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.

Cancers
|December 11, 2025
PubMed

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.