Department of Cariology, Restorative Sciences and Endodontics, Dental School, University of Michigan, Ann Arbor, MI 48109, USA.
Biomaterials. 2012 Jul;33(20):5036-46. doi: 10.1016/j.biomaterials.2012.03.050. Epub 2012 Apr 6.
In this study, the effect of ordered rod-like FA coatings of metal discs on adipose-derived stem cell (ASC)'s growth, differentiation and mineralization was studied in vitro; and their mineral inductive effects in vivo. After 3 and 7 days, the cell number on the metal surfaces was significantly higher than those on the ordered and disordered FA surfaces. However, after 4 weeks much greater amounts of mineral formation was induced on the two FA surfaces with and even without osteogenesis induction. The osteogenic profiles showed the up regulation of a set of pro-osteogenic transcripts and bone mineralization phenotypic markers when the ASCs were grown on FA surfaces compared to metal surfaces at 7 and 21 days. In addition to BMP and TGFβ signaling pathways, EGF and FGF pathways also appeared to be involved in ASC differentiation and mineralization. In vivo studies showed accelerated and enhanced mineralized tissue formation integrated within ordered FA coatings. After 5 weeks, over 80% of the ordered FA coating was integrated with a mineralized tissue layer covering the implants. Both the intrinsic properties of the FA crystals and the topography of the FA coating appeared to dominate the cell differentiation and mineralization process.
本研究体外考察了有序棒状 FA 涂层金属盘对脂肪源性干细胞 (ASC) 生长、分化和矿化的影响及其体内的矿化诱导作用。培养 3 天和 7 天后,金属表面上的细胞数量明显高于有序和无序 FA 表面上的细胞数量。然而,4 周后,在有和没有成骨诱导的情况下,两种 FA 表面上诱导的矿化量更大。成骨分析显示,与金属表面相比,当 ASC 在 FA 表面上生长时,在 7 天和 21 天时有一组促成骨转录本和骨矿化表型标志物上调。除了 BMP 和 TGFβ 信号通路外,EGF 和 FGF 通路似乎也参与了 ASC 的分化和矿化。体内研究表明,有序 FA 涂层内加速和增强了矿化组织的形成。培养 5 周后,超过 80%的有序 FA 涂层与覆盖植入物的矿化组织层整合在一起。FA 晶体的固有特性和 FA 涂层的形貌似乎都主导着细胞分化和矿化过程。