Literature DB >> 22104535

A pilot study to assess markers of renal damage in the rodent kidney after exposure to 7 MHz ultrasound pulse sequences designed to cause microbubble translation and disruption.

Kennita Johnson1, Rachel Cianciolo, Ryan C Gessner, Paul A Dayton.   

Abstract

Acoustic radiation force has been proposed as a mechanism to enhance microbubble concentration for therapeutic and molecular imaging applications. It is hypothesized that once microbubbles are localized, bursting them with acoustic pressure could result in local drug delivery. It is known that low-frequency, high-amplitude acoustic energy combined with cavitation nuclei can result in bioeffects. However, little is known about the bioeffects potential of acoustic parameters involved in radiation force and microbubble destruction pulse sequences applied at higher frequencies. In this pilot study, rat kidneys are exposed to high-duty cycle, low-amplitude pulse sequences known to cause substantial bubble translation due to radiation force, as well as high-amplitude short pulse sequences known to cause microbubble destruction. Both studies are performed at 7 MHz on a clinical ultrasound system, and implemented in three-dimensions (3-D) for entire kidney exposure. Analysis of biomarkers of renal injury and renal histopathology indicate that there was no significant renal damage due to these ultrasound parameters in conjunction with microbubbles within the study group.
Copyright © 2012 World Federation for Ultrasound in Medicine & Biology. Published by Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 22104535      PMCID: PMC3822907          DOI: 10.1016/j.ultrasmedbio.2011.10.001

Source DB:  PubMed          Journal:  Ultrasound Med Biol        ISSN: 0301-5629            Impact factor:   2.998


  29 in total

1.  Threshold of fragmentation for ultrasonic contrast agents.

Authors:  J E Chomas; P Dayton; D May; K Ferrara
Journal:  J Biomed Opt       Date:  2001-04       Impact factor: 3.170

2.  A method for radiation-force localized drug delivery using gas-filled lipospheres.

Authors:  Michaelann J Shortencarier; Paul A Dayton; Susannah H Bloch; Patricia A Schumann; Terry O Matsunaga; Katherine W Ferrara
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2004-07       Impact factor: 2.725

Review 3.  Imaging of perfusion using ultrasound.

Authors:  David Cosgrove; Nathalie Lassau
Journal:  Eur J Nucl Med Mol Imaging       Date:  2010-08       Impact factor: 9.236

4.  Radiation-force assisted targeting facilitates ultrasonic molecular imaging.

Authors:  Shukui Zhao; Mark Borden; Susannah H Bloch; Dustin Kruse; Katherine W Ferrara; Paul A Dayton
Journal:  Mol Imaging       Date:  2004-07       Impact factor: 4.488

5.  Contrast-agent detection and quantification.

Authors:  Patrick Phillips; Edward Gardner
Journal:  Eur Radiol       Date:  2004-10       Impact factor: 5.315

6.  Optical and acoustical observations of the effects of ultrasound on contrast agents.

Authors:  P A Dayton; K E Morgan; A L Klibanov; G H Brandenburger; K W Ferrara
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  1999       Impact factor: 2.725

Review 7.  Ultrasound targeted microbubble destruction for drug and gene delivery.

Authors:  Christian R Mayer; Nicolas A Geis; Hugo A Katus; Raffi Bekeredjian
Journal:  Expert Opin Drug Deliv       Date:  2008-10       Impact factor: 6.648

8.  Acoustic droplet vaporization for enhancement of thermal ablation by high intensity focused ultrasound.

Authors:  Man Zhang; Mario L Fabiilli; Kevin J Haworth; Frederic Padilla; Scott D Swanson; Oliver D Kripfgans; Paul L Carson; Jeffrey Brian Fowlkes
Journal:  Acad Radiol       Date:  2011-06-23       Impact factor: 3.173

9.  Improving sensitivity in ultrasound molecular imaging by tailoring contrast agent size distribution: in vivo studies.

Authors:  Jason E Streeter; Ryan Gessner; Iman Miles; Paul A Dayton
Journal:  Mol Imaging       Date:  2010-04       Impact factor: 4.488

10.  Nephron injury induced by diagnostic ultrasound imaging at high mechanical index with gas body contrast agent.

Authors:  Alun R Williams; Roger C Wiggins; Bryan L Wharram; Meera Goyal; Chunyan Dou; Kent J Johnson; Douglas L Miller
Journal:  Ultrasound Med Biol       Date:  2007-05-16       Impact factor: 2.998

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  2 in total

1.  In vivo demonstration of cancer molecular imaging with ultrasound radiation force and buried-ligand microbubbles.

Authors:  Mark A Borden; Jason E Streeter; Shashank R Sirsi; Paul A Dayton
Journal:  Mol Imaging       Date:  2013-09       Impact factor: 4.488

2.  An in vivo evaluation of the effect of repeated administration and clearance of targeted contrast agents on molecular imaging signal enhancement.

Authors:  Jason E Streeter; Paul A Dayton
Journal:  Theranostics       Date:  2013-01-17       Impact factor: 11.556

  2 in total

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