San Thian Eng, Ahmad Zeeshan, Huang Jie, Edirisinghe Mohan J, Jayasinghe Suwan N, Ireland Deborah C, Brooks Roger A, Rushton Neil, Bonfield William, Best Serena M
Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, UK.
Biomaterials. 2008 Apr;29(12):1833-43. doi: 10.1016/j.biomaterials.2008.01.007. Epub 2008 Feb 6.
Apatite nanocrystals, which mimic the dimensions of natural bone mineral, were electrosprayed on glass substrates, as a suitable synthetic biomedical material for osteoblast outgrowth was explored. A variety of topographic patterns were deposited and the influence of these designs on osteoblast alignment and cell differentiation was investigated. Patterned cell growth and enhanced cell differentiation were seen. Osteoblasts were also cultured on apatite nanocrystals chemically modified with either carbonate or silicon ions. Enhanced cell proliferation and early formation of mineral nodules were observed on apatite nanocrystals with silicon addition. This work highlights the importance of the combined effects of surface topography and surface chemistry in the guidance of cell behaviour.
模仿天然骨矿物质尺寸的磷灰石纳米晶体被电喷雾到玻璃基板上,因为人们探索了一种适合成骨细胞生长的合成生物医学材料。沉积了各种形貌图案,并研究了这些设计对成骨细胞排列和细胞分化的影响。观察到了图案化的细胞生长和增强的细胞分化。成骨细胞也在经碳酸盐或硅离子化学修饰的磷灰石纳米晶体上培养。在添加硅的磷灰石纳米晶体上观察到细胞增殖增强和矿化结节的早期形成。这项工作突出了表面形貌和表面化学的联合效应在引导细胞行为方面的重要性。