首页> 外文期刊>Acta biomaterialia >Electrically polarized HAp-coated Ti: in vitro bone cell-material interactions.
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Electrically polarized HAp-coated Ti: in vitro bone cell-material interactions.

机译:电极化Hap涂层Ti:体外骨细胞 - 材料相互作用。

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摘要

Electrically polarized bulk sintered hydroxyapatite (HAp) compacts have been shown to accelerate mineralization and bone tissue ingrowth in vivo. In this work, a comprehensive study has been carried out to investigate the influence of surface charge and polarity on in vitro bone cell adhesion, proliferation and differentiation on electrically polarized HAp-coated Ti. Uniform and crack free sol-gel derived HAp coatings of 20+/-1.38microm thickness were polarized by application of an external d.c. field of 2.0kVcm(-1) at 400 degrees C for 1h. In vitro bioactivity of polarized HAp coatings was evaluated by soaking in simulated body fluid, and bone cell-material interactions were studied by culturing with human fetal osteoblast cells (hFOB) for a maximum period of 11 days. Scanning electron microscopic observation showed that accelerated mineralization on negatively charged surfaces favored rapid cell attachment and faster tissue ingrowth over non-polarized HAp coating surfaces, while positive charge on HAp coating surfaces restricted apatite nucleation with limited cellular response. Immunochemistry and confocal microscopy confirmed that the cell adhesion and early stage differentiation were more pronounced on negatively charged coating surfaces as hFOB cells expressed higher vinculin and alkaline phosphatase proteins on negatively charged surface compared to cells grown on all other surfaces. Our results in this study are process independent and potentially applicable to any other commercially available coating techniques.
机译:已经显示出电极化批量烧结羟基磷灰石(HAP)压块,以加速体内的矿化和骨组织成长。在这项工作中,已经进行了综合研究,以研究表面电荷和极性对体外骨细胞粘附,增殖和分化对电极化的Hap涂覆的Ti的影响。通过施加外部D.C,均匀且裂纹的游离溶胶 - 凝胶衍生的Hap涂层为20 +/- 1.38microm厚度。 400℃下为2.0kVcm(-1)的字段1小时。通过在模拟体液中浸泡来评价偏振Hap涂层的体外生物活性,通过用人胎儿成骨细胞(HFOB)培养最大为11天的骨细胞 - 材料相互作用。扫描电子显微镜观察表明,带负电表面的加速矿化有利于快速的细胞附着和更快的组织环形在非极化的Hap涂层表面上,而Hap涂层表面上的正电荷限制了细胞反应有限的磷灰石成核。免疫化学和共聚焦显微镜证实,随着在所有其他表面上生长的细胞相比,在带负电的表面上表达较高的vinculin和碱性磷酸酶蛋白,对带负电荷的涂层表面更加明显的细胞粘附和早期分化。我们在本研究中的结果是工艺独立,可能适用于任何其他市售涂料技术。

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