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RECRUITING
NCT07705919
PHASE1/PHASE2

DCE-MRI for Neoadjuvant Treatment Assessment in Patients With Borderline Resectable Pancreatic Cancer

Sponsor: Ohio State University Comprehensive Cancer Center

View on ClinicalTrials.gov

Summary

This clinical trial tests how well dynamic contrast enhanced magnetic resonance imaging (DCE-MRI) with standard clinical evaluation works to assess treatment response for patients with pancreatic cancer that may be able to be removed by surgery (borderline resectable). Borderline resectable pancreatic cancer (BRPC) is a certain type of pancreatic cancer that involves the arteries or veins near the pancreas. With the right treatment before surgery, it can be removed (resected) successfully. An MRI (magnetic resonance imaging) scan creates clear images of the structures inside the body using a large magnet, radio waves, and a computer. DCE-MRI can be used to calculate the blood perfusion. Blood perfusion can show disease status. Using DCE-MRI as part of standard clinical evaluation may provide a more accurate treatment response assessment for patients with BRPC.

Official title: DCE-MRI-Informed Neoadjuvant Chemotherapy for Borderline Resectable Pancreatic Cancer

Key Details

Gender

All

Age Range

18 Years - Any

Study Type

INTERVENTIONAL

Enrollment

50

Start Date

2026-10-01

Completion Date

2027-12-31

Last Updated

2026-10-05

Healthy Volunteers

No

Interventions

PROCEDURE

Biospecimen Collection

Undergo blood sample collection

PROCEDURE

Computed Tomography

Undergo CT scan

PROCEDURE

Dynamic Contrast-Enhanced Magnetic Resonance Imaging

Undergo DCE-MRI

DRUG

Fluorouracil

Given fluorouracil

DRUG

Gadolinium-Chelate

Given IV

DRUG

Gemcitabine

Given gemcitabine

DRUG

Irinotecan

Given irinotecan

DRUG

Leucovorin Calcium

Undergo leucovorin

DRUG

Nab-paclitaxel

Given nab-paclitaxel

DRUG

Oxaliplatin

Given oxaliplatin

DEVICE

Point-of-care portable perfusion phantom (P4)

The Point-of-care Portable Perfusion Phantom (P4) is a small, non-invasive calibration device developed to support quality assurance of quantitative magnetic resonance imaging (MRI). The device is designed to reproduce controlled imaging properties comparable to those observed in human tissue, allowing assessment of scanner performance during image acquisition.

Locations (1)

Ohio State University Comprehensive Cancer Center

Columbus, Ohio, United States