Related Experiment Video
Updated: Jul 12, 2026

Contrast Imaging in Mouse Embryos Using High-frequency Ultrasound
Published on: March 4, 2015
Ultrasound assessment of inflammation and renal tissue injury with microbubbles targeted to P-selectin
J R Lindner1, J Song, J Christiansen
1Cardiovascular Division, University of Virginia School of Medicine, Charlottesville, USA. jlindner@virginia.edu
Background:
Routine methods capable of assessing tissue inflammation noninvasively are currently not available. We hypothesized that tissue retention of microbubbles targeted to the endothelial cell adhesion molecule P-selectin would provide a means to assess inflammation with ultrasound imaging.
Methods And Results:
Phospholipid microbubbles targeted to P-selectin (MB(p)) were created by conjugating monoclonal antibodies against murine P-selectin to the lipid shell. The microvascular behaviors of MB(p) and control microbubbles without antibody (MB) or with isotype control antibody (MB(iso)) were assessed by intravital microscopy of cremasteric venules of control and tumor necrosis factor (TNF)-alpha-stimulated wild-type mice. Retention of all microbubbles increased (P<0.05) with TNF-alpha treatment because of increased attachment to activated leukocytes. Extensive attachment of MB(p) directly to the venular endothelium or to adherent platelet-leukocyte aggregates was observed in TNF-alpha-stimulated mice, resulting in 4-fold greater (P<0.01) retention of MB(p) than either MB(iso) or MB. Enhanced retention of MB(p) was completely abolished in TNF-alpha-stimulated P-selectin-deficient mice. The ultrasound signal from microbubbles retained in inflamed tissue was assessed by contrast-enhanced renal ultrasound imaging of the kidneys of mice undergoing ischemia-reperfusion injury. In wild-type mice, this signal was significantly higher (P<0.05) for MB(p) (12+/-2 U) than either MB(iso) (6+/-3 U) or MB (5+/-3 U). In P-selectin-deficient mice, the signal for MB(p) was equivalent to that from control microbubbles.
Conclusions:
Microvascular retention of microbubbles targeted to P-selectin produces strong signal enhancement on ultrasound imaging of inflamed tissue. These results suggest that site-targeted microbubbles may be used to assess inflammation, tissue injury, and other endothelial responses noninvasively with ultrasound.
Insights
Noninvasive ultrasound imaging can now assess tissue inflammation. Microbubbles targeted to P-selectin show enhanced retention in inflamed tissues, improving ultrasound signal for detecting inflammation and injury.
Area of Science:
- Biomedical Engineering
- Diagnostic Imaging
- Vascular Biology
Background:
- Noninvasive methods for assessing tissue inflammation are limited.
- P-selectin is a key endothelial cell adhesion molecule involved in inflammation.
Purpose of the Study:
- To develop and evaluate microbubbles targeted to P-selectin for noninvasive ultrasound assessment of inflammation.
- To investigate the retention of targeted microbubbles in inflamed tissues.
Main Methods:
- Conjugation of anti-P-selectin antibodies to phospholipid microbubbles (MB(p)).
- Assessment of microbubble behavior using intravital microscopy in wild-type and P-selectin-deficient mice stimulated with TNF-alpha.
- Evaluation of ultrasound signal enhancement in inflamed kidneys using contrast-enhanced renal ultrasound imaging.
Main Results:
- MB(p) demonstrated significantly greater retention in TNF-alpha-stimulated venules compared to control microbubbles.
- Retention of MB(p) was dependent on P-selectin expression, as it was abolished in P-selectin-deficient mice.
- Contrast-enhanced ultrasound imaging showed a significantly higher signal in inflamed kidneys using MB(p) in wild-type mice.
Conclusions:
- Microvascular retention of P-selectin-targeted microbubbles enhances ultrasound signal in inflamed tissues.
- Site-targeted microbubbles offer a promising noninvasive approach for assessing inflammation, tissue injury, and endothelial responses using ultrasound.
More Related Videos
06:02Multi-timescale Microscopy Methods for the Characterization of Fluorescently-labeled Microbubbles for Ultrasound-Triggered Drug Release
Published on: June 12, 2021
06:58Microvascular Perfusion Monitored by Laser Speckle Contrast Imaging during Renal Ischemia-Reperfusion Injury in Mice
Published on: February 27, 2026
Related Concept Videos
Ultrasonography
During an ultrasonography procedure, a handheld device called a...
Imaging Studies II: Ultrasonography