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Ferumoxytol Labeling of Human Neural Progenitor Cells for Diagnostic Cellular Tracking in the Porcine Spinal Cord with Magnetic Resonance Imaging

机译:人类神经祖细胞的Ferumoxytol标记用于磁共振成像诊断猪脊髓中的细胞追踪

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摘要

We report on the diagnostic capability of magnetic resonance imaging (MRI)‐based tracking of ferumoxytol‐labeled human neural progenitor cells (hNPCs) transplanted into the porcine spinal cord. hNPCs prelabeled with two doses of ferumoxytol nanoparticles (hNPC‐FLow and hNPC‐FHigh) were injected into the ventral horn of the spinal cord in healthy minipigs. Ferumoxytol‐labeled grafts were tracked in vivo up to 105 days after transplantation with MRI. Injection accuracy was assessed in vivo at day 14 and was predictive of “on” or “off” target cell graft location assessed by histology. No difference in long‐term cell survival, assessed by quantitative stereology, was observed among hNPC‐FLow, hNPC‐FHigh, or control grafts. Histological iron colocalized with MRI signal and engrafted human nuclei. Furthermore, the ferumoxytol‐labeled cells retained nanoparticles and function in vivo. This approach represents an important leap forward toward facilitating translation of cell‐tracking technologies to clinical trials by providing a method of assessing transplantation accuracy, delivered dose, and potentially cell survival. Stem Cells Translational Medicine 2017;6:139–150
机译:我们报告了基于磁共振成像(MRI)的ferumoxytol标记的人类神经祖细胞(hNPC)移植到猪脊髓中的诊断能力。将预先标记了两剂阿魏酸纳米颗粒(hNPC-F Low 和hNPC-F High )的hNPCs注入健康小型猪的脊髓腹角。用MRI移植后长达105天的体内追踪Ferumoxytol标记的移植物。在第14天在体内评估注射准确度,并预测通过组织学评估的“上”或“下”靶细胞移植物的位置。 hNPC-F Low ,hNPC-F High 或对照移植物之间通过定量立体学评估的长期细胞存活率没有差异。组织学铁与MRI信号共定位并植入了人类核。此外,阿魏双酚标记的细胞保留了纳米颗粒并在体内起作用。通过提供一种评估移植准确性,递送剂量和潜在细胞存活率的方法,该方法代表了朝着促进将细胞跟踪技术转化为临床试验迈出的重要一步。干细胞转化医学2017; 6:139–150

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