David H. Koch Center, The University of Texas M.D. Anderson Cancer Center, Houston, Texas 77030, USA.
Nat Nanotechnol. 2010 Apr;5(4):291-6. doi: 10.1038/nnano.2010.23. Epub 2010 Mar 14.
Cell culture is an essential tool in drug discovery, tissue engineering and stem cell research. Conventional tissue culture produces two-dimensional cell growth with gene expression, signalling and morphology that can be different from those found in vivo, and this compromises its clinical relevance. Here, we report a three-dimensional tissue culture based on magnetic levitation of cells in the presence of a hydrogel consisting of gold, magnetic iron oxide nanoparticles and filamentous bacteriophage. By spatially controlling the magnetic field, the geometry of the cell mass can be manipulated, and multicellular clustering of different cell types in co-culture can be achieved. Magnetically levitated human glioblastoma cells showed similar protein expression profiles to those observed in human tumour xenografts. Taken together, these results indicate that levitated three-dimensional culture with magnetized phage-based hydrogels more closely recapitulates in vivo protein expression and may be more feasible for long-term multicellular studies.
细胞培养是药物发现、组织工程和干细胞研究中的重要工具。传统的组织培养产生二维的细胞生长,其基因表达、信号转导和形态与体内的情况不同,这影响了其临床相关性。在这里,我们报告了一种基于磁悬浮的三维组织培养方法,该方法利用含有金、磁性氧化铁纳米粒子和丝状噬菌体的水凝胶。通过空间控制磁场,可以操纵细胞团的几何形状,并实现不同细胞类型在共培养中的多细胞聚集。磁悬浮的人胶质母细胞瘤细胞表现出与在人肿瘤异种移植物中观察到的相似的蛋白质表达谱。总之,这些结果表明,基于带有磁性噬菌体的水凝胶的悬浮三维培养更能重现体内的蛋白质表达,并且可能更适合长期的多细胞研究。