Molecular Ultrasound Imaging of Tissue Inflammation Using an Animal Model of Acute Kidney Injury
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Summary
Renal inflammation was analyzed using molecular US imaging and it appears that the former was more sensitive to biomarker expression than the latter, while results using the P-selectin and VCAM-1 targeted MBs were comparable.
- Type
- article
- Published
- 2015-04-24
- Cited by
- 24
- References
- 39
- Access
- Open access
- OpenAlex
- https://openalex.org/W1988269116
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32618594
Keywords
Medicine, Molecular imaging, Acute kidney injury, Ultrasound, Kidney
References
- A Triple-Targeted Ultrasound Contrast Agent Provides Improved Localization to Tumor Vasculature
- Acute Kidney Injury by Radiographic Contrast Media: Pathogenesis and Prevention
- Molecular Targeting of Ultrasonographic Contrast Agent for Detection of Head and Neck Squamous Cell Carcinoma
- Acute Kidney Injury Network: report of an initiative to improve outcomes in acute kidney injury
- Current and potential renal applications of contrast-enhanced ultrasound.
- Dual-targeted contrast agent for US assessment of tumor angiogenesis in vivo.
- Acute kidney injury in the intensive care unit according to RIFLE*
- Novel Imaging Techniques in Acute Kidney Injury
- Ultrasound Molecular Imaging Contrast Agent Binding to Both E- and P-Selectin in Different Species
- Dynamic Contrast‐Enhanced Ultrasound for Quantification of Tissue Perfusion
- Validation of Dynamic Contrast Enhanced Ultrasound in Rodent Kidneys as an Absolute Quantitative Method for Measuring Blood Perfusion
- Real-Time Quantitation of Renal Ischemia Using Targeted Microbubbles: In-vivo Measurement of P-selectin Expression
- Contrast-enhanced ultrasonography for bedside imaging in subclinical acute kidney injury
- Four-dimensional molecular ultrasound imaging of tumor angiogenesis in a preclinical animal model of prostate cancer
- Imaging the microvascular response to ultrasound-stimulated therapy in a preclinical animal model of breast cancer
- AN ANIMAL MODEL ALLOWING CONTROLLED RECEPTOR EXPRESSION FOR MOLECULAR ULTRASOUND IMAGING
- Detection of early changes in renal function using 99mTc-MAG3 imaging in a murine model of ischemia-reperfusion injury.
- Nonpharmacological Strategies to Prevent Contrast-Induced Acute Kidney Injury
- Cortical necrosis secondary to trauma in a child: contrast-enhanced ultrasound comparable to magnetic resonance imaging
- Dual targeting improves microbubble contrast agent adhesion to VCAM-1 and P-selectin under flow
Cited by
- Diagnosis of prostate cancer using anti-PSMA aptamer A10-3.2-oriented lipid nanobubbles
- Molecular Ultrasound Imaging for the Detection of Neural Inflammation: A Longitudinal Dosing Pilot Study
- Quantification in molecular ultrasound imaging using compartmental modeling
- Ultrasound characterization of oxygen contrast agents produced during the reaction of hydrogen peroxide with catalase-loaded nanoparticles
- Advanced Microbubbles as a Multifunctional Platform Combining Imaging and Therapy
- Targeted Contrast-Enhanced Ultrasound for Inflammation Detection
- New Ultrasound Techniques Promise Further Advances in AKI and CKD.
- Muscle-derived extracellular superoxide dismutase inhibits endothelial activation and protects against multiple organ dysfunction syndrome in mice
- Thrombin-Activatable Microbubbles as Potential Ultrasound Contrast Agents for the Detection of Acute Thrombosis
- CAIX aptamer-functionalized targeted nanobubbles for ultrasound molecular imaging of various tumors
- Recent advances in renal imaging
- In Vivo Imaging With Confirmation by Histopathology for Increased Rigor and Reproducibility in Translational Research: A Review of Examples, Options, and Resources.
- Applications in Molecular Ultrasound Imaging: Present and Future
- Development of a Translatable Ultrasound Molecular Imaging Agent for Inflammation.
- Strategies for visualizing inflammation
- Clinical and experimental approaches for imaging of acute kidney injury
- UAB-UCSD O'Brien Center for Acute Kidney Injury Research.
- Basic Principles and New Advances in Kidney Imaging
- Non-invasive molecular imaging of kidney diseases
- Ultrasound molecular imaging for early detection of acute renal ischemia–reperfusion injury
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