Hong Ji-Yeon, Kim Yoon Jung, Lee Hee-Woo, Lee Woo-Kul, Ko Jea Seung, Kim Hyun-Man
Laboratory for the Study of Molecular Biointerfaces, Department of Craniomaxillofacial Cell and Developmental Biology, College of Dentistry, South Korea.
Biomaterials. 2003 Aug;24(18):2977-84. doi: 10.1016/s0142-9612(03)00121-2.
The response of osteoblastic cells to a thin film of poorly crystalline calcium phosphate apatite crystals (PCA) was examined in vitro. The PCA thin film was prepared on polystyrene culture dishes using highly metastable calcium phosphate ion solution at low temperatures. The PCA thin film was formed through fusion and transformation of granular calcium phosphate particles, which had initially formed on the surface, into a film of calcium phosphate apatite crystal. The PCA thin film was used for cell culture without additional surface treatment. The osteoblastic cell behaviors including adhesion, proliferation, expression of the marker genes, and calcified matrix formation were examined on the PCA thin film using primary osteoblasts or MC3T3-E1 cells. The cells were well attached and had spread in a slender shape over the PCA thin film. The extent of cell proliferation on the PCA thin film is as much as on the plain dishes. In addition, a much larger number of calcified nodules had formed on the PCA thin film than on the plain dish. The expression of the marker genes such as alkaline phosphatase, osteocalcin, osteopontin, osteonectin was apparent. These results demonstrate that the osteoblasts exhibit a full spectrum of cellular activity including the adequate differentiation on the PCA thin film. Therefore, a PCA thin film can be used as a coating material for biomaterials where the surface is not adequate for inducing the full activity of bone cells.
在体外研究了成骨细胞对结晶度差的磷酸钙磷灰石晶体(PCA)薄膜的反应。使用高度亚稳的磷酸钙离子溶液在低温下在聚苯乙烯培养皿上制备PCA薄膜。PCA薄膜是通过最初在表面形成的颗粒状磷酸钙颗粒融合并转化为磷酸钙磷灰石晶体薄膜而形成的。PCA薄膜未经额外表面处理即用于细胞培养。使用原代成骨细胞或MC3T3-E1细胞在PCA薄膜上检测成骨细胞行为,包括黏附、增殖、标记基因表达和钙化基质形成。细胞在PCA薄膜上附着良好,并以细长形状铺展。PCA薄膜上的细胞增殖程度与普通培养皿上的相同。此外,PCA薄膜上形成的钙化结节比普通培养皿上的多得多。碱性磷酸酶、骨钙素、骨桥蛋白、骨连接蛋白等标记基因的表达明显。这些结果表明,成骨细胞在PCA薄膜上表现出包括充分分化在内的全谱细胞活性。因此,PCA薄膜可作为生物材料的涂层材料,用于表面不足以诱导骨细胞充分活性的情况。