Jafari Javad, Han Xiao-Lian, Palmer Jason, Tran Phong A, O'Connor Andrea J
Department of Biomedical Engineering, Particulate Fluids Processing Centre, The University of Melbourne, Grattan St., Parkville, Victoria 3010, Australia.
O'Brien Institute Department, St. Vincent's Institute, 42 Fitzroy Street, Fitzroy, Victoria 3065, Australia.
ACS Biomater Sci Eng. 2019 May 13;5(5):2532-2542. doi: 10.1021/acsbiomaterials.9b00297. Epub 2019 May 1.
Cell constructs have been utilized as building blocks in tissue engineering to closely mimic the natural tissue and also overcome some of the limitations caused by two-dimensional cultures or using scaffolds. External forces can be used to enhance the cells' adhesion and interaction and thus provide better control over production of these structures compared to methods like cell seeding and migration. In this paper, we demonstrate an efficient method to generate uniform, three-dimensional cell constructs using magnetic forces. This method produced spheroids with higher densities and more symmetrical structures than the commonly used centrifugation method for production of cell spheroids. It was also shown that shape of the cell constructs could be changed readily by using different patterns of magnetic field. The application of magnetic fields to impart forces on the cells enhanced the fusion of these spheroids, which could be used to produce larger and more complicated structures for future tissue engineering applications.
细胞构建体已被用作组织工程的构建模块,以紧密模拟天然组织,并克服二维培养或使用支架所带来的一些局限性。与细胞接种和迁移等方法相比,外力可用于增强细胞的粘附和相互作用,从而更好地控制这些结构的生成。在本文中,我们展示了一种利用磁力生成均匀三维细胞构建体的有效方法。与常用的用于生产细胞球体的离心法相比,该方法产生的球体密度更高,结构更对称。还表明,通过使用不同的磁场模式,可以很容易地改变细胞构建体的形状。施加磁场对细胞施加力增强了这些球体的融合,这可用于为未来的组织工程应用生产更大、更复杂的结构。