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Targeting PI3K/mTOR Signaling Displays Potent Antitumor Efficacy against Nonfunctioning Pituitary Adenomas
Misu Lee1, Tobias Wiedemann1, Claudia Gross2
1Institute of Pathology, Helmholtz Zentrum München, Neuherberg, Germany.
Purpose:
Novel therapeutic approaches are needed to improve the postoperative management of residual nonfunctioning pituitary adenomas (NFPA), given their high relapse rate. Here, we evaluated the antitumor efficacy of the dual PI3K/mTOR inhibitor NVP-BEZ235 in the only available model of spontaneous NFPAs (MENX rats).
Experimental Design:
Organotypic cultures of rat primary NFPAs were incubated with NVP-BEZ235 and assessed for cell viability, proliferation, apoptosis, and PI3K/mTOR inhibition. NVP-BEZ235, or placebo, was administered to MENX rats and tumor response was monitored noninvasively by diffusion weighted-magnetic resonance imaging (DW-MRI). Following treatment, tumor tissues were investigated for cell proliferation, apoptosis, and PI3K/mTOR inhibition. Genes mediating the cytotoxic activity of NVP-BEZ235 were identified by gene-expression profiling. Among them, Defb1, encoding beta-defensin 1, was further studied for its role in pituitary cells and in human pancreatic neuroendocrine tumor (NET) cells.
Results:
NVP-BEZ235 showed antiproliferative and pro-cell death activities against NFPAs both in vitro and in vivo, and the response to the drug correlated with inhibition of the PI3K pathway. DW-MRI identified early functional changes (decreased cellularity) in the adenomas before their size was affected and emerged as a useful modality to assess therapy response. The cytotoxic effect of PI3K/mTOR blockade in NFPA was mediated by several genes, including Defb1. NVP-BEZ235 treatment induced Defb1 expression in NFPAs in vitro and in vivo, and in pancreatic NET cells. High Defb1 levels sensitized NET cells to PI3K/mTOR inhibition.
Conclusions:
Our findings provide rationale for clinical investigation of PI3K/mTOR inhibition in NFPAs and identify novel effectors of PI3K-mediated neuroendocrine cell survival.
Insights
The dual PI3K/mTOR inhibitor NVP-BEZ235 demonstrated antitumor effects against nonfunctioning pituitary adenomas (NFPA) in preclinical models. This study suggests PI3K/mTOR inhibition as a potential therapeutic strategy for NFPA management.
Area of Science:
- Endocrinology
- Oncology
- Pharmacology
Background:
- Nonfunctioning pituitary adenomas (NFPA) have a high recurrence rate, necessitating novel therapeutic strategies for postoperative management.
- The PI3K/mTOR signaling pathway is implicated in the growth of various tumors, including pituitary adenomas.
Purpose of the Study:
- To evaluate the antitumor efficacy of the dual PI3K/mTOR inhibitor NVP-BEZ235 in a preclinical model of spontaneous NFPAs (MENX rats).
- To assess the drug's impact on NFPA cell viability, proliferation, and apoptosis, and its mechanism of action.
Main Methods:
- Organotypic cultures of rat primary NFPAs were treated with NVP-BEZ235 to assess in vitro effects.
- MENX rats with NFPAs received NVP-BEZ235 or placebo, with tumor response monitored noninvasively using diffusion-weighted magnetic resonance imaging (DW-MRI).
- Tumor tissues were analyzed for proliferation, apoptosis, PI3K/mTOR inhibition, and gene-expression profiling to identify mediators of NVP-BEZ235's cytotoxic activity.
Main Results:
- NVP-BEZ235 exhibited significant antiproliferative and pro-apoptotic effects on NFPAs both in vitro and in vivo, correlating with PI3K pathway inhibition.
- DW-MRI effectively detected early functional changes in adenomas, indicating its utility in assessing therapeutic response.
- The cytotoxic effects were mediated by genes including Defb1 (beta-defensin 1), whose expression was induced by NVP-BEZ235 in NFPA and pancreatic neuroendocrine tumor (NET) cells, sensitizing NET cells to PI3K/mTOR inhibition.
Conclusions:
- The findings support the clinical investigation of PI3K/mTOR inhibition as a therapeutic approach for NFPAs.
- Novel effectors of PI3K-mediated neuroendocrine cell survival, such as Defb1, were identified, offering potential therapeutic targets.
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