4.8 Article

The use of magnetite nanoparticles for implant-assisted magnetic drug targeting in thrombolytic therapy

期刊

BIOMATERIALS
卷 31, 期 36, 页码 9499-9510

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2010.07.107

关键词

Enzyme immobilization; Implant-assisted magnetic drug targeting; In-stent thrombosis; In vivo pig model; Magnetic nanoparticles; Thrombolysis

资金

  1. Swedish Foundation for Strategic Research
  2. Universitetssjukhusets i Lund stiftelser och donationer for forskning

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Implant-assisted targeting of magnetic particles under the influence of an external magnetic field has previously been verified through mathematical modeling in vitro studies and in vivo studies on rat carotid arteries as a feasible method for localized drug delivery The present study focuses on the development of nanoparticles for the treatment of in-stent thrombosis Magnetic nanoparticles in the size-range 10-30 nm were synthesized in a one-pot procedure by precipitation of ferrous hydroxide followed by oxidation to magnetite The nanoparticles were silanized with tetraethyl orthosilicate in the presence of methylene glycol and/or polyethylene glycol The surface coated magnetite nanoparticles were activated with either N-hydroxysulfosuccinimide or tresyl chloride for covalent immobilization of tissue plasminogen activator (tPA) Hysteresis loops showed saturation magnetizations of 55 8 441 and 430 emu/g for the naked nanoparticles the surface coated nanoparticles and the tPA-nanoparticle conjugates respectively The hemolytic activity of the nanoparticles in blood was negligible An initial in vivo biocompatibility test in pig carried out by intravascular injection of the nanoparticles in a stented brachial artery showed no short-term adverse effects In vitro evaluation in a flow-through model proved that the nanoparticles were captured efficiently to the surface of a ferromagnetic coiled wire at the fluid velocities typical for human arteries A preliminary test of the tPA-nanoparticle conjugates in a pig model suggested that the conjugates may be used for treatment of in-stent thrombosis in coronary arteries (C) 2010 Elsevier Ltd All rights reserved

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