• DocumentCode
    2695780
  • Title

    Targeted molecular ultrasound therapy improves chemotherapeutic drug delivery in cancer cells

  • Author

    Sorace, Anna G. ; Saini, Ritu ; Mahoney, Michael J. ; Hoyt, Kenneth

  • Author_Institution
    Dept. of Biomed. Eng., Univ. of Alabama at usaBirmingham, Birmingham, AL, USA
  • fYear
    2012
  • fDate
    7-10 Oct. 2012
  • Firstpage
    429
  • Lastpage
    432
  • Abstract
    Microbubble (MB) mediated ultrasound (US) therapy has been shown to non-invasively increase drug uptake through increasing cell membrane permeability and vascular extravasation. Increasing MB-cell interaction through targeted receptors overexpressed in the tumor vasculature promises to increase effectiveness of MB-mediated US therapy. 2LMP breast cancer cells were plated on acoustically transparent tissue culture plates. Using a model system which allows receptor density modulation, molecular US therapy was analyzed for anticancer effects in vitro. Drug (paclitaxel) effectiveness in combination with traditional MB-mediated US therapy or molecular US therapy was analyzed using flow cytometry and ATPlite assays. It was shown that molecular US therapy significantly increases anticancer effects by 25% compared to traditional MB-mediated US therapy (P <; 0.001). This preclinical approach has potential to increase localized delivery through a targeted methodology, thereby potentially decreasing systemically toxicity. This study demonstrates that MBs targeted to cellular receptors are a promising addition to MB-mediated US therapy.
  • Keywords
    biological organs; biomedical ultrasonics; biomembrane transport; cancer; drug delivery systems; toxicology; tumours; 2LMP breast cancer cells; ATPlite assays; MB-cell interaction; MB-mediated US therapy; acoustically transparent tissue culture plates; cancer cells; cell membrane permeability; cellular receptors; chemotherapeutic drug delivery; flow cytometry; microbubble mediated ultrasound therapy; molecular US therapy; receptor density modulation; targeted molecular ultrasound therapy; toxicity; tumor vasculature; vascular extravasation; Cancer; Cells (biology); Drug delivery; Drugs; Tumors; Ultrasonic imaging;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Ultrasonics Symposium (IUS), 2012 IEEE International
  • Conference_Location
    Dresden
  • ISSN
    1948-5719
  • Print_ISBN
    978-1-4673-4561-3
  • Type

    conf

  • DOI
    10.1109/ULTSYM.2012.0106
  • Filename
    6562479