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Magnetic Resonance Imaging Contrast Agents Based on Iron Oxide Superparamagnetic Ferrofluids

机译:基于氧化铁超顺磁性铁磁流体的磁共振成像造影剂

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摘要

Novel systems based on suspensions of colloidal magnetic nanoparticles have beeni investigated as perspective superparamagnetic contrast agents (CA) for magnetic resonance imaging (MRI). The nanostructures that we have studied contain surfactant-capped magnetite (Fe3O4) inorganic cores with different controlled sizes, ranging from 5.5 to 12 nm. The' as-synthesized nanostructures are passivated by hydrophobic surfactants and thus are fully" dispersible in nonpolar media. The magnetic nanpcrystals have been transferred into aqueous media by a procedure based on the surface intercalation and coating with an amphiphilic polymeV shell. The MRI efficiency in contrasting images, i.e., the NMR relaxivities r1 and r2, have been compared with Endorem and Sinerem, commercial superparamagnetic MRI contrast agents. We found that our nanostructures exhibit r1 and r2 relaxivities comparable to those of commercial CA over the whole frequency range. The MRI efficiency of our samples was related to their microstructural and magnetic properties. The transverse relaxivity r2, leading the contrast in "negative" superparamagnetic agents, was found to improve as the diameter of the inorganic core is increased. The NMR relaxometry profile confirmed the nature of the physical mechanisms inducing the increase of the nuclear relaxation rates at low (magnetic anisotropy) and high (Curie relaxation) fields.
机译:已经研究了基于胶体磁性纳米粒子悬浮液的新型系统,作为用于磁共振成像(MRI)的透视超顺磁性造影剂(CA)。我们研究的纳米结构包含表面活性剂封端的磁铁矿(Fe3O4)无机核,其可控制的尺寸范围为5.5至12 nm。合成后的纳米结构被疏水性表面活性剂钝化,因此可以完全“分散”在非极性介质中。磁性纳米晶体已经通过基于表面嵌入和两亲性polymeV壳涂层的方法转移到了水性介质中。对比了NMR弛豫度r1和r2的对比图像与商业超顺磁MRI造影剂Endorem和Sinerem的对比,我们发现我们的纳米结构在整个频率范围内都具有与商业CA相当的r1和r2弛豫度。我们的样品的效率与其微观结构和磁性有关,发现横向弛豫r2随无机核直径的增加而改善,从而导致“负”超顺磁性剂形成对比,NMR弛豫谱证实了其性质。在低(ma)下引起核弛豫率增加的物理机制磁各向异性)和高(居里松弛)场。

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