4.8 Article

Superparamagnetic iron oxide and drug complex-embedded acoustic droplets for ultrasound targeted theranosis

Journal

BIOMATERIALS
Volume 34, Issue 7, Pages 1852-1861

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2012.11.037

Keywords

Focused ultrasound; Acoustic droplet vaporization; Superparamagnetic iron oxide-loaded; Doxorubicin-loaded; Magnetism-assisted ultrasound targeting image; Magnetic resonance imaging

Funding

  1. National Science Council of Taiwan [NSC 100-2627-M-007-004, NSC 100-2628-E-007-001]
  2. National Tsing Hua University [100N2053E1]
  3. Taiwan National Health Research Institutes [NM-101-PP-04]
  4. Materials Analysis Technology Inc. Corporation (Physicochemical Characterization of Nanopharmaceuticals Transmission Electron Microscopy Based Analysis Platform' program)
  5. Molecular Imaging Center at Chang Gung Memorial Hospital

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Ultrasound-triggered acoustic droplet vaporization (ADV) has been reported as a mechanical and chemical theranostic strategy for tumor treatment. However, targeting of sufficient amounts of droplets to solid tumors to direct effective mechanical force toward tumor cells remains a major challenge. In this study, we incorporated superparamagnetic iron oxide (SPIO) nanoparticles into acoustic droplets to allow both magnetism-assisted targeting and magnetic resonance (MR)-guided ultrasound-triggered ADV. The multi-functionality of these droplets was further increased by co-encapsulation of the chemotherapeutic drug doxorubicin (DOX) and surface conjugation of anti-vascular endothelial growth factor receptor 2 antibody, to serve as an additional targeting moiety. Maximum loading capacities of 7.69 mg SPIO and 1.53 mg DOX per mL were achieved, and magnetic properties were characterized by determination of magnetic hysteresis curves and transverse relaxation rates. In vitro and in vivo MR imaging demonstrated the feasibility of dual modal imaging of SPIO-embedded droplets. Finally, a vessel-mimicking phantom model with live C6 glioma cells was used to demonstrate a 5.4-fold improvement in targeting efficacy by magnetism-assisted targeting of the SPIO-embedded droplets, and effective disruption of cells by insonation-induced ADV, suggesting the potential of developing this system for future clinical applications. (C) 2012 Elsevier Ltd. All rights reserved.

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