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Size-isolation of superparamagnetic iron oxide nanoparticles improves MRI MPI and hyperthermia performance

机译:超顺磁性氧化铁纳米粒子的尺寸隔离可改善MRIMPI和热疗性能

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摘要

SPION size-isolation via sequential centrifugation. Schematic overview of the centrifugation protocol to obtain monodispersed SPION with different hydrodynamic diameters from a crude mixture of polydisperse SPION. The polydisperse SPION sample (C) was transferred into 1.5 ml Eppendorf tubes and centrifuged at 14,000 rpm for 20 min. The resulting 1 ml of supernatant was collected (C1). 0.1 ml of the bottom compartment in the Eppendorf tube was resuspended in water and again centrifuged, and the top 1 ml was collected (C2). These steps were repeated multiple times, with optimized centrifugation times and speeds, to obtain three additional fractions of monodisperse SPION samples (C3–C5). The different fractions were subsequently analyzed for magnetic resonance imaging (MRI), magnetic particle imaging (MPI) and magnetic fluid hyperthermia (MFH) performance, and compared to the crude sample (C), to Resovist® and to Sinerem®
机译:通过顺序离心分离SPION大小。从多分散SPION的粗混合物中获得具有不同流体动力学直径的单分散SPION的离心操作流程示意图。将多分散的SPION样品(C)转移到1.5 ml Eppendorf管中,并以14,000 rpm离心20分钟。收集所得的1 ml上清液(C1)。将0.1 ml微量离心管的底部隔室重悬于水中,然后再次离心,并收集顶部1 ml(C2)。将这些步骤重复多次,并以最佳的离心时间和速度进行优化,以获得三份额外的单分散SPION样品(C3-C5)。随后对不同馏分进行磁共振成像(MRI),磁粉成像(MPI)和磁流体热疗(MFH)性能分析,并与粗样品(C),Resovist®和Sinerem®进行比较

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