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Clusters of superparamagnetic iron oxide nanoparticles encapsulated in a hydrogel: a particle architecture generating a synergistic enhancement of the T2 relaxation

机译:包裹在水凝胶中的超顺磁性氧化铁纳米粒子簇:产生协同增强T2弛豫的粒子结构

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摘要

Clusters of iron oxide nanoparticles encapsulated in a pH-responsive hydrogel are synthesized and studied for their ability to alter the T2-relaxivity of protons. Encapsulation of the clusters with the hydrophilic coating is shown to enhance the transverse relaxation rate by up to 85% compared to clusters with no coating. With the use of pH-sensitive hydrogel, difficulties inherent in comparing particle samples are eliminated and a clear increase in relaxivity as the coating swells is demonstrated. Agreement with Monte Carlo simulations indicates that the lower diffusivity of water inside the coating and near the particle surface leads to the enhancement. This demonstration of a surface-active particle structure opens new possibilities in using similar structures for nanoparticle-based diagnostics using magnetic resonance imaging.
机译:合成并封装在pH响应水凝胶中的氧化铁纳米粒子簇,并研究其改变质子T2弛豫能力的能力。与没有涂层的团簇相比,用亲水性涂层包封团簇显示出将横向松弛率提高了高达85%。通过使用pH敏感水凝胶,消除了比较颗粒样品所固有的困难,并且随着涂层膨胀,松弛度明显增加。与蒙特卡洛模拟的一致性表明,涂层内部和粒子表面附近的水扩散率较低,导致了这种增强。表面活性颗粒结构的这种展示为使用类似结构进行磁共振成像的基于纳米颗粒的诊断提供了新的可能性。

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