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采用多层仿生分级薄膜对钛合金基体进行表面工程处理,以调控成骨细胞的生长行为。

Surface engineering of titanium alloy substrates with multilayered biomimetic hierarchical films to regulate the growth behaviors of osteoblasts.

作者信息

Yang Weihu, Xi Xingfeng, Si Yang, Huang Song, Wang Jiangfeng, Cai Kaiyong

机构信息

Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400044, People's Republic of China.

College of Materials Science and Engineering, Chongqing University, Chongqing 400044, People's Republic of China.

出版信息

Acta Biomater. 2014 Oct;10(10):4525-36. doi: 10.1016/j.actbio.2014.05.033. Epub 2014 Jun 4.

Abstract

Osseointegration is essential for the long-term survival of orthopedic implants. Inspired by the hierarchical structure of natural bone, we fabricated a hierarchical structure with osteoinduction potential on titanium alloy (Ti6Al7Nb) substrates via a spin-assisted layer-by-layer assembly technique, with hydroxyapatite nanofibers as the intercalated materials and gelatin and chitosan as the polycation and polyanion, respectively. The as-synthesized hydroxyapatite nanofibers were characterized using scanning electron microscopy (SEM), transmission electron microscopy, Fourier transform infrared spectroscopy and X-ray diffraction. The change of water contact angle corresponding to different layers indicated the formation of a multilayered structure, since different components have their inherent wettability natures. The multilayered lamellar structure was revealed by the cross-sectional view of SEM, suggesting that the film was successfully deposited onto Ti6Al7Nb substrates. Osteoblasts cultured on the hierarchical structure deposited Ti alloy substrates displayed significantly higher cell viability (P<0.01) and better adhesion, a higher production level of alkaline phosphatase, mineralization, genes expressions of osteocalcin and osteopontin (P<0.01 or P<0.05) compared to those of native Ti6Al7Nb substrates after culture for 4, 7 or 14days. These results indicated that the lamellar structure was beneficial for the biological functions of osteoblasts, establishing the basis for osseointegration of a titanium alloy implant.

摘要

骨整合对于骨科植入物的长期存活至关重要。受天然骨层次结构的启发,我们通过旋转辅助逐层组装技术在钛合金(Ti6Al7Nb)基底上制备了具有骨诱导潜力的层次结构,以羟基磷灰石纳米纤维作为插层材料,明胶和壳聚糖分别作为聚阳离子和聚阴离子。使用扫描电子显微镜(SEM)、透射电子显微镜、傅里叶变换红外光谱和X射线衍射对合成的羟基磷灰石纳米纤维进行了表征。对应于不同层的水接触角变化表明形成了多层结构,因为不同组分具有其固有的润湿性。通过SEM的横截面视图揭示了多层片状结构,表明该薄膜成功沉积在Ti6Al7Nb基底上。与天然Ti6Al7Nb基底相比,在具有层次结构的沉积钛合金基底上培养的成骨细胞在培养4、

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