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The effect of an external magnetic force on cell adhesion and proliferation of magnetically labeled mesenchymal stem cells

机译:外部磁力对磁性标记的间充质干细胞的细胞黏附和增殖的影响

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BackgroundAs the strategy for tissue regeneration using mesenchymal stem cells (MSCs) for transplantation, it is necessary that MSCs be accumulated and kept in the target area. To accumulate MSCs effectively, we developed a novel technique for a magnetic targeting system with magnetically labeled MSCs and an external magnetic force. In this study, we examined the effect of an external magnetic force on magnetically labeled MSCs in terms of cell adhesion and proliferation. MethodsMagnetically labeled MSCs were plated at the bottom of an insert under the influence of an external magnetic force for 1 hour. Then the inserts were turned upside down for between 1 and 24 hours, and the number of MSCs which had fallen from the membrane was counted. The gene expression of MSCs affected magnetic force was analyzed with microarray. In the control group, the same procedure was done without the external magnetic force. ResultsAt 1 hour after the inserts were turned upside down, the average number of fallen MSCs in the magnetic group was significantly smaller than that in the control group, indicating enhanced cell adhesion. At 24 hours, the average number of fallen MSCs in the magnetic group was also significantly smaller than that in control group. In the magnetic group, integrin alpha2, alpha6, beta3 BP, intercellular adhesion molecule-2 (ICAM-2), platelet/endothelial cell adhesion molecule-1 (PECAM-1) were upregulated. At 1, 2 and 3 weeks after incubation, there was no statistical significant difference in the numbers of MSCs in the magnetic group and control group. ConclusionsThe results indicate that an external magnetic force for 1 hour enhances cell adhesion of MSCs. Moreover, there is no difference in cell proliferation after using an external magnetic force on magnetically labeled MSCs.
机译:背景技术作为使用间充质干细胞(MSC)进行移植的组织再生策略,有必要将MSC积累并保存在目标区域。为了有效地积累MSC,我们为带有磁性标记的MSC和外部磁力的磁性靶向系统开发了一种新技术。在这项研究中,我们从细胞粘附和增殖方面研究了外部磁力对磁性标记MSC的影响。方法将磁性标记的MSC在外部磁力的作用下铺在插入物的底部1小时。然后将插入物倒置1至24小时,并计算从膜上掉落的MSC的数量。用微阵列分析了受磁力影响的MSCs的基因表达。在对照组中,在没有外部磁力的情况下进行了相同的程序。结果将插入物倒置后1小时,磁性组的MSC下落平均数显着小于对照组,表明细胞粘附增强。在24小时时,磁性组中下落的MSC的平均数目也显着小于对照组中的。在磁性组中,整联蛋白α2,α6,β3BP,细胞间粘附分子2(ICAM-2),血小板/内皮细胞粘附分子-1(PECAM-1)被上调。孵育后1、2和3周,磁性组和对照组的MSC数量均无统计学差异。结论结果表明,外部磁力作用1小时可增强MSCs的细胞粘附。此外,在磁性标记的MSC上使用外部磁力后,细胞增殖没有差异。

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