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Magnetically Assisted Control of Stem Cells Applied in 2D 3D and In Situ Models of Cell Migration

机译:2D3D和原位细胞迁移模型中应用干细胞的磁辅助控制

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摘要

The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and monitor transplanted stem cell grafts at treated sites. Iron oxide particles, traditionally used in vivo for magnetic resonance imaging (MRI), have been shown to also represent a safe and efficient in vitro labelling agent for mesenchymal stem cells (MSCs). Here, stem cells were labelled with magnetic particles, and their resulting response to magnetic forces was studied using 2D and 3D models. Labelled cells exhibited magnetic responsiveness, which promoted localised retention and patterned cell seeding when exposed to magnet arrangements in vitro. Directed migration was observed in 2D culture when adherent cells were exposed to a magnetic field, and also when cells were seeded into a 3D gel. Finally, a model of cell injection into the rodent leg was used to test the enhanced localised retention of labelled stem cells when applying magnetic forces, using whole body imaging to confirm the potential use of magnetic particles in strategies seeking to better control cell distribution for in vivo cell delivery.
机译:细胞疗法的成功很大程度上取决于在治疗部位精确递送和监测移植的干细胞移植物的能力。传统上在体内用于磁共振成像(MRI)的氧化铁颗粒也显示出代表间充质干细胞(MSC)的安全,有效的体外标记剂。在这里,干细胞被磁性颗粒标记,并使用2D和3D模型研究了它们对磁力的响应。标记的细胞表现出磁响应性,当在体外暴露于磁体排列时,可促进局部保留和图案化的细胞播种。当贴壁细胞暴露于磁场中,以及将细胞接种到3D凝胶中时,在2D培养中观察到定向迁移。最后,使用一种向啮齿动物腿中注射细胞的模型来测试施加磁力时标记干细胞的增强的局部保留性,并使用全身成像来确认磁性颗粒在寻求更好地控制肝细胞分布的策略中的潜在用途。体内细胞递送。

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