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Updated: Jun 8, 2025

An Orthotopic Resectional Mouse Model of Pancreatic Cancer
Published on: September 24, 2020
Redefining pancreatic cancer management with tumor-agnostic precision medicine
1Department of Medicine, Division of Hematology and Oncology, Northwestern University Feinberg School of Medicine, 420 E Superior Street, Chicago, IL 60611, United States.
Abstract:
Precision oncology and tumor-agnostic drug development provide hope for enhancing outcomes among patients with pancreatic cancer. Tumor-agnostic therapies have emerged across various tumor types, driven by insights into shared biomarkers. In the case of pancreatic cancer, the prevalence of the KRAS gene mutation is noteworthy. However, there exist other actionable alterations, such as BRCA1/2 mutations and fusion genes (BRAF, FGFR2, RET, NTRK, NRG1, and ALK), which present potential targets for therapy. Notably, tumor-agnostic drugs have demonstrated efficacy in specific subsets of pancreatic cancer patients who harbor these genetic alterations. Despite the rarity of NTRK fusions in pancreatic cancer, larotrectinib and entrectinib have exhibited effectiveness in NTRK fusion-positive pancreatic cancers. Additionally, repotrectinib, a next-generation NTRK inhibitor, has shown promising activity in NTRK positive pancreatic cancer patients who have developed acquired resistance to previous NTRK inhibitors. Immune checkpoint inhibitors, such as pembrolizumab and dostarlimab, have proven to be effective in dMMR/MSI-H pancreatic cancers. Moreover, targeted therapies for BRAF V600, RET fusions, and HER2/neu overexpression have displayed promising results in specific subsets of pancreatic cancer patients. Emerging targets like NRG fusions, FGFR2 fusions, TP53 mutations, and KRAS G12C mutations present potential avenues for targeted therapy. Tumor-agnostic therapies have the potential to revolutionize pancreatic cancer treatment by focusing on specific genetic alterations. It is crucial to continue implementing comprehensive screening strategies that encompass the ability to detect all these tumor-agnostic biomarkers. This will be essential in identifying pancreatic cancer patients who may benefit from these therapies.
Insights
Precision oncology offers new hope for pancreatic cancer patients. Tumor-agnostic therapies targeting specific genetic alterations like KRAS mutations and NTRK fusions are improving outcomes.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Precision oncology and tumor-agnostic drug development are transforming cancer care.
- Pancreatic cancer, while often associated with KRAS mutations, also harbors other actionable biomarkers.
- Identifying these biomarkers is key to unlocking new therapeutic strategies.
Purpose of the Study:
- To review the current landscape of tumor-agnostic therapies for pancreatic cancer.
- To highlight actionable biomarkers beyond KRAS mutations in pancreatic cancer.
- To emphasize the importance of comprehensive biomarker screening for treatment selection.
Main Methods:
- Literature review of precision oncology and tumor-agnostic therapies in pancreatic cancer.
- Analysis of clinical trial data and published studies on targeted agents.
- Identification of key genetic alterations and their corresponding targeted therapies.
Main Results:
- Tumor-agnostic drugs show efficacy in pancreatic cancer subsets with specific genetic alterations (e.g., NTRK fusions, BRCA1/2 mutations, dMMR/MSI-H).
- Larotrectinib, entrectinib, and repotrectinib are effective in NTRK fusion-positive pancreatic cancers.
- Immune checkpoint inhibitors (pembrolizumab, dostarlimab) benefit dMMR/MSI-H pancreatic cancers.
- Targeted therapies for BRAF V600, RET fusions, and HER2/neu overexpression show promise.
- Emerging targets include NRG fusions, FGFR2 fusions, TP53 mutations, and KRAS G12C mutations.
Conclusions:
- Tumor-agnostic therapies hold significant potential to revolutionize pancreatic cancer treatment.
- Comprehensive screening for diverse biomarkers is essential for patient identification and treatment.
- Personalized treatment strategies based on molecular profiling are crucial for improving pancreatic cancer outcomes.

