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Updated: May 19, 2026

Dynamic Contrast Enhanced Magnetic Resonance Imaging of an Orthotopic Pancreatic Cancer Mouse Model
Published on: April 18, 2015
Monitoring anti-angiogenic therapy in colorectal cancer murine model using dynamic contrast-enhanced MRI: comparing
C R Haney1, X Fan, E Markiewicz
1Department of Radiology, The University of Chicago, Chicago, IL 60637, USA. chaney@uchicago.edu
Abstract:
Sorafenib is a multi-kinase inhibitor that blocks cell proliferation and angiogenesis. It is currently approved for advanced hepatocellular and renal cell carcinomas in humans, where its major mechanism of action is thought to be through inhibition of vascular endothelial growth factor and platelet-derived growth factor receptors. The purpose of this study was to determine whether pixel-by-pixel analysis of dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) is better able to capture the heterogeneous response of Sorafenib in a murine model of colorectal tumor xenografts (as compared with region of interest analysis). MRI was performed on a 9.4 T pre-clinical scanner on the initial treatment day. Then either vehicle or drug were gavaged daily (3 days) up to the final image. Four days later, the mice were again imaged. The two-compartment model and reference tissue method of DCE-MRI were used to analyze the data. The results demonstrated that the contrast agent distribution rate constant (K(trans)) were significantly reduced (p < 0.005) at day-4 of Sorafenib treatment. In addition, the K(trans) of nearby muscle was also reduced after Sorafenib treatment. The pixel-by-pixel analysis (compared to region of interest analysis) was better able to capture the heterogeneity of the tumor and the decrease in K(trans) four days after treatment. For both methods, the volume of the extravascular extracellular space did not change significantly after treatment. These results confirm that parameters such as K(trans), could provide a non-invasive biomarker to assess the response to anti-angiogenic therapies such as Sorafenib, but that the heterogeneity of response across a tumor requires a more detailed analysis than has typically been undertaken.
Insights
Pixel-by-pixel analysis of dynamic contrast-enhanced MRI better captures Sorafenib
Area of Science:
- Oncology
- Radiology
- Pharmacology
Background:
- Sorafenib is an approved multi-kinase inhibitor targeting angiogenesis and proliferation.
- Its mechanism involves inhibiting vascular endothelial growth factor and platelet-derived growth factor receptors.
- Understanding Sorafenib's heterogeneous effects in colorectal cancer is crucial.
Purpose of the Study:
- To compare pixel-by-pixel analysis with region of interest analysis for DCE-MRI in assessing Sorafenib's effects.
- To evaluate Sorafenib's impact on tumor heterogeneity in a murine colorectal xenograft model.
Main Methods:
- Dynamic contrast-enhanced MRI (DCE-MRI) was performed on a 9.4 T pre-clinical scanner.
- Mice received daily vehicle or Sorafenib treatment for 3 days.
- Two-compartment model and reference tissue method were used for DCE-MRI data analysis.
Main Results:
- Sorafenib significantly reduced the contrast agent distribution rate constant (K(trans)) by day 4 (p < 0.005).
- K(trans) reduction was observed in both tumor and adjacent muscle tissue.
- Pixel-by-pixel analysis revealed greater tumor heterogeneity and K(trans) decrease compared to ROI analysis.
Conclusions:
- K(trans) serves as a potential non-invasive biomarker for assessing anti-angiogenic therapy response, like Sorafenib.
- Detailed pixel-by-pixel analysis is necessary to capture tumor heterogeneity in response to treatment.
- Extravascular extracellular space volume did not significantly change post-treatment.
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