Tsigkou O, Hench L L, Boccaccini A R, Polak J M, Stevens M M
Tissue Engineering and Regenerative Medicine Centre, Imperial College London, London, United Kingdom.
J Biomed Mater Res A. 2007 Mar 15;80(4):837-51. doi: 10.1002/jbm.a.30910.
This study investigates the cellular response of fetal osteoblasts to bioactive resorbable composite films consisting of a poly-D,L-lactide (PDLLA) matrix and bioactive glass 45S5 Bioglass (BG) particles at three different concentrations (0% (PDLLA), 5% (P/BG5), and 40% (P/BG40)). Using scanning electron microscopy (SEM) we observed that cells were less spread and elongated on PDLLA and P/BG5, whereas cells on P/BG40 were elongated but with multiple protrusions spreading over the BG particles. Vinculin immunostaining revealed similar distribution of focal adhesion contacts on all cells independent of substratum, indicating that all materials permitted cell adhesion. However, when differentiation and maturation of fetal osteoblasts was examined, incorporation of 45S5 BG within the PDLLA matrix was found to significantly (p < 0.05) enhance alkaline phosphatase enzymatic activity and osteocalcin protein synthesis compared to tissue culture polystyrene controls and PDLLA alone. Alizarin red staining indicated extracellular matrix mineralization on both P/BG5 and P/BG40, with significantly more bone nodules formed than on PDLLA. Real time RT-PCR revealed that expression of bone sialoprotein was also affected by the BG containing films compared to controls, whereas expression of Collagen Type I was not influenced. By performing these investigations in the absence of osteogenic factors it appears that the incorporation of BG stimulates osteoblast differentiation and mineralization of the extracellular matrix, demonstrating the osteoinductive capacity of the composite.
本研究调查了胎儿成骨细胞对由聚-D,L-丙交酯(PDLLA)基质和生物活性玻璃45S5生物玻璃(BG)颗粒组成的生物活性可吸收复合膜在三种不同浓度(0%(PDLLA)、5%(P/BG5)和40%(P/BG40))下的细胞反应。使用扫描电子显微镜(SEM),我们观察到细胞在PDLLA和P/BG5上的铺展和伸长较少,而在P/BG40上的细胞伸长但有多个突起覆盖在BG颗粒上。纽蛋白免疫染色显示,所有细胞上的粘着斑接触分布相似,与基质无关,表明所有材料都允许细胞粘附。然而,当检测胎儿成骨细胞的分化和成熟时,发现与组织培养聚苯乙烯对照和单独的PDLLA相比,在PDLLA基质中掺入45S5 BG可显著(p < 0.05)提高碱性磷酸酶活性和骨钙素蛋白合成。茜素红染色表明P/BG5和P/BG40上都有细胞外基质矿化,形成的骨结节明显多于PDLLA。实时RT-PCR显示,与对照相比,含BG的膜也影响骨唾液蛋白的表达,而I型胶原的表达不受影响。通过在没有成骨因子的情况下进行这些研究,似乎掺入BG可刺激成骨细胞分化和细胞外基质矿化,证明了该复合材料的骨诱导能力。