Gevaert Elien, Dollé Laurent, Billiet Thomas, Dubruel Peter, van Grunsven Leo, van Apeldoorn Aart, Cornelissen Ria
Tissue Engineering Group, Ghent University, Ghent, Belgium.
Liver cell biology laboratory, Vrije Universiteit Brussels (VUB), Brussels, Belgium.
PLoS One. 2014 Aug 18;9(8):e105171. doi: 10.1371/journal.pone.0105171. eCollection 2014.
The main challenge in hepatic tissue engineering is the fast dedifferentiation of primary hepatocytes in vitro. One successful approach to maintain hepatocyte phenotype on the longer term is the cultivation of cells as aggregates. This paper demonstrates the use of an agarose micro-well chip for the high throughput generation of hepatocyte aggregates, uniform in size. In our study we observed that aggregation of hepatocytes had a beneficial effect on the expression of certain hepatocyte specific markers. Moreover we observed that the beneficial effect was dependent on the aggregate dimensions, indicating that aggregate parameters should be carefully considered. In a second part of the study, the selected aggregates were immobilized by encapsulation in methacrylamide-modified gelatin. Phenotype evaluations revealed that a stable hepatocyte phenotype could be maintained during 21 days when encapsulated in the hydrogel. In conclusion we have demonstrated the beneficial use of micro-well chips for hepatocyte aggregation and the size-dependent effects on hepatocyte phenotype. We also pointed out that methacrylamide-modified gelatin is suitable for the encapsulation of these aggregates.
肝组织工程的主要挑战在于原代肝细胞在体外快速去分化。一种长期维持肝细胞表型的成功方法是将细胞培养成聚集体。本文展示了使用琼脂糖微孔芯片高通量生成大小均匀的肝细胞聚集体。在我们的研究中,我们观察到肝细胞聚集对某些肝细胞特异性标志物的表达有有益影响。此外,我们观察到这种有益效果取决于聚集体尺寸,这表明应仔细考虑聚集体参数。在研究的第二部分,通过将选定的聚集体封装在甲基丙烯酰胺修饰的明胶中来进行固定。表型评估显示,当封装在水凝胶中时,稳定的肝细胞表型可在21天内维持。总之,我们证明了微孔芯片对肝细胞聚集的有益作用以及对肝细胞表型的尺寸依赖性影响。我们还指出甲基丙烯酰胺修饰的明胶适用于这些聚集体的封装。