Wendt D, Stroebel S, Jakob M, John G T, Martin I
Departments of Surgery and of Research, University Hospital, Basel, Switzerland.
Biorheology. 2006;43(3,4):481-8.
In this work, we assessed whether culture of uniformly seeded chondrocytes under direct perfusion, which supplies the cells with normoxic oxygen levels, can maintain a uniform distribution of viable cells throughout porous scaffolds several milimeters in thickness, and support the development of uniform tissue grafts. An integrated bioreactor system was first developed to streamline the steps of perfusion cell seeding of porous scaffolds and perfusion culture of the cell-seeded scaffolds. Oxygen tensions in perfused constructs were monitored by in-line oxygen sensors incorporated at the construct inlet and outlet. Adult human articular chondrocytes were perfusion-seeded into 4.5 mm thick foam scaffolds at a rate of 1 mm/s. Cell-seeded foams were then either cultured statically in dishes or further cultured under perfusion at a rate of 100 microm/s for 2 weeks. Following perfusion seeding, viable cells were uniformly distributed throughout the foams. Constructs subsequently cultured statically were highly heterogeneous, with cells and matrix concentrated at the construct periphery. In contrast, constructs cultured under perfusion were highly homogeneous, with uniform distributions of cells and matrix. Oxygen tensions of the perfused medium were maintained near normoxic levels (inlet congruent with 20%, outlet > 15%) at all times of culture. We have demonstrated that perfusion culture of cells seeded uniformly within porous scaffolds, at a flow rate maintaining a homogeneous oxygen supply, supports the development of uniform engineering tissue grafts of clinically relevant thicknesses.
在这项研究中,我们评估了在直接灌注条件下培养均匀接种的软骨细胞(该方法可向细胞提供常氧水平的氧气)是否能够使活细胞在厚度达数毫米的多孔支架中保持均匀分布,并支持形成均匀的组织移植物。首先开发了一种集成生物反应器系统,以简化多孔支架灌注细胞接种和接种细胞支架灌注培养的步骤。通过安装在构建体入口和出口处的在线氧传感器监测灌注构建体中的氧张力。将成人关节软骨细胞以1毫米/秒的流速灌注接种到4.5毫米厚的泡沫支架中。然后将接种细胞的泡沫在培养皿中静态培养,或进一步以100微米/秒的流速进行灌注培养2周。灌注接种后,活细胞在整个泡沫中均匀分布。随后静态培养的构建体高度不均一,细胞和基质集中在构建体周边。相比之下,灌注培养的构建体高度均一,细胞和基质分布均匀。在培养的所有时间里,灌注培养基的氧张力始终维持在常氧水平附近(入口约为20%,出口>15%)。我们已经证明,在多孔支架内均匀接种的细胞进行灌注培养,以保持均匀氧气供应的流速,能够支持形成具有临床相关厚度的均匀工程组织移植物。