@pitt.edu.
Purpose:
Hexokinase II (HK2) protein expression is elevated in glioblastoma (GBM), and we have shown that HK2 could serve as an effective therapeutic target for GBM. Here, we interrogated compounds that target HK2 effectively and restrict tumor growth in cell lines, patient-derived glioma stem cells (GSCs), and mouse models of GBM.Experimental Design: We performed a screen using a set of 15 drugs that were predicted to inhibit the HK2-associated gene signature. We next determined the EC50 of the compounds by treating glioma cell lines and GSCs. Selected compounds showing significant impact in vitro were used to treat mice and examine their effect on survival and tumor characteristics. The effect of compounds on the metabolic activity in glioma cells was also assessed in vitro.
Results:
This screen identified the azole class of antifungals as inhibitors of tumor metabolism. Among the compounds tested, ketoconazole and posaconazole displayed the greatest inhibitory effect on GBM both in vitro and in vivo. Treatment of mice bearing GBM with ketoconazole and posaconazole increased their survival, reduced tumor cell proliferation, and decreased tumor metabolism. In addition, treatment with azoles resulted in increased proportion of apoptotic cells.
Conclusions:
Overall, we provide evidence that azoles exert their effect by targeting genes and pathways regulated by HK2. These findings shed light on the action of azoles in GBM. Combined with existing literature and preclinical results, these data support the value of repurposing azoles in GBM clinical trials.
Insights
Azole antifungals, like ketoconazole and posaconazole, effectively target Hexokinase II (HK2) in glioblastoma (GBM). These repurposed drugs show promise in restricting GBM growth and improving survival by inhibiting tumor metabolism.
Area of Science:
- Biochemistry
- Oncology
- Pharmacology
Background:
- Hexokinase II (HK2) protein is upregulated in glioblastoma (GBM), presenting it as a potential therapeutic target.
- Targeting HK2 can restrict tumor growth and metabolic activity in GBM.
Purpose of the Study:
- To screen compounds that effectively inhibit HK2 and its associated gene signature.
- To evaluate the efficacy of identified compounds in GBM cell lines, patient-derived glioma stem cells (GSCs), and mouse models.
Main Methods:
- A drug screen of 15 compounds predicted to inhibit the HK2-associated gene signature was performed.
- EC50 values were determined for glioma cell lines and GSCs.
- In vivo studies in mice assessed the impact on survival, tumor characteristics, and metabolic activity.
Main Results:
- The azole class of antifungals emerged as potent inhibitors of tumor metabolism.
- Ketoconazole and posaconazole demonstrated significant inhibitory effects both in vitro and in vivo.
- Treatment with azoles increased survival, reduced proliferation, decreased metabolism, and increased apoptosis in GBM models.
Conclusions:
- Azoles target genes and pathways regulated by HK2 in GBM.
- These findings highlight the potential of repurposing azoles for GBM treatment.
- Preclinical data support the initiation of clinical trials for azole-based GBM therapies.
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