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Synthesis of Gadolinium Nanoscale Metal-Organic Framework with Hydrotropes: Manipulation of Particle Size and Magnetic Resonance Imaging Capability

机译:带有水溶助长剂的纳米级金属有机骨架的合成:粒径控制和磁共振成像能力

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Gadolinium metal-organic framework (Gd MOF) nanoparticles are an interesting and novel class of nanomaterials that are being studied as a potential replacement for small molecule positive contrast agents in magnetic resonance imaging (MRI). Despite the tremendous interest in these nanoscale imaging constructs, there are limitations, particularly with respect to controlling the particle size, which need to be overcome before these nanoparticles can be integrated into in vivo applications. In an effort to control the size, shape, and size distribution of Gd MOF nanoparticles, hydrotropes were incorporated into the reverse microemulsion synthesis used to produce these nanoparticles. A study of how hydrotropes influenced the mechanism of formation of reverse micelles offered a great deal of information with respect to the physical properties of the Gd MOF nanoparticles formed. Specifically, this study incorporated the hydrotropes, sodium salicylate (NaSal), S-methyl salicylic acid, and salicylic acid into the reverse microemulsion. Results demonstrated that addition of each of the hydrotropes into the synthesis of Gd MOFs provided a simple route to control the nanoparticle size as a function of hydrotrope concentration. Specifically, Gd MOF nanoparticles synthesized with NaSal showed the best reduction in size distributions in both length and width with percent relative standard deviations being nearly 50% less than nanoparticles produced via the standard route from the literature. Finally, the effect of the size of the Gd MOF nanoparticles with respect to their MRI relaxation properties was evaluated. Initial results indicated a positive correlation between the surface areas of the Gd MOF nanoparticles with the longitudinal relaxivity in MRI. In particular, Gd MOF nanoparticles with an average size of 82 nm with the addition of NaSal, yielded a longitudinal relaxivity value of 83.9 mM~(-1) [Gd~(3+)] sec~(-1), one of the highest reported values compared to other Gd-based nanoparticles in the literature to date.
机译:metal金属有机骨架(Gd MOF)纳米粒子是一类有趣且新颖的纳米材料,正在研究其作为磁共振成像(MRI)中小分子正型造影剂的潜在替代品。尽管对这些纳米级成像构造物有极大的兴趣,但是存在一些限制,特别是在控制粒径方面,这些纳米颗粒可以整合到体内应用之前需要克服这些限制。为了控制Gd MOF纳米颗粒的尺寸,形状和尺寸分布,将水溶助长剂掺入用于生产这些纳米颗粒的反向微乳液合成中。关于水溶助长如何影响反胶束形成机理的研究提供了有关所形成的Gd MOF纳米粒子的物理性质的大量信息。具体而言,这项研究将水溶助长剂,水杨酸钠(NaSal),S-甲基水杨酸和水杨酸纳入了反向微乳液中。结果表明,将每种水溶助长剂添加到Gd MOF的合成中,提供了一条简单的途径来控制纳米颗粒的大小,该大小取决于水溶助长剂的浓度。具体而言,用NaSal合成的Gd MOF纳米颗粒在长度和宽度上都表现出最佳的尺寸减小,相对标准偏差百分比比文献中通过标准途径生产的纳米颗粒少近50%。最后,评估了Gd MOF纳米粒子的尺寸对其MRI弛豫特性的影响。初步结果表明,Gd MOF纳米颗粒的表面积与MRI中的纵向弛豫度呈正相关。特别是,添加NaSal的平均尺寸为82 nm的Gd MOF纳米颗粒的纵向弛豫度值为83.9 mM〜(-1)[Gd〜(3+)] sec〜(-1),其中之一是迄今为止,与文献中其他基于Gd的纳米颗粒相比,报告的数值最高。

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