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PAK4-NAMPT Dual Inhibition Sensitizes Pancreatic Neuroendocrine Tumors to Everolimus
Gabriel B Mpilla1, Md Hafiz Uddin1, Mohammed N Al-Hallak1
1Karmanos Cancer Institute, Department of Oncology, School of Medicine, Wayne State University, Detroit, Michigan.
Abstract:
Metastatic pancreatic neuroendocrine tumors (PNET) remain an unmet clinical problem. Chronologic treatment in PNETs includes observation (watchful protocol), surgery, targeted therapy, and chemotherapy. However, increasing evidence illustrates that the outcomes of targeted therapeutic options for the treatment of advanced PNETs show minimal response. The FDA-approved mTOR inhibitor everolimus does not shrink these tumors. It only delays disease progression in a subset of patients, while a significant fraction acquires resistance and shows disease progression. Thus, there is a need for more effective targeted approaches to sensitize PNETs to everolimus for better treatment outcomes. Previously, we showed that mTOR regulator p21 activated kinase 4 (PAK4) and nicotinamide adenine dinucleotide biosynthesis enzyme nicotinamide phosphoribosyl transferase (NAMPT) were aberrantly expressed in PNET tissue and promoted everolimus resistance. In this report, we demonstrate that PAK4-NAMPT dual inhibitor KPT-9274 can synergize with everolimus (growth inhibition, colony suppression, and glucose uptake assays). KPT-9274-everolimus disrupted spheroid formation in multiple PNET models. Molecular analysis showed alteration of mTORC2 through downregulation of RICTOR as a mechanism supporting synergy with everolimus in vitro KPT-9274 suppressed β-catenin activity via inhibition of PAK4, highlighting the cross-talk between Rho GTPases and Wnt signaling in PNETs. KPT-9274, given at 150 mg/kg in combination with sub-MTD everolimus (2.5 mg/kg), significantly suppressed two PNET-derived xenografts. These studies bring forward a well-grounded strategy for advanced PNETs that fail to respond to single-agent everolimus.
Insights
A new dual inhibitor, KPT-9274, combined with everolimus, shows promise in treating metastatic pancreatic neuroendocrine tumors (PNETs). This combination overcomes everolimus resistance and suppresses tumor growth, offering a new strategy for advanced PNETs.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Metastatic pancreatic neuroendocrine tumors (PNETs) have limited treatment options, with current targeted therapies like everolimus showing minimal response and resistance in many patients.
- Aberrant expression of p21 activated kinase 4 (PAK4) and nicotinamide phosphoribosyl transferase (NAMPT) contributes to everolimus resistance in PNETs.
Purpose of the Study:
- To investigate the efficacy of a dual inhibitor targeting PAK4 and NAMPT, KPT-9274, in combination with everolimus for treating advanced PNETs.
- To elucidate the molecular mechanisms underlying the synergistic effect of KPT-9274 and everolimus in PNET models.
Main Methods:
- In vitro assays including growth inhibition, colony suppression, and glucose uptake were performed using PNET models.
- Molecular analyses assessed changes in mTORC2 signaling (RICTOR downregulation) and β-catenin activity.
- In vivo studies involved xenograft models of PNETs treated with KPT-9274 and everolimus.
Main Results:
- KPT-9274 synergized with everolimus, significantly inhibiting PNET cell growth, colony formation, and glucose uptake.
- The combination therapy disrupted spheroid formation and altered mTORC2 signaling via RICTOR downregulation.
- KPT-9274 suppressed β-catenin activity, indicating cross-talk between Rho GTPases and Wnt signaling.
- Dual inhibition significantly suppressed PNET xenograft growth in vivo.
Conclusions:
- The combination of KPT-9274 and everolimus represents a promising therapeutic strategy for advanced PNETs resistant to single-agent everolimus.
- Targeting PAK4 and NAMPT pathways offers a novel approach to overcome treatment resistance and improve outcomes in PNET patients.
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