What's Happening?
The Pancreatic Cancer Action Network (PanCAN) has awarded a $225,000 grant to researchers at Sylvester Comprehensive Cancer Center, part of the University of Miami Miller School of Medicine. This two-year award will support a study aimed at validating
circulating tumor DNA (ctDNA) blood tests as a reliable method for determining the molecular makeup of metastatic pancreatic cancer. Currently, patients with pancreatic cancer primarily rely on more invasive and time-consuming tissue biopsies for molecular profiling. The Sylvester team, led by principal investigator Peter Hosein, M.D., and co-principal investigator Jashodeep Datta, M.D., will utilize patient samples from PanCAN’s Precision Promise adaptive clinical trial. They will compare ctDNA results from blood samples with those obtained from standard tissue testing from the same patients. The study will also investigate the potential of ctDNA to monitor treatment response and explore the biology of the disease, including the use of advanced molecular profiling and an experimental artificial intelligence platform called Fate-AI.
Why It's Important?
This research is crucial for advancing precision medicine in pancreatic cancer, one of the deadliest malignancies. If validated, ctDNA blood tests could offer a less invasive and significantly faster alternative to traditional tissue biopsies. Tissue testing can take up to a month, while ctDNA results could be available in as little as seven days, which is critical for patients facing a rapidly progressing disease. A validated ctDNA test would enable oncologists to more quickly identify a cancer’s molecular vulnerabilities and guide treatment decisions, potentially channeling patients into the most appropriate therapies sooner. Furthermore, ctDNA could serve as a vital backup when tissue biopsies fail to yield usable results, preventing the need for repeat invasive procedures. The ability to track treatment response through ctDNA could also lead to more nimble treatment adjustments, allowing clinicians to switch therapies without repeated biopsies to understand how the tumor is changing or developing resistance.
What's Next?
The Sylvester team will proceed with analyzing approximately 490 plasma samples from the Precision Promise trial, focusing on pancreatic cancer-specific biomarkers and benchmarking ctDNA detection rates against tissue testing. They will also examine blood samples collected before and two months after therapy to assess changes in tumor-derived DNA as indicators of treatment response or emerging resistance. The exploratory research will include investigations into defining tumor subtypes through blood-based methylation profiling and testing the Fate-AI platform for identifying molecular signatures. The ultimate goal is to establish ctDNA as a reliable alternative or backup to tissue testing in defined situations. If successful, this validation could pave the way for broader clinical adoption of ctDNA testing in pancreatic cancer, significantly improving patient care and treatment strategies.
Beyond the Headlines
The development of a reliable ctDNA test for pancreatic cancer extends beyond immediate clinical benefits, touching upon broader ethical and logistical considerations in cancer care. The shift from invasive biopsies to blood tests could reduce patient burden and discomfort, improving the overall patient experience during a challenging diagnosis. Ethically, providing faster and less invasive diagnostic options aligns with patient-centered care principles. Logistically, widespread adoption of ctDNA testing could streamline diagnostic pathways, potentially reducing healthcare costs associated with complex surgical procedures and prolonged waiting times. This research also highlights the growing integration of artificial intelligence in medical diagnostics, with platforms like Fate-AI promising to unlock deeper insights into disease biology and treatment efficacy. The success of this study could set a precedent for similar advancements in other hard-to-diagnose or rapidly progressing cancers, fostering a more proactive and personalized approach to oncology.













