Division of Bioengineering, School of Chemical and Biomedical Engineering, Nanyang Technological University, 70 Nanyang Drive, N1.3-B2-13, Singapore 637457, Singapore.
Biomaterials. 2012 Nov;33(33):8406-17. doi: 10.1016/j.biomaterials.2012.08.025. Epub 2012 Aug 24.
Large and complex bone defects or voids cannot rely on natural bone healing process for recovery. They require natural or engineered grafts to facilitate osteo-progenitor cell recruitment and development. In this study, we have employed an in vitro macro-sized 3D cell-based platform for investigation and application of osteogenesis. The model is based on a porous construct made of engineered living cartilaginous tissue named living hyaline cartilaginous graft (LhCG). It is scaffold-free and is solely made up of living chondrocytes and their extra cellular matrix (ECM). To evaluate the efficiency of LhCG as a viable platform for bone formation, osteoblast and human mesenchymal stem cell (hMSC) were seeded respectively into LhCG constructs, establishing a co-culture system consisting of osteo-progenitors and chondrocytes. The results showed that LhCG could support both osteoblast and hMSC maturation and differentiation to the osteogenic lineage respectively. Successful osteogenesis is also observed after subcutaneous implantation in nude mice model suggesting that bone formation could be achieved both in vitro and in vivo. Additionally, with exposure to osteogenic medium, LhCG construct without any further cell seeding expressed similar levels of osteogenic phenotype markers as the ones with hMSC seeded on. It suggests the existence of an osteoprogenitor sub-population residing within LhCG chondrocytes. Hence, it is demonstrated that LhCG, as a cartilage template, could serve as a dynamic platform to support osteogenesis and its intrinsic phenotypic flexibility may also permit a wide range of applications for stem cell research and processing.
大而复杂的骨缺损或空洞不能依赖于自然骨愈合过程来恢复。它们需要天然或工程移植物来促进成骨前体细胞的募集和发育。在这项研究中,我们采用了一种体外的大型 3D 细胞培养平台来研究和应用成骨作用。该模型基于一种由工程化的活软骨组织制成的多孔构建体,称为活透明软骨移植物(LhCG)。它是无支架的,仅由活软骨细胞及其细胞外基质(ECM)组成。为了评估 LhCG 作为骨形成的可行平台的效率,将成骨细胞和人间充质干细胞(hMSC)分别接种到 LhCG 构建体中,建立了一个由成骨前体细胞和软骨细胞组成的共培养系统。结果表明,LhCG 可以分别支持成骨细胞和 hMSC 的成熟和向成骨谱系分化。在裸鼠皮下植入模型中也观察到了成功的成骨,这表明在体外和体内都可以实现骨形成。此外,在暴露于成骨培养基后,没有进一步接种细胞的 LhCG 构建体表达出与接种 hMSC 的构建体相似水平的成骨表型标志物。这表明 LhCG 软骨细胞中存在一个成骨前体细胞亚群。因此,证明 LhCG 作为软骨模板可以作为一个动态平台来支持成骨作用,并且其内在的表型灵活性也可能允许干细胞研究和处理的广泛应用。