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首页> 外文期刊>Biomaterials >Monodisperse magnetite nanoparticle tracers for in vivo magnetic particle imaging
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Monodisperse magnetite nanoparticle tracers for in vivo magnetic particle imaging

机译:用于体内磁性粒子成像的单分散磁铁矿纳米粒子示踪剂

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摘要

Magnetic Particle Imaging (MPI) is a new biomedical imaging modality that produces real-time, high-resolution tomographic images of superparamagnetic iron oxide (SPIO) nanoparticle tracer distributions. In this study, we synthesized monodisperse tracers for enhanced MPI performance and investigated both, their blood clearance time using a 25 kHz magnetic particle spectrometer (MPS), and biodistribution using a combination of quantitative T2-weighted MRI and tissue histology. In vitro and in vivo MPI performance of our magnetic nanoparticle tracers (MNTs), subject to biological constraints, were compared to commercially available SPIOs (Resovist). Monodisperse MNTs showed a 2-fold greater signal per unit mass, and 20% better spatial resolution. In vitro evaluation of tracers showed that MPI performance of our MNTs is preserved in blood, serum-rich cell-culture medium and gel; thus independent of changes in hydrodynamic volume and fluid viscosity - a critical prerequisite for in vivo MPI. In a rodent model, our MNTs circulated for 15 min - 3× longer than Resovist - and supported our in vitro evaluation that MPI signal is preserved in the physiological environment. Furthermore, MRI and histology analysis showed that MNTs distribute in the reticuloendothelial system (RES) in a manner similar to clinically approved SPIO agents. MNTs demonstrating long-circulation times and optimized MPI performance show potential as angiography tracers and blood-pool agents for the emerging MPI imaging modality.
机译:磁性粒子成像(MPI)是一种新的生物医学成像方式,可产生超顺磁性氧化铁(SPIO)纳米粒子示踪剂分布的实时高分辨率断层图像。在这项研究中,我们合成了用于增强MPI性能的单分散示踪剂,并研究了使用25 kHz磁粒子光谱仪(MPS)的血液清除时间,以及使用定量T2加权MRI和组织组织学相结合的生物分布。将我们的磁性纳米粒子示踪剂(MNT)在体外和体内受生物限制的MPI性能与市售SPIO(Resovist)进行了比较。单分散MNT显示每单位质量的信号增强2倍,空间分辨率提高20%。示踪剂的体外评估表明,我们的MNT的MPI性能在血液,富含血清的细胞培养基和凝胶中得以保留;因此,不受流体动力体积和流体粘度变化的影响-体内MPI的关键前提。在啮齿动物模型中,我们的MNT循环了15分钟-比Resovist长了3倍-并支持了我们的体外评估,即MPI信号在生理环境中得以保留。此外,MRI和组织学分析表明MNT以与临床批准的SPIO药物相似的方式分布在网状内皮系统(RES)中。表现出长循环时间和优化的MPI性能的MNT作为新兴的MPI成像方式,具有作为血管造影剂和血池药物的潜力。

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