Tissue Engineering Laboratory, Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong Special Administrative Region, China.
Biomaterials. 2011 Feb;32(6):1526-35. doi: 10.1016/j.biomaterials.2010.10.021. Epub 2010 Nov 18.
Creating biological interfaces between mechanically dissimilar tissues is a key challenge in complex tissue engineering. An osteochondral interface is essential in preventing mechanical failure and maintaining normal function of cartilage. Despite tremendous efforts in developing osteochondral plugs, formation of the osteochondral interface with proper zonal organization has not yet been reported. Here, we present a mesenchymal stem cell-collagen microsphere-based approach for complex tissue engineering and demonstrate in vitro formation of a stem cell-derived osteochondral interface with calcified cartilage interface separating a non-calcified cartilage layer and an underlying bone layer. Cells at the interface region are hypertrophic chondrocytes while the extracellular matrix in this region contains collagen type II and X, calcium deposits and vertically running fibers. The simultaneous presence of appropriate medium and configuration during co-culture is necessary for the interface formation.
在机械性能差异较大的组织之间构建生物界面是复杂组织工程的关键挑战。在防止软骨机械失效和维持正常功能方面,形成一个完整的 骺软骨界面至关重要。尽管在开发 骺软骨 插件方面付出了巨大努力,但具有适当分区组织的 骺软骨界面的形成尚未见报道。在这里,我们提出了一种基于间充质干细胞-胶原微球的复杂组织工程方法,并证明了体外形成由干细胞衍生的 骺软骨界面,其钙化软骨界面将非钙化软骨层和下面的骨层分隔开。在界面区域的细胞是肥大软骨细胞,而该区域的细胞外基质含有 II 型和 X 型胶原、钙沉积和垂直运行的纤维。在共培养过程中,适当的培养基和结构的同时存在是界面形成所必需的。