Biomedical Engineering Group, Centre for Gastroenterology and Nutrition, Division of Medicine, University College London (UCL), London WC1E 6DD, UK.
J R Soc Interface. 2012 Nov 7;9(76):3008-16. doi: 10.1098/rsif.2012.0316. Epub 2012 Jun 13.
Delivery of cells into tubular tissue constructs with large diameters poses significant spatial and temporal challenges. This study describes preliminary findings for a novel process for rapid and uniform seeding of cells onto the luminal surface of large tubular constructs. Fibroblasts, tagged with superparamagnetic iron oxide nanoparticles (SPION), were directed onto the luminal surface of tubular constructs by a magnetic field generated by a k4-type Halbach cylinder device. The spatial distribution of attached cells, as measured by the mean number of cells, was compared with a conventional, dynamic, rotational cell-delivery technique. Cell loading onto the constructs was measured by microscopy and magnetic resonance imaging. The different seeding techniques employed had a significant effect on the spatial distribution of the cells (p < 0.0001). The number of attached cells at defined positions within the same construct was significantly different for the dynamic rotation technique (p < 0.05). In contrast, no significant differences in the number of cells attached to the luminal surface were found between the defined positions on the construct loaded with the Halbach cylinder. The technique described overcomes limitations associated with existing cell-delivery techniques and is amenable to a variety of tubular organs where rapid loading and uniform distribution of cells for therapeutic applications are required.
将细胞递送到具有大直径的管状组织构建体中存在显著的空间和时间挑战。本研究描述了一种新颖的方法,用于快速且均匀地将细胞接种到大型管状构建体的管腔表面上。带有超顺磁氧化铁纳米颗粒(SPION)的成纤维细胞,通过由 k4 型 Halbach 圆柱装置产生的磁场被引导到管状构建体的管腔表面上。通过显微镜和磁共振成像测量了细胞在构建体上的加载量。附着细胞的空间分布,如通过平均细胞数来衡量,与传统的动态旋转细胞递送技术进行了比较。所采用的不同接种技术对细胞的空间分布有显著影响(p < 0.0001)。在同一构建体的相同位置处附着的细胞数量对于动态旋转技术有显著差异(p < 0.05)。相比之下,在使用 Halbach 圆柱装载的构建体上的不同位置处附着的细胞数量没有显著差异。所描述的技术克服了与现有细胞递送技术相关的局限性,适用于各种管状器官,在这些器官中需要快速加载和均匀分布细胞以进行治疗应用。