Department of Anatomy and Cell Biology, Technion-Israel Institute of Technology, Haifa, Israel.
J Tissue Eng Regen Med. 2010 Jan;4(1):30-7. doi: 10.1002/term.213.
Biocompatible and osteoconductive cell-scaffold constructs comprise the first and most important step towards successful in vivo bone repair. This study reports on a new cell-scaffold construct composed of gelatin-based hydrogel and ceramic (CaCO(3)/beta-TCP) particles loaded with human MSCs producing a tissue-like construct applied as a transplant for in vivo bone formation. Bone marrow-derived human MSCs were cultured in osteogenic induction medium. 5 x 10(5) (P(2)) cells were loaded on a mixture of hydrogel microspheres and ceramic particles, cultured in a rotating dynamic culture for up to 3 weeks. Both hydrogel microspheres and ceramic particles coalesced together to form a tissue-like construct, shown by histology to contain elongated spindle-like cells forming the new tissue between the individual particles. Cell proliferation and cell viability were confirmed by Alamar blue assay and by staining with CFDA, respectively. FACS analysis conducted before loading the cells, and after formation of the construct, revealed that the profile of cell surface markers remained unchanged throughout the dynamic culture. The osteogenic potential of the cells composing the tissue-like construct was further validated by subcutaneous transplants in athymic nude mice. After 8 weeks a substantial amount of new bone formation was observed in the cell-construct transplants, whereas no bone formation was observed in transplants containing no cells. This new cell construct provides a system for in vivo bone transplants. It can be tailored for a specific size and shape as needed for various transplant sites and for all aspects of regenerative medicine and biomaterial science.
具有生物相容性和骨诱导性的细胞-支架构建体是成功进行体内骨修复的第一步,也是最重要的一步。本研究报告了一种新的细胞-支架构建体,由基于明胶的水凝胶和负载有人骨髓间充质干细胞的陶瓷(CaCO3/β-TCP)颗粒组成,可形成类似于组织的构建体,用作体内骨形成的移植体。骨髓来源的人 MSC 在成骨诱导培养基中培养。将 5×105(P2)个细胞加载到水凝胶微球和陶瓷颗粒的混合物上,在旋转动态培养中培养长达 3 周。水凝胶微球和陶瓷颗粒聚合并形成类似于组织的构建体,组织学显示,在单个颗粒之间形成新组织的伸长的梭形细胞。通过阿尔玛蓝测定法和 CFDA 染色分别证实了细胞增殖和细胞活力。在加载细胞之前和形成构建体之后进行的 FACS 分析表明,整个动态培养过程中细胞表面标志物的特征保持不变。由组织样构建体组成的细胞的成骨潜能通过在无胸腺裸鼠的皮下移植进一步得到验证。8 周后,在细胞-构建体移植中观察到大量新骨形成,而在不含细胞的移植中则没有观察到骨形成。这种新的细胞构建体为体内骨移植提供了一种系统。它可以根据各种移植部位和再生医学及生物材料科学的各个方面的需要进行定制,以适应特定的大小和形状。