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Updated: Jun 8, 2026

In vivo Imaging of Tumor Angiogenesis using Fluorescence Confocal Videomicroscopy
Published on: September 11, 2013
Combining functional imaging and interstitial pressure measurements to evaluate two anti-angiogenic treatments
Ingrid Leguerney1, Nathalie Lassau, Serge Koscielny
1IR4M/UMR 8081, Paris-Sud University, Institut Gustave Roussy, 39 rue Camille Desmoulins, 94805 Villejuif, France. ingrid.leguerney@igr.fr
Background:
Interstitial hypertension is responsible for poor capillary blood flow and hampered drug delivery. The efficacy of combined sorafenib/bevacizumab treatment given according to different administration schedules has been evaluated by measuring both interstitial pressure (IP) and quantitative dynamic contrast-enhanced ultrasonography (DCE-US) parameters in melanoma-bearing mice.
Material And Methods:
[corrected] Sixty mice were xenografted with B16F10 melanoma. Animals received a daily administration over 4 days (D0 to D3) of either sorafenib at 30 mg/kg, bevacizumab at 2.5 mg/kg alone, or different schedules of combined treatments. Perfusion parameters determined using an Aplio® sonograph (Toshiba) with SonoVue® contrast agent (Bracco) were compared to IP measurements using fiberoptic probes (Samba®) at D0, D2, D4, D8.
Results:
The mean baseline IP values ranged between 6.55 and 31.29 mmHg in all the groups. A transient IP decrease occurred at D2 in all treated groups, and especially in the concomitant group which exhibited a significant IP reduction compared to D0. A significant decrease in both the peak intensity and the area under the curve was observed at D4 in the group with concomitant administration of both molecules which yielded maximal inhibition of the tumor volume and the number of vessels. No correlation was found between IP values and volume or perfusion parameters, indicating complex relationships between IP and vascularization. No IP gradients were found between the center and the periphery but IP values in these two regions were significantly correlated (R = 0.93).
Conclusion:
The results suggest that IP variations could be predictive of vascular changes and that one single IP measurement is sufficient to fully characterize the whole tumor.
Insights
Interstitial hypertension impacts drug delivery. Measuring interstitial pressure (IP) alongside dynamic contrast-enhanced ultrasonography (DCE-US) in melanoma mice revealed IP variations predict vascular changes, simplifying tumor characterization.
Area of Science:
- Oncology
- Medical Imaging
- Pharmacology
Background:
- Interstitial hypertension impairs capillary blood flow and drug delivery in tumors.
- Combined sorafenib/bevacizumab treatment efficacy was assessed in melanoma models.
- Interstital pressure (IP) and dynamic contrast-enhanced ultrasonography (DCE-US) were key evaluation metrics.
Purpose of the Study:
- To evaluate the efficacy of combined sorafenib/bevacizumab treatment using different administration schedules.
- To correlate interstitial pressure (IP) measurements with perfusion parameters obtained via DCE-US.
- To determine if IP variations can predict vascular changes in melanoma tumors.
Main Methods:
- Sixty mice with B16F10 melanoma xenografts were used.
- Animals received sorafenib, bevacizumab, or combined treatments over 4 days.
- IP was measured using fiberoptic probes, and perfusion parameters via DCE-US.
Main Results:
- All treatment groups showed a transient decrease in IP at day 2.
- Concomitant administration of sorafenib and bevacizumab significantly reduced IP and inhibited tumor volume and vessel count.
- No direct correlation was found between IP and perfusion parameters, suggesting complex interactions.
Conclusions:
- Interstitial pressure (IP) variations appear predictive of vascular changes in tumors.
- A single IP measurement may be sufficient for comprehensive tumor characterization.
- Combined sorafenib/bevacizumab treatment shows potential in managing melanoma by affecting tumor vascularity.
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