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Optimal Labeling Dose Labeling Time and Magnetic Resonance Imaging Detection Limits of Ultrasmall Superparamagnetic Iron-Oxide Nanoparticle Labeled Mesenchymal Stromal Cells

机译:超小型超顺磁性氧化铁纳米颗粒标记的间质基质细胞的最佳标记剂量标记时间和磁共振成像检测极限

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摘要

Background. Regenerative therapy is an emerging treatment modality. To determine migration and retention of implanted cells, it is crucial to develop noninvasive tracking methods. The aim was to determine ex vivo magnetic resonance imaging (MRI) detection limits of ultrasmall superparamagnetic iron-oxide (USPIO) labeled mesenchymal stromal cells (MSCs). Materials and Methods. 248 gel-phantoms were constructed and scanned on a 1.5T MRI-scanner. Phantoms contained human MSCs preincubated with USPIO nanoparticles for 2, 6, or 21 hours using 5 or 10 μg USPIO/105 MSCs. In addition, porcine hearts were scanned after injection of USPIO labeled MSCs. Results. Using 21 h incubation time and 10 μg USPIO/105 MSCs, labeled cells were clearly separated from unlabeled cells on MRI using 250.000 (P < 0.001), 500.000 (P = 0.007), and 1.000.000 MSCs (P = 0.008). At lower incubation times and doses, neither labeled nor unlabeled cells could be separated. In porcine hearts labeled, but not unlabeled, MSCs were identified on MRI. Conclusions. As few as 250.000 MSCs can be detected on MRI using 21 h incubation time and 10 μg USPIO/105 MSCs. At lower incubation times and doses, several million cells are needed for MRI detection. USPIO labeled cells can be visualized by MRI in porcine myocardial tissue.
机译:背景。再生疗法是一种新兴的治疗方式。为了确定植入细胞的迁移和保留,开发无创追踪方法至关重要。目的是确定超小型超顺磁性氧化铁(USPIO)标记的间充质基质细胞(MSC)的离体磁共振成像(MRI)检测极限。材料和方法。构造了248个凝胶体模,并在1.5T MRI扫描仪上进行了扫描。幻影包含使用5或10μggUSPIO/ 10 5 MSC与USPIO纳米粒子预孵育2、6或21小时的人MSC。另外,在注射USPIO标记的MSC后扫描猪心脏。结果。使用21 h孵育​​时间和10μgUSPIO / 10 5 MSC,在MRI上使用250.000(P <0.001),500.000(P = 0.007)和1.000.000将标记的细胞与未标记的细胞清楚地分开。 MSC(P = 0.008)。在较低的孵育时间和剂量下,无法分离标记的细胞和未标记的细胞。在标记但未标记的猪心脏中,通过MRI鉴定出MSC。结论。使用21µh的孵育时间和10µμg USPIO / 10 5 MSC,在MRI上最多可检测到250.000个MSC。在较低的孵育时间和剂量下,MRI检测需要数百万个细胞。 USPIO标记的细胞可以通过MRI在猪心肌组织中可视化。

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