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Matrix-directed in vitro osteogenesis

机译:基质导向体外骨质发生

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Bone-forming cells first fabricate a highly organized collagen matrix, osteoid, which subsequently mineralizes. A variety of cell culture systems exist for osteogenic cells, yet none of these is optimal for the well-organized formation of a mineralized matrix. We have generated collagen substrates which have different degrees of fibrillar orientation, and have cultured osteogenic cells on these matrices. Osteoblast-rich cells isolated from 16 day chick embryos were cultured in micro-mass culture on the collagen sheets. Von Kossa-stained sections showed that highly oriented collagen matrix started to calcify in 6-7 days, while a random fibrillar matrix did not mineralize even in 21 days. Mineral has been detected only within the collagen matrix with a narrow unmineralized region between the cells and the mineral like osteoid in vivo. The in vitro system described may serve as implantable materials facilitating in situ cell-mediated bone repair ultimately.
机译:骨形成细胞首先制造高度有组织的胶原基质,骨质骨质,随后矿化。对于骨质发生细胞存在各种细胞培养系统,但这些细胞培养系统存在于矿化基质的良好组织形成中,这些细胞培养系统都不是最佳的。我们产生了具有不同程度的纤维状取向的胶原蛋白基质,并在这些基质上具有培养的成骨细胞。从16天鸡胚中分离的富含成骨细胞的细胞在胶原片上的微量质量培养中培养。 Von Kossa染色部分显示,高度取向的胶原基质在6-7天开始钙化,而随机的纤维状基质甚至在21天内也没有矿化。只有在胶原基质内检测到矿物质,在细胞和矿物质中的细胞和矿物质中的矿物质之间具有窄的未结块区域。所描述的体外系统可以用作最终促进原位细胞介导的骨骼修复的可植入材料。

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