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首页> 外文期刊>Nature medicine >Magnetic resonance-guided, real-time targeted delivery and imaging of magnetocapsules immunoprotecting pancreatic islet cells.
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Magnetic resonance-guided, real-time targeted delivery and imaging of magnetocapsules immunoprotecting pancreatic islet cells.

机译:磁共振引导下的磁小球的实时靶向递送和成像,对胰岛细胞具有免疫保护作用。

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摘要

In type I diabetes mellitus, islet transplantation provides a moment-to-moment fine regulation of insulin. Success rates vary widely, however, necessitating suitable methods to monitor islet delivery, engraftment and survival. Here magnetic resonance-trackable magnetocapsules have been used simultaneously to immunoprotect pancreatic beta-cells and to monitor, non-invasively in real-time, hepatic delivery and engraftment by magnetic resonance imaging (MRI). Magnetocapsules were detected as single capsules with an altered magnetic resonance appearance on capsule rupture. Magnetocapsules were functional in vivo because mouse beta-cells restored normal glycemia in streptozotocin-induced diabetic mice and human islets induced sustained C-peptide levels in swine. In this large-animal model, magnetocapsules could be precisely targeted for infusion by using magnetic resonance fluoroscopy, whereas MRI facilitated monitoring of liver engraftment over time. These findings are directly applicable to ongoing improvements in islet cell transplantation for human diabetes, particularly because our magnetocapsules comprise clinically applicable materials.
机译:在I型糖尿病中,胰岛移植可提供瞬间的胰岛素精细调节。但是,成功率差异很大,因此有必要采用适当的方法来监测胰岛的输送,植入和存活。在这里,可磁共振跟踪的磁胶囊已被同时用于免疫保护胰岛β细胞,并通过磁共振成像(MRI)实时无创地监测肝的输送和植入。磁胶囊被检测为单个胶囊,胶囊破裂后磁共振外观发生改变。磁胶囊在体内具有功能,因为小鼠β细胞在链脲佐菌素诱导的糖尿病小鼠中恢复了正常的血糖水平,人胰岛在猪中诱导了持续的C肽水平。在这种大动物模型中,可以通过使用磁共振荧光透视法精确地靶向磁微胶囊进行输注,而MRI可以促进随时间推移监测肝脏的植入情况。这些发现直接适用于人类糖尿病的胰岛细胞移植的不断改进,特别是因为我们的磁胶囊包含临床可用材料。

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