Related Experiment Video
Updated: Jul 4, 2026

Dynamic Contrast Enhanced Magnetic Resonance Imaging of an Orthotopic Pancreatic Cancer Mouse Model
Published on: April 18, 2015
Perfusion MDCT enables early detection of therapeutic response to antiangiogenic therapy
Adeel Sabir1, Rachel Schor-Bardach, Carol J Wilcox
1Minimally Invasive Tumor Therapy Laboratory, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA.
Objective:
The objective of our study was to determine whether perfusion CT can be used to detect early changes in therapeutic response to antiangiogenic therapy in an animal tumor model.
Materials And Methods:
Twenty-five rats implanted with R3230 mammary adenocarcinoma (diameter, 1.2-2.0 cm) randomly received 7.5 or 30 mg/kg of an antiangiogenic agent, sorafenib, by daily gavage for 4 (n = 4), 9 (n = 9), or 14 (n = 5) days. Seven untreated animals served as a control group. Perfusion MDCT was performed at days 0, 4, 9, and 14 with 0.4 mL of ioversol (350 mg/mL) and included four 5-mm slices covering the entire tumor volume. Changes in tumor growth were determined by volumetric analysis of CT data. Serial changes in tumor volume and blood flow were assessed and correlated with pathology findings.
Results:
All control tumors grew larger (from 2.0 +/- 0.7 cm(3) at day 0 to 5.9 +/- 1.0 cm(3) at day 14), whereas all treated tumors shrank (from 2.5 +/- 1.1 to 2.1 +/- 1.0 cm(3)), with a statistically significant rate of growth or shrinkage in both groups (p < 0.05). Although perfusion in the control tumors changed little from day 0 to day 14 (day 0, 18.1 +/- 9.2 mL/min/100 g; day 4, 15.8 +/- 5.6; day 9, 21.7 +/- 12.2; day 14, 27.7 +/- 34), in the sorafenib group, the mean blood flow was significantly lower at day 4 (5.2 +/- 3.2 mL/min/100 g, 77% decrease), day 9 (6.4 +/- 4.0 mL/min/100 g, 66% decrease), and day 14 (6.3 +/- 5.2 mL/min/100 g, 83% decrease) compared with day 0 (23.8 +/- 11.6 mL/min/100 g) (p < 0.05). Poor correlation was seen between changes in blood flow and tumor volume for days 0-9 (r(2) = 0.34), 4-9 (r(2) = 0.0004), and 9-14 (r(2) = 0.16). However, when comparing day 4 images with days 9 and 14 images, seven of 14 (50%) sorafenib-treated tumors had focal areas of new perfusion that correlated with areas of histopathologic viability despite the fact that these tumors were shrinking in size from day 4 onward (day 4, 2.18 +/- 0.8 cm(3); day 9, 1.98 +/- 0.8 cm(3)).
Conclusion:
Perfusion MDCT can detect focal blood flow changes even when the tumor is shrinking, possibly indicating early reversal of tumor responsiveness to antiangiogenic therapy. Given that changes in tumor volume after antiangiogenic therapy do not necessarily correlate with true treatment response, physiologic imaging of tumor perfusion may be necessary.
Insights
Perfusion computed tomography (CT) can detect early changes in tumor blood flow, indicating therapeutic response to antiangiogenic therapy. This imaging technique may be crucial for assessing treatment effectiveness when tumor volume changes are not indicative of response.
Area of Science:
- Oncology
- Radiology
- Pharmacology
Background:
- Antiangiogenic therapies are crucial in cancer treatment.
- Assessing early therapeutic response is vital for treatment efficacy.
- Tumor volume changes do not always correlate with treatment response.
Purpose of the Study:
- To evaluate the utility of perfusion CT in detecting early therapeutic response to antiangiogenic therapy.
- To assess changes in tumor blood flow in response to sorafenib treatment.
- To correlate perfusion imaging findings with tumor volume and histopathology.
Main Methods:
- Rats with R3230 mammary adenocarcinoma were treated with sorafenib or placebo.
- Perfusion multi-detector row CT (MDCT) was performed at multiple time points.
- Tumor volume and blood flow were quantified and analyzed.
Main Results:
- Sorafenib treatment led to tumor shrinkage and a significant decrease in tumor blood flow.
- Perfusion CT detected early reductions in blood flow (up to 83%) within 4 days of treatment.
- Focal areas of new perfusion in shrinking tumors indicated histopathologic viability, suggesting potential treatment resistance.
Conclusions:
- Perfusion MDCT can identify early focal blood flow changes in tumors undergoing antiangiogenic therapy.
- These perfusion changes may indicate early reversal of tumor responsiveness.
- Physiologic imaging of tumor perfusion is essential for accurate assessment of antiangiogenic therapy response.
More Related Videos
09:49Dual-phase Cone-beam Computed Tomography to See, Reach, and Treat Hepatocellular Carcinoma during Drug-eluting Beads Transarterial Chemo-embolization
Published on: December 2, 2013
10:25A Dorsal Skinfold Window Chamber Tumor Mouse Model for Combined Intravital Microscopy and Magnetic Resonance Imaging in Translational Cancer Research
Published on: April 12, 2024