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Molecular Ultrasound Imaging: Current Status and Future Directions

Overview
Journal Clin Radiol
Specialty Radiology
Date 2010 Jun 15
PMID 20541656
Citations 97
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Abstract

Targeted contrast-enhanced ultrasound (molecular ultrasound) is an emerging imaging strategy that combines ultrasound technology with novel molecularly-targeted ultrasound contrast agents for assessing biological processes at the molecular level. Molecular ultrasound contrast agents are nano- or micro-sized particles that are targeted to specific molecular markers by adding high-affinity binding ligands onto the surface of the particles. Following intravenous administration, these targeted ultrasound contrast agents accumulate at tissue sites overexpressing specific molecular markers, thereby enhancing the ultrasound imaging signal. High spatial and temporal resolution, real-time imaging, non-invasiveness, relatively low costs, lack of ionising irradiation and wide availability of ultrasound systems are advantages compared to other molecular imaging modalities. In this article we review current concepts and future directions of molecular ultrasound imaging, including different classes of molecular ultrasound contrast agents, ongoing technical developments of pre-clinical and clinical ultrasound systems, the potential of molecular ultrasound for imaging different diseases at the molecular level, and the translation of molecular ultrasound into the clinic.

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References
1.
Piscaglia F, Bolondi L . The safety of Sonovue in abdominal applications: retrospective analysis of 23188 investigations. Ultrasound Med Biol. 2006; 32(9):1369-75. DOI: 10.1016/j.ultrasmedbio.2006.05.031. View

2.
Ferrante E, Pickard J, Rychak J, Klibanov A, Ley K . Dual targeting improves microbubble contrast agent adhesion to VCAM-1 and P-selectin under flow. J Control Release. 2009; 140(2):100-7. PMC: 2783796. DOI: 10.1016/j.jconrel.2009.08.001. View

3.
Klibanov A . Molecular imaging with targeted ultrasound contrast microbubbles. Ernst Schering Res Found Workshop. 2004; (49):171-91. DOI: 10.1007/3-540-26809-x_10. View

4.
Korpanty G, Carbon J, Grayburn P, Fleming J, Brekken R . Monitoring response to anticancer therapy by targeting microbubbles to tumor vasculature. Clin Cancer Res. 2007; 13(1):323-30. DOI: 10.1158/1078-0432.CCR-06-1313. View

5.
Buchanan K, Huang S, Kim H, MacDonald R, McPherson D . Echogenic liposome compositions for increased retention of ultrasound reflectivity at physiologic temperature. J Pharm Sci. 2007; 97(6):2242-9. PMC: 3119526. DOI: 10.1002/jps.21173. View