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Comparative study of ferrofluids based on dextran-coated iron oxide and metal nanoparticles for contrast agents in magnetic resonance imaging

机译:葡聚糖包覆的氧化铁和金属纳米粒子在磁共振成像中用作造影剂的铁磁流体的比较研究

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摘要

Colloidal suspensions of iron oxide and metal iron nanoparticles prepared by laser pyrolysis have been obtained by coating the particles with dextran in an aqueous media giving rise to biocompatible ferrofluids. The structural characteristics of the powders and the size of the particles and the aggregates in the colloidal suspensions have been analysed and correlated with the magnetic properties of both solids and fluids. For the first time, to our knowledge, a stable ferrofluid based on metal particles (<10 nm) has been obtained with aggregate sizes of approx 50 nm. In comparison to iron oxide based products, this material exhibits higher saturation magnetization (45 emu g~(-1)) and susceptibilities (4000 emu/g T). In addition, the nuclear magnetic resonance response of the ferrofluids has been measured in order to gain information about the influence of the crystallochemical and magnetic properties on their relaxation behaviour. The main parameter affected by the presence of the magnetic nanoparticles is the transversal relaxation time T_2 and the corresponding relaxivity R_2 value that is of the order of 400 (mmol/l)~(-1)s~(-1). It has been shown that R_2 value increases not only by using iron metal instead of iron oxide but also by increasing the crystal size of the particles. From this study an evaluation of the possibilities of these materials as contrast agents for magnetic resonance imaging has been made.
机译:通过在水介质中用葡聚糖包被颗粒以产生生物相容性铁磁流体,获得了通过激光热解制备的氧化铁和金属铁纳米颗粒的胶体悬浮液。已经分析了粉末的结构特征以及胶体悬浮液中的颗粒和聚集体的尺寸,并将其与固体和流体的磁性能相关联。据我们所知,这是第一次获得了基于金属粒子(<10 nm)的稳定铁磁流体,其聚集体尺寸约为50 nm。与基于氧化铁的产品相比,该材料具有更高的饱和磁化强度(45 emu g(-1))和磁化率(4000 emu / g T)。另外,已经测量了铁磁流体的核磁共振响应,以便获得有关结晶化学和磁性能对其弛豫行为的影响的信息。受磁性纳米粒子的存在影响的主要参数是横向弛豫时间T_2和相应的弛豫度R_2值,其约为400(mmol / l)〜(-1)s〜(-1)。已经表明,R_2值不仅通过使用铁金属代替氧化铁而增加,而且通过增加颗粒的晶体尺寸而增加。通过这项研究,对这些材料作为磁共振成像造影剂的可能性进行了评估。

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