UCL Institute for Liver and Digestive Health, Royal Free Hospital. University College London, London, UK.
Stem Cells and Regenerative Medicine Section, Developmental Biology and Cancer Programme, UCL Great Ormond Street Institute for Child Health. University College London, London, UK.
Sci Rep. 2017 Jul 17;7(1):5534. doi: 10.1038/s41598-017-05134-1.
The development of human liver scaffolds retaining their 3-dimensional structure and extra-cellular matrix (ECM) composition is essential for the advancement of liver tissue engineering. We report the design and validation of a new methodology for the rapid and accurate production of human acellular liver tissue cubes (ALTCs) using normal liver tissue unsuitable for transplantation. The application of high shear stress is a key methodological determinant accelerating the process of tissue decellularization while maintaining ECM protein composition, 3D-architecture and physico-chemical properties of the native tissue. ALTCs were engineered with human parenchymal and non-parenchymal liver cell lines (HepG2 and LX2 cells, respectively), human umbilical vein endothelial cells (HUVEC), as well as primary human hepatocytes and hepatic stellate cells. Both parenchymal and non-parenchymal liver cells grown in ALTCs exhibited markedly different gene expression when compared to standard 2D cell cultures. Remarkably, HUVEC cells naturally migrated in the ECM scaffold and spontaneously repopulated the lining of decellularized vessels. The metabolic function and protein synthesis of engineered liver scaffolds with human primary hepatocytes reseeded under dynamic conditions were maintained. These results provide a solid basis for the establishment of effective protocols aimed at recreating human liver tissue in vitro.
保留三维结构和细胞外基质(ECM)组成的人肝支架的开发对于推进肝组织工程至关重要。我们报告了一种使用不适合移植的正常肝组织快速准确生产人去细胞肝组织立方块(ALTC)的新方法的设计和验证。高剪切应力的应用是加速组织去细胞化过程的关键方法学决定因素,同时保持 ECM 蛋白组成、天然组织的 3D 结构和物理化学特性。用人实质和非实质肝细胞系(HepG2 和 LX2 细胞)、人脐静脉内皮细胞(HUVEC)以及原代人肝细胞和肝星状细胞工程设计了 ALTC。与标准 2D 细胞培养相比,在 ALTC 中生长的实质和非实质肝细胞的基因表达明显不同。值得注意的是,HUVEC 细胞自然迁移到 ECM 支架中,并自发地重新填充去细胞化血管的内层。在动态条件下重新接种人原代肝细胞的工程化肝支架的代谢功能和蛋白质合成得以维持。这些结果为建立旨在体外重现人肝组织的有效方案提供了坚实的基础。