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Cell sorting by endocytotic capacity in a microfluidic magnetophoresis device

机译:在微流磁泳装置中通过内吞能力对细胞进行分选

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Magnetically labelled cells are finding a wealth of applications for in vitro analysis as well as in vivo treatments. Sorting of cells into subpopulations based on their magnetite loading is an important step in such procedures. Here, we study the sorting of monocytes and macrophages which internalise nanoparticles to different extents based on their endocytotic capacity. Macrophages featured a high endocytotic activity and were found to internalise between 4 and 60 pg of iron per cell. They were successfully sorted into five subpopulations of narrow iron loading distributions via on-chip free-flow magnetophoresis, thus demonstrating the potential of sorting of relatively similarly loaded cells. Monocytes featured a low endocytotic capacity and took on 1 to 4 pg of iron per cell. Mixtures of monocytes and macrophages were successfully sorted within the free-flow magnetophoresis chip and good purity (>88%), efficacy (>60%) and throughput (from 10 to 100 cells s~(-1)) could be achieved. The introduced method constitutes a viable tool for studies of endocytotic capacity and sorting/selection of cells based on this functionality.
机译:磁性标记的细胞在体外分析以及体内治疗中发现了许多应用。根据其磁铁矿负荷将细胞分类为亚群是此类程序中的重要步骤。在这里,我们研究了单核细胞和巨噬细胞的分类,它们根据内吞能力将纳米粒子内化到不同程度。巨噬细胞具有高的内吞活性,并发现每个细胞内在4到60 pg铁之间的内在化。通过片上自由流动磁泳成功地将它们分类为五个窄铁负荷分布的亚群,从而证明了对相对相似负荷的细胞进行分选的潜力。单核细胞的内吞能力低,每个细胞吸收1至4 pg铁。单核细胞和巨噬细胞的混合物已成功地在自由流动的磁泳芯片中进行了分选,并获得了良好的纯度(> 88%),功效(> 60%)和通量(10至100个细胞s〜(-1))。引入的方法构成了研究该功能的细胞内吞能力和细胞分类/选择的可行工具。

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