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Published on: October 27, 2014
Targeting hypoxia, a novel treatment for advanced retinoblastoma
Hinda Boutrid1, Maria-Elena Jockovich, Timothy G Murray
1Bascom Palmer Eye Institute, Department of Ophthalmology, University of Miami Miller School of Medicine, Miami, Florida 33101, USA.
Purpose:
The purpose of this study was to evaluate the presence and extent of hypoxia in murine retinoblastoma tumors and the feasibility of targeting hypoxic cells as a novel therapeutic strategy.
Methods:
Hypoxic and vascular areas in LH(BETA)T(AG) mouse retinal tumors were measured using immunohistochemistry. The glycolytic inhibitor 2-deoxy-d-glucose (2-DG) was used to test the efficacy of targeting hypoxic cells in retinoblastoma. Sixteen-week-old LH(BETA)T(AG) mice received injections of saline, carboplatin (31.25 microg/20 microL), 2-DG (500 mg/kg), and carboplatin (31.25 microg/20 microL) + 2-DG (500 mg/kg). Carboplatin was administered through biweekly subconjunctival injections to right eyes only for 3 weeks. 2-DG was administered through intraperitoneal injection three times a week for 5 weeks. Saline was administered using both methods. Eyes were enucleated at 21 weeks of age and examined for residual tumor.
Results:
Hypoxic regions were observed in tumors larger than 3.28 mm(2). When 2-DG was combined with carboplatin, a marked decrease in tumor burden was observed that was significantly more pronounced than when either agent was given alone. The hypoxic tumor cell population as measured by pimonidazole was markedly reduced by carboplatin + 2-DG (P < 0.01) and by 2-DG alone (P < 0.01), but not by carboplatin alone, indicating that 2-DG effectively killed hypoxic retinoblastoma cells in vivo.
Conclusions:
Treatment with glycolytic inhibitors as adjuvants to chemotherapy has the potential to increase the efficacy of chemotherapy in advanced retinoblastoma. This approach may have benefits for children with this disease and should be further investigated.
Insights
Targeting hypoxic cells in retinoblastoma with 2-deoxy-d-glucose (2-DG) combined with chemotherapy significantly reduced tumor burden in mice. This novel strategy shows promise for treating advanced retinoblastoma.
Area of Science:
- Oncology
- Ophthalmology
- Molecular Biology
Background:
- Hypoxia is a common feature in solid tumors, including retinoblastoma, contributing to treatment resistance.
- Targeting hypoxic tumor cells presents a potential strategy to overcome therapeutic challenges in retinoblastoma.
Purpose of the Study:
- To evaluate the presence and extent of hypoxia in murine retinoblastoma tumors.
- To assess the feasibility of targeting hypoxic cells using a glycolytic inhibitor as a novel therapeutic strategy.
Main Methods:
- Immunohistochemistry was used to measure hypoxic and vascular areas in LH(BETA)T(AG) mouse retinal tumors.
- Mice received treatments including saline, carboplatin, 2-deoxy-d-glucose (2-DG), or a combination of carboplatin and 2-DG.
- Tumor burden and hypoxic cell populations were assessed after treatment completion.
Main Results:
- Hypoxic regions were identified in retinoblastoma tumors exceeding 3.28 mm².
- Combination therapy with carboplatin and 2-DG resulted in a significant decrease in tumor burden compared to monotherapy.
- 2-DG alone and in combination with carboplatin effectively reduced the hypoxic tumor cell population in vivo.
Conclusions:
- Glycolytic inhibitors, such as 2-DG, can enhance chemotherapy efficacy when used as adjuvants in treating advanced retinoblastoma.
- This therapeutic approach holds potential benefits for pediatric retinoblastoma patients and warrants further investigation.
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