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Published on: January 17, 2025
MTOR inhibitor-based combination therapies for pancreatic cancer
Zonera Hassan1, Christian Schneeweis1, Matthias Wirth2
1Medical Clinic and Polyclinic II, Klinikum rechts der Isar, Technical University Munich, 81675 München, Germany.
Background:
Although the mechanistic target of rapamycin (MTOR) kinase, included in the mTORC1 and mTORC2 signalling hubs, has been demonstrated to be active in a significant fraction of patients with pancreatic ductal adenocarcinoma (PDAC), the value of the kinase as a therapeutic target needs further clarification.
Methods:
We used Mtor floxed mice to analyse the function of the kinase in context of the pancreas at the genetic level. Using a dual-recombinase system, which is based on the flippase-FRT (Flp-FRT) and Cre-loxP recombination technologies, we generated a novel cellular model, allowing the genetic analysis of MTOR functions in tumour maintenance. Cross-species validation and pharmacological intervention studies were used to recapitulate genetic data in human models, including primary human 3D PDAC cultures.
Results:
Genetic deletion of the Mtor gene in the pancreas results in exocrine and endocrine insufficiency. In established murine PDAC cells, MTOR is linked to metabolic pathways and maintains the glucose uptake and growth. Importantly, blocking MTOR genetically as well as pharmacologically results in adaptive rewiring of oncogenic signalling with activation of canonical extracellular signal-regulated kinase and phosphoinositide 3-kinase-AKT pathways. We provide evidence that interfering with such adaptive signalling in murine and human PDAC models is important in a subgroup.
Conclusions:
Our data suggest developing dual MTORC1/TORC2 inhibitor-based therapies for subtype-specific intervention.
Insights
Targeting mechanistic target of rapamycin (MTOR) in pancreatic ductal adenocarcinoma (PDAC) shows promise. Dual MTORC1/TORC2 inhibitors may benefit specific PDAC subtypes by overcoming adaptive resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- The mechanistic target of rapamycin (MTOR) kinase, a key component of mTORC1 and mTORC2 signaling, is active in many pancreatic ductal adenocarcinoma (PDAC) patients.
- The therapeutic potential of targeting MTOR in PDAC requires further investigation.
Purpose of the Study:
- To genetically and pharmacologically investigate the role of MTOR in pancreatic cancer maintenance and identify therapeutic strategies.
Main Methods:
- Utilized Mtor floxed mice and a dual-recombinase system for genetic analysis of MTOR in pancreatic cancer.
- Developed a novel cellular model for studying MTOR function in tumor maintenance.
- Employed cross-species validation and pharmacological interventions in murine and human PDAC models.
Main Results:
- Genetic deletion of Mtor in the pancreas caused exocrine and endocrine insufficiency.
- In PDAC cells, MTOR regulates metabolic pathways, glucose uptake, and growth.
- Blocking MTOR led to adaptive signaling rewiring, activating ERK and PI3K-AKT pathways, which is targetable in a PDAC subgroup.
Conclusions:
- MTOR plays a critical role in PDAC cell metabolism and growth.
- Adaptive signaling pathways emerge upon MTOR inhibition, suggesting a need for combination therapies.
- Dual MTORC1/TORC2 inhibitors are proposed for subtype-specific PDAC interventions.
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