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Combination of mTOR Inhibitors Augments Potency while Activating PI3K Signaling in Pituitary Tumors
Background:
Despite the success in treating some cancers, the efficacy of the mTOR inhibitors rapalogs as anti-cancer therapeutics has been limited.
Aims:
We undertook to examine the effects of Torin1, a second-generation selective ATP-competitive mTOR inhibitor, in non-functioning pituitary tumor cells. During characterization of the molecular mechanisms that mediate Torin1 actions, there seemed to be a rationale for combining it with rapalogs.
Methods:
Proliferation assays, flow cytometry and Western blotting were applied to assess the effects of Torin1, RAD001 and their combination on an MtT/E pituitary cell line and human-derived non-functioning pituitary tumor cells.
Results:
Combined long treatments of Torin1 and RAD001 induced a pronounced reduction in cell growth and viability of both MtT/E pituitary cells and human-derived non-functioning pituitary tumor cells, superior to each drug alone. This was remarkable in the 10 nM combination and was reflected in a triggered decrease of cyclin D3 and p21/CIP expression. Interestingly, Akt-Thr308 and SIN1-Thr86 phosphorylations were robustly elevated in the combined treatment, accompanied by a reduction in PTEN expression. Phosphorylation of p70S6K was abolished in all individual and combined treatments. Akt-Ser473 phosphorylation, induced by RAD001, was reduced by the combined treatment to the same extent as when treated by Torin1 alone.
Conclusions:
Our results suggest that the differential signaling mechanisms induced by these compounds eventually converge to lead to an efficient blockade of the PI3K/Akt/mTOR pathway in pituitary tumor cells and may facilitate a reduction in treatment dosage.
Insights
Combining Torin1 and RAD001 significantly reduced pituitary tumor cell growth and viability. This mTOR inhibitor combination offers a promising therapeutic strategy for non-functioning pituitary tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Rapalogs, mTOR inhibitors, have shown limited efficacy in cancer treatment.
- Second-generation mTOR inhibitor Torin1 was investigated for its effects on non-functioning pituitary tumors.
Purpose of the Study:
- To evaluate the anti-tumor effects of Torin1 alone and in combination with rapalogs in pituitary tumor cells.
- To elucidate the molecular mechanisms underlying Torin1's action and its combination therapy.
Main Methods:
- Proliferation assays, flow cytometry, and Western blotting were used.
- Effects were assessed on MtT/E pituitary cell line and human-derived non-functioning pituitary tumor cells.
Main Results:
- Combined Torin1 and RAD001 treatments significantly reduced cell growth and viability compared to individual drugs.
- The combination therapy decreased cyclin D3 and p21/CIP expression.
- Akt-Thr308 and SIN1-Thr86 phosphorylations increased, while PTEN expression decreased with combined treatment.
Conclusions:
- Differential signaling converges to block the PI3K/Akt/mTOR pathway in pituitary tumor cells.
- Combination therapy may allow for reduced treatment dosages.
- This approach shows potential for treating non-functioning pituitary tumors.
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