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早期成骨细胞对骨科植入物的反应:生物活性陶瓷涂层表面粗糙度与化学性质的协同作用

Early osteoblast responses to orthopedic implants: Synergy of surface roughness and chemistry of bioactive ceramic coating.

作者信息

Reid Robert, Hall Benika, Marriott Ian, El-Ghannam Ahmed

机构信息

Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina, 27708.

出版信息

J Biomed Mater Res A. 2015 Jun;103(6):1961-73. doi: 10.1002/jbm.a.35326. Epub 2014 Sep 24.

Abstract

Pro-osteogenic stimulation of bone cells by bioactive ceramic-coated orthopedic implants is influenced by both surface roughness and material chemistry; however, their concomitant impact on osteoblast behavior is not well understood. The aim of this study is to investigate the effects of nano-scale roughness and chemistry of bioactive silica-calcium phosphate nanocomposite (SCPC50) coated Ti-6Al-4V on modulating early bone cell responses. Cell attachment was higher on SCPC50-coated substrates compared to the uncoated controls; however, cells on the uncoated substrate exhibited greater spreading and superior quality of F-actin filaments than cells on the SCPC50-coated substrates. The poor F-actin filament organization on SCPC50-coated substrates is thought to be due to the enhanced calcium uptake by the ceramic surface. Dissolution analyses showed that an increase in surface roughness was accompanied by increased calcium uptake, and increased phosphorous and silicon release, all of which appear to interfere with F-actin assembly and osteoblast morphology. Moreover, cell attachment onto the SCPC50-coated substrates correlated with the known adsorption of fibronectin, and was independent of surface roughness. High-throughput genome sequencing showed enhanced expression of extracellular matrix and cell differentiation related genes. These results demonstrate a synergistic relationship between bioactive ceramic coating roughness and material chemistry resulting in a phenotype that leads to early osteoblast differentiation.

摘要

生物活性陶瓷涂层骨科植入物对骨细胞的促骨生成刺激受表面粗糙度和材料化学性质的影响;然而,它们对成骨细胞行为的协同影响尚未得到充分理解。本研究的目的是调查生物活性硅-磷酸钙纳米复合材料(SCPC50)涂层的Ti-6Al-4V的纳米级粗糙度和化学性质对调节早期骨细胞反应的影响。与未涂层的对照相比,在SCPC50涂层的底物上细胞附着更高;然而,未涂层底物上的细胞比SCPC50涂层底物上的细胞表现出更大的铺展和更好的F-肌动蛋白丝质量。SCPC50涂层底物上F-肌动蛋白丝组织不佳被认为是由于陶瓷表面钙摄取增加所致。溶解分析表明,表面粗糙度增加伴随着钙摄取增加、磷和硅释放增加,所有这些似乎都干扰F-肌动蛋白组装和成骨细胞形态。此外,细胞附着在SCPC50涂层底物上与已知的纤连蛋白吸附相关,且与表面粗糙度无关。高通量基因组测序显示细胞外基质和细胞分化相关基因的表达增强。这些结果证明了生物活性陶瓷涂层粗糙度与材料化学性质之间的协同关系,导致一种导致早期成骨细胞分化的表型。

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