Literature DB >> 24374866

Binding dynamics of targeted microbubbles in response to modulated acoustic radiation force.

Shiying Wang1, John A Hossack, Alexander L Klibanov, F William Mauldin.   

Abstract

Detection of molecular targeted microbubbles plays a foundational role in ultrasound-based molecular imaging and targeted gene or drug delivery. In this paper, an empirical model describing the binding dynamics of targeted microbubbles in response to modulated acoustic radiation forces in large vessels is presented and experimentally verified using tissue-mimicking flow phantoms. Higher flow velocity and microbubble concentration led to faster detaching rates for specifically bound microbubbles (p < 0.001). Higher time-averaged acoustic radiation force intensity led to faster attaching rates and a higher saturation level of specifically bound microbubbles (p < 0.05). The level of residual microbubble signal in targeted experiments after cessation of radiation forces was the only response parameter that was reliably different between targeted and control experiments (p < 0.05). A related parameter, the ratio of residual-to-saturated microbubble signal (Rresid), is proposed as a measurement that is independent of absolute acoustic signal magnitude and therefore able to reliably detect targeted adhesion independently of control measurements (p < 0.01). These findings suggest the possibility of enhanced detection of specifically bound microbubbles in real-time, using relatively short imaging protocols (approximately 3 min), without waiting for free microbubble clearance.

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Year:  2013        PMID: 24374866      PMCID: PMC4068277          DOI: 10.1088/0031-9155/59/2/465

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  51 in total

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9.  Imaging of angiogenesis using Cadence contrast pulse sequencing and targeted contrast agents.

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10.  Shear forces from flow are responsible for a distinct statistical signature of adherent microbubbles in large vessels.

Authors:  Shiying Wang; F William Mauldin; Alexander L Klibanov; John A Hossack
Journal:  Mol Imaging       Date:  2013-09       Impact factor: 4.488

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  14 in total

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Review 3.  Targeting of microbubbles: contrast agents for ultrasound molecular imaging.

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Journal:  J Drug Target       Date:  2018-01-09       Impact factor: 5.121

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5.  Optical Verification of Microbubble Response to Acoustic Radiation Force in Large Vessels With In Vivo Results.

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Journal:  Invest Radiol       Date:  2015-11       Impact factor: 6.016

6.  Ultrasound Molecular Imaging With BR55 in Patients With Breast and Ovarian Lesions: First-in-Human Results.

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7.  Ultrasound Molecular Imaging of Inflammation in Mouse Abdominal Aorta.

Authors:  Shiying Wang; Sunil Unnikrishnan; Elizabeth B Herbst; Alexander L Klibanov; Frank William Mauldin; John A Hossack
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Review 8.  Production of acoustic radiation force using ultrasound: methods and applications.

Authors:  Matthew W Urban
Journal:  Expert Rev Med Devices       Date:  2018-10-31       Impact factor: 3.166

9.  Ultra-Low-Dose Ultrasound Molecular Imaging for the Detection of Angiogenesis in a Mouse Murine Tumor Model: How Little Can We See?

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10.  VEGFR2-Targeted Three-Dimensional Ultrasound Imaging Can Predict Responses to Antiangiogenic Therapy in Preclinical Models of Colon Cancer.

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