Department of Endodontics, Prosthodontics and Operative Dentistry, University of Maryland Dental School, Baltimore, 21201, USA.
Acta Biomater. 2010 Oct;6(10):4118-26. doi: 10.1016/j.actbio.2010.04.029. Epub 2010 May 6.
Due to its injectability and excellent osteoconductivity, calcium phosphate cement (CPC) is highly promising for orthopedic applications. However, a literature search revealed no report on human bone marrow mesenchymal stem cell (hBMSC) encapsulation in CPC for bone tissue engineering. The aim of this study was to encapsulate hBMSCs in alginate hydrogel beads and then incorporate them into CPC, CPC-chitosan and CPC-chitosan-fiber scaffolds. Chitosan and degradable fibers were used to mechanically reinforce the scaffolds. After 21 days, that the percentage of live cells and the cell density of hBMSCs inside CPC-based constructs matched those in alginate without CPC, indicating that the CPC setting reaction did not harm the hBMSCs. Alkaline phosphate activity increased by 8-fold after 14 days. Mineral staining, scanning electron microscopy and X-ray diffraction confirmed that apatitic mineral was deposited by the cells. The amount of hBMSC-synthesized mineral in CPC-chitosan-fiber matched that in CPC without chitosan and fibers. Hence, adding chitosan and fibers, which reinforced the CPC, did not compromise hBMSC osteodifferentiation and mineral synthesis. In conclusion, hBMSCs were encapsulated in CPC and CPC-chitosan-fiber scaffolds for the first time. The encapsulated cells remained viable, osteodifferentiated and synthesized bone minerals. These self-setting, hBMSC-encapsulating CPC-based constructs may be promising for bone tissue engineering applications.
由于其可注射性和出色的骨传导性,磷酸钙水泥 (CPC) 在骨科应用中具有广阔的应用前景。然而,文献检索未发现 CPC 中封装人骨髓间充质干细胞 (hBMSC) 用于骨组织工程的报道。本研究的目的是将 hBMSCs 封装在藻酸盐水凝胶珠中,然后将其掺入 CPC、CPC-壳聚糖和 CPC-壳聚糖纤维支架中。壳聚糖和可降解纤维用于机械增强支架。21 天后,CPC 基构建体中活细胞的百分比和 hBMSCs 的细胞密度与没有 CPC 的藻酸盐中的细胞密度相匹配,表明 CPC 的凝固反应没有损害 hBMSCs。14 天后,碱性磷酸酶活性增加了 8 倍。矿物染色、扫描电子显微镜和 X 射线衍射证实细胞沉积了磷灰石矿物。CPC-壳聚糖纤维中 hBMSC 合成的矿物量与没有壳聚糖和纤维的 CPC 相当。因此,添加增强 CPC 的壳聚糖和纤维并没有影响 hBMSC 的成骨分化和矿化合成。总之,首次将 hBMSCs 封装在 CPC 和 CPC-壳聚糖纤维支架中。封装的细胞保持存活、成骨分化并合成骨矿物质。这些自凝固的、封装 hBMSC 的 CPC 基构建体可能在骨组织工程应用中具有广阔的应用前景。