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Cell culture arrays using magnetic force-based cell patterning for dynamic single cell analysis

机译:使用基于磁力的细胞图案进行动态单细胞分析的细胞培养阵列

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In order to understand the behavior of individual cells, single cell analyses have attracted attention since most cell-based assays provide data with values averaged across a large number of cells. Techniques for the manipulation and analysis of single cells are crucial for understanding the behavior of individual cells. In the present study, we have developed single cell culture arrays using magnetic force and a pin holder, which enables the allocation of the magnetically labeled cells on arrays, and have analyzed their dynamics. The pin holder was made from magnetic soft iron and contained more than 6000 pillars on its surface. The pin holder was placed on a magnet to concentrate the magnetic flux density above the pillars. NIH/3T3 fibroblasts that were labeled with magnetite cationic liposomes (MCLs) were seeded into a culture dish, and the dish was placed over the pin holder with the magnet. The magnetically labeled cells were guided on the surface where the pillars were positioned and allocated on the arrays with a high resolution. Single-cell patterning was achieved by adjusting the number of cells seeded, and the target cell was collected by a micromanipulator after removing the pin holder with the magnet. Furthermore, change in the morphology of magnetically patterned cells was analyzed by microscopic observation, and cell spreading on the array was observed with time duration. Magnetic force-based cell patterning on cell culture arrays would be a suitable technique for the analysis of cell behavior in studies of cell-cell variation and cell-cell interactions.
机译:为了了解单个细胞的行为,单细胞分析引起了人们的注意,因为大多数基于细胞的测定法都提供具有大量细胞平均值的数据。操纵和分析单个细胞的技术对于理解单个细胞的行为至关重要。在本研究中,我们已经开发出了使用磁力和销钉固定器的单细胞培养阵列,该阵列能够在阵列上分配磁性标记的细胞,并分析了它们的动力学。销钉固定器由磁性软铁制成,表面上包含6000多个柱子。将销钉固定器放在磁铁上,以将磁通密度集中在柱子上方。将标记有磁铁矿阳离子脂质体(MCL)的NIH / 3T3成纤维细胞接种到培养皿中,并将该皿置于带有磁铁的销钉固定器上。磁性标记的细胞在柱子定位的表面上被引导,并以高分辨率分配在阵列上。通过调节接种的细胞数量来实现单细胞图案化,并在用磁铁除去销钉固定器后,通过微操纵器收集目标细胞。此外,通过显微镜观察分析了磁性图案化细胞的形态变化,并观察了随着时间的推移细胞在阵列上的扩散。在细胞培养阵列上基于磁力的细胞模式将是用于研究细胞-细胞变异和细胞-细胞相互作用的细胞行为的合适技术。

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