Cotargeting the PI3K and RAS pathways for the treatment of neuroendocrine tumors
Joseph D Valentino1, Jing Li, Yekaterina Y Zaytseva
1Authors' Affiliations: Departments of Surgery, Internal Medicine, and Biostatistics; Markey Cancer Center, University of Kentucky, Lexington, Kentucky; and Department of Surgery, University of Texas Medical Branch, Galveston, Texas.
Background:
The precise involvement of the PI3K/mTOR and RAS/MEK pathways in carcinoid tumors is not well defined. Therefore, the purpose of our study was to evaluate the role these pathways play in carcinoid cell proliferation, apoptosis, and secretion and to determine the effects of combined treatment on carcinoid tumor inhibition.
Methods:
The human neuroendocrine cell lines BON (pancreatic carcinoid), NCI-H727 (lung carcinoid), and QGP-1 (somatostatinoma) were treated with either the pan-PI3K inhibitor, BKM120, or the dual PI3K-mTOR inhibitor, BEZ235, alone or in combination with the MEK inhibitor, PD0325901; proliferation, apoptosis, and protein expression were assessed. Peptide secretion was evaluated in BON and QGP-1 cells. The antiproliferative effect of BEZ235, alone or combined with PD0325901, was then tested in vivo.
Results:
Both BKM120 and BEZ235 decreased proliferation and increased apoptosis; combination with PD0325901 significantly enhanced the antineoplastic effects of either treatment alone. In contrast, neurotensin peptide secretion was markedly stimulated with BKM120 treatment, but not BEZ235. The combination of BEZ235 + PD0325901 significantly inhibited the growth of BON xenografts without systemic toxicity.
Conclusions:
Both BKM120 and BEZ235 effectively inhibited neuroendocrine tumor (NET) cell proliferation and stimulated apoptosis. However, inhibition of the PI3K pathway alone with BKM120 significantly stimulated neurotensin peptide secretion; this did not occur with the dual inhibition of both PI3K and mTOR using BEZ235 suggesting that this would be a more effective treatment regimen for NETs. Moreover, the combination of BEZ235 and the MEK inhibitor PD0325901 was a safe and more effective therapy in vivo compared with single agents alone.
Insights
Dual PI3K/mTOR and MEK inhibition effectively targets carcinoid tumors by reducing proliferation and increasing apoptosis. Combining BEZ235 with PD0325901 shows promise as a safe and effective therapy for neuroendocrine tumors (NETs).
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The roles of PI3K/mTOR and RAS/MEK pathways in carcinoid tumors require further elucidation.
- Understanding these pathways is crucial for developing targeted therapies for neuroendocrine tumors (NETs).
Purpose of the Study:
- To investigate the involvement of PI3K/mTOR and RAS/MEK pathways in carcinoid tumor cell proliferation, apoptosis, and secretion.
- To assess the efficacy of combined PI3K/mTOR and MEK inhibition in treating carcinoid tumors.
Main Methods:
- Utilized human neuroendocrine cell lines (BON, NCI-H727, QGP-1) treated with PI3K inhibitors (BKM120, BEZ235) and MEK inhibitor (PD0325901).
- Assessed proliferation, apoptosis, protein expression, and peptide secretion.
- Evaluated the in vivo efficacy and safety of combined BEZ235 and PD0325901 treatment in BON xenografts.
Main Results:
- Both BKM120 and BEZ235 reduced proliferation and increased apoptosis in NET cell lines.
- Combination therapy with PD0325901 significantly enhanced the antineoplastic effects of single-agent treatments.
- While BKM120 stimulated neurotensin secretion, BEZ235 did not, and the BEZ235 + PD0325901 combination showed significant in vivo tumor growth inhibition without toxicity.
Conclusions:
- Dual PI3K/mTOR and MEK inhibition represents a potent therapeutic strategy for NETs.
- BEZ235, a dual PI3K-mTOR inhibitor, combined with PD0325901, offers a safe and effective in vivo treatment for carcinoid tumors, outperforming single-agent therapies.
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