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KRAS-Wild Pancreatic Cancer-More Targets than Treatment Possibilities?
Kamila Krupa1, Marta Fudalej2,3, Hanna Miski1
1Students' Scientific Organization of Cancer Cell Biology, Department of Oncology Propaedeutics, Medical University of Warsaw, 01-445 Warsaw, Poland.
Abstract:
Pancreatic ductal adenocarcinoma (PDAC) is a highly lethal malignancy with a five-year survival rate of 3-15% and limited effective treatment options for most patients. Approximately 5-10% of cases are wild-type KRAS and are more likely to harbor rare alterations, including gene fusions involving anaplastic lymphoma kinase (ALK), ROS Proto-Oncogene 1 (ROS1), neurotrophic tyrosine receptor kinase (NTRK), Rearranged During Transfection (RET), Fibroblast Growth Factor Receptor (FGFR), or Neuregulin 1 (NRG1) genes, as well as germline mutations in DNA repair genes. This review integrates current evidence on the prevalence, molecular profile, and clinical significance of gene fusions, amplification, and somatic/germline mutations in PDAC, with a particular focus on the wild-type KRAS subgroup. Clinical trial data and case reports indicate that these alterations can enhance patient susceptibility to targeted therapies. Currently, selpercatinib, larotrectinib, and repotrectinib are approved by the FDA for the treatment of certain solid tumors harboring specific gene fusions. Recent studies on zenocutuzumab resulted in the FDA-accelerated approval for NGR1 fusion-positive NSCLC and PDAC. Germline mutations may specifically increase responsiveness to poly(ADP-ribose) polymerase (PARP) inhibitors or platinum-based treatments. Comprehensive genomic profiling, incorporating fusion detection and germline testing, is essential to identify patients who may benefit from precision-based approaches.
Insights
Pancreatic cancer (PDAC) with wild-type KRAS may have rare gene fusions or mutations. These alterations can make PDAC patients responsive to targeted therapies and PARP inhibitors, improving treatment outcomes.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Pancreatic ductal adenocarcinoma (PDAC) has a poor prognosis with limited treatment options.
- Approximately 5-10% of PDAC cases feature wild-type KRAS, presenting unique molecular alterations.
- These rare alterations include gene fusions (ALK, ROS1, NTRK, RET, FGFR, NRG1) and germline DNA repair gene mutations.
Purpose of the Study:
- To review the prevalence, molecular characteristics, and clinical impact of gene fusions, amplifications, and mutations in PDAC.
- To focus on the wild-type KRAS subgroup and their susceptibility to targeted therapies.
- To highlight the importance of comprehensive genomic profiling for personalized treatment strategies.
Main Methods:
- Literature review integrating current evidence on PDAC molecular alterations.
- Analysis of clinical trial data and case reports on targeted therapy efficacy.
- Focus on fusion detection and germline mutation testing in PDAC patients.
Main Results:
- Gene fusions and mutations in wild-type KRAS PDAC patients can predict response to targeted therapies.
- FDA-approved drugs like selpercatinib, larotrectinib, and repotrectinib target specific gene fusions.
- Zenocutuzumab shows promise for NRG1 fusion-positive PDAC; germline mutations may indicate sensitivity to PARP inhibitors or platinum agents.
Conclusions:
- Comprehensive genomic profiling is crucial for identifying PDAC patients eligible for precision medicine.
- Targeted therapies and specific drug classes (e.g., PARP inhibitors) offer new treatment avenues for specific PDAC molecular subtypes.
- Identifying rare genetic alterations in PDAC can significantly improve patient outcomes through tailored therapeutic approaches.
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