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Combination Radiotherapy in an Orthotopic Mouse Brain Tumor Model
Published on: March 6, 2012
Systemic rapamycin alone may not be a treatment option for malignant glioma: evidence from an in vivo study
Marina Mendiburu-Eliçabe1, Dali Yin, Piotr Hadaczek
1Department of Neurosurgery, University of California San Francisco, San Francisco, CA 94103, USA.
Abstract:
The mammalian target of rapamycin (mTOR) plays a central role in regulating the proliferation of cancer cells, and mTOR-specific inhibitors such as rapamycin analogs are considered as a promising therapy for malignant glioma. In this study, we investigated the possibility of using mTOR inhibitors to treat gliomas. We used a molecular marker, phosphorylation of S6 protein, to monitor biological effects of mTOR inhibitors within xenografts. Phosphorylation was decreased more in U87MG glioma after treatment with high doses of rapamycin or its analog, torisel (10 mg/kg or 25 mg/kg), but only slightly after a low dose of rapamycin (3 mg/kg). This effect correlated with enhanced survival of rats after weekly peritoneal injections of both drugs at the highest two doses but not at the low dose. High doses of both drugs caused weight loss in rats. Clinical trial data indicates that low doses of Torisel (<3 mg/kg) were not efficacious in recurrent GBM. It is concluded that systemic administration of rapamycin analogues may not be a treatment option for patients with malignant glioma due to the intolerability of high doses that might otherwise be effective. The present study underscores the need for better pre-clinical evaluation of drugs with respect to therapeutic window.
Insights
mTOR inhibitors show promise for glioma treatment. High doses of rapamycin analogs improved rat survival but caused weight loss, suggesting careful dosing is crucial for effective cancer therapy.
Area of Science:
- Oncology
- Pharmacology
- Cancer Biology
Background:
- Mammalian target of rapamycin (mTOR) regulates cancer cell proliferation.
- mTOR inhibitors, like rapamycin analogs, are potential therapies for malignant glioma.
Purpose of the Study:
- To investigate the efficacy of mTOR inhibitors in treating gliomas.
- To evaluate the biological effects and therapeutic window of rapamycin and torisel in preclinical models.
Main Methods:
- Utilized U87MG glioma xenografts in rats.
- Monitored mTOR inhibition via S6 protein phosphorylation.
- Administered varying doses of rapamycin and torisel via peritoneal injection.
- Assessed rat survival and weight changes.
Main Results:
- High doses (10-25 mg/kg) of rapamycin and torisel decreased S6 phosphorylation and enhanced rat survival.
- Low dose (3 mg/kg) rapamycin showed minimal effect.
- High doses led to significant weight loss in rats.
- Clinical data indicated low-dose Torisel (<3 mg/kg) was ineffective in recurrent glioblastoma multiforme (GBM).
Conclusions:
- Systemic administration of rapamycin analogs may not be a viable treatment for malignant glioma due to dose-limiting toxicity.
- Effective doses may be intolerable, highlighting the need for improved preclinical evaluation of therapeutic windows.