Lewis Natasha S, Lewis Emily El, Mullin Margaret, Wheadon Helen, Dalby Matthew J, Berry Catherine C
Centre for Cell Engineering, Institute of Molecular, Cell and Systems Biology (IMCSB), The University of Glasgow, Glasgow, UK.
Electron Microscopy Unit, The University of Glasgow, Glasgow, UK.
J Tissue Eng. 2017 Apr 24;8:2041731417704428. doi: 10.1177/2041731417704428. eCollection 2017 Jan-Dec.
Multicellular spheroids are an established system for three-dimensional cell culture. Spheroids are typically generated using hanging drop or non-adherent culture; however, an emerging technique is to use magnetic levitation. Herein, mesenchymal stem cell spheroids were generated using magnetic nanoparticles and subsequently cultured within a type I collagen gel, with a view towards developing a bone marrow niche environment. Cells were loaded with magnetic nanoparticles, and suspended beneath an external magnet, inducing self-assembly of multicellular spheroids. Cells in spheroids were viable and compared to corresponding monolayer controls, maintained stem cell phenotype and were quiescent. Interestingly, core spheroid necrosis was not observed, even with increasing spheroid size, in contrast to other commonly used spheroid systems. This mesenchymal stem cell spheroid culture presents a potential platform for modelling in vitro bone marrow stem cell niches, elucidating interactions between cells, as well as a useful model for drug delivery studies.
多细胞球体是一种成熟的三维细胞培养体系。球体通常通过悬滴法或非贴壁培养法生成;然而,一种新兴技术是使用磁悬浮。在此,使用磁性纳米颗粒生成间充质干细胞球体,随后在I型胶原凝胶中培养,旨在构建骨髓微环境。细胞加载磁性纳米颗粒后,悬浮于外部磁体下方,诱导多细胞球体的自组装。球体中的细胞具有活力,与相应的单层对照相比,保持干细胞表型且处于静止状态。有趣的是,与其他常用的球体系统不同,即使球体尺寸增加,也未观察到球体核心坏死。这种间充质干细胞球体培养为体外模拟骨髓干细胞微环境、阐明细胞间相互作用提供了一个潜在平台,也是药物递送研究的有用模型。