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用于在体外加速成骨细胞反应的钛表面本征铁磁性铁掺杂二氧化钛涂层。

Intrinsically ferromagnetic Fe-doped TiO coatings on titanium for accelerating osteoblast response in vitro.

作者信息

Li Kai, Yan Ting, Xue Yang, Guo Lijun, Zhang Lan, Han Yong

机构信息

State-key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

J Mater Chem B. 2018 Sep 28;6(36):5756-5767. doi: 10.1039/c8tb01414k. Epub 2018 Aug 28.

Abstract

The microenvironment can regulate osteoblast behavior during integration of implants with host bones. An intrinsically magnetic field induced by an Fe doped TiO coating was applied herein to enhance the cytocompatibility of Ti. Porous TiO incorporated with different amounts of Fe (2.27-11.07 wt%) was directly prepared on Ti by micro-arc oxidation. The microstructure, roughness, wettability, ion releasing and magnetic property of TiO coatings were investigated. Cell behavior, including adhesion, proliferation, differentiation, collagen secretion and extracellular matrix mineralization on coating surfaces was evaluated. The results show that incorporation of Fe did not significantly alter the phase component, topography, roughness and wettability of coatings, and with increased doses of Fe, trace amounts of Fe were released into the media, whereas the Ca accumulation concentration slightly decreased. Fe-Doped TiO displayed a weak ferromagnetic property, and its saturation magnetization value increased initially and then decreased with the increased dose of Fe. Compared with the undoped, proliferation, expression of osteogenesis-related genes, collagen secretion and extracellular matrix mineralization of osteoblasts were enhanced with Fe doped ones, especially for those with 4.25 wt% Fe. By analyzing the structures and properties of different surfaces and their osteoblast responses, it is deduced that the ferromagnetism of Fe doped TiO plays a key role in enhancing osteoblast behavior. Such a result provides a new perspective for the potential application of ferromagnetic coatings in bone repair.

摘要

在植入物与宿主骨整合过程中,微环境可调节成骨细胞行为。本文施加了由掺铁TiO涂层诱导的内禀磁场,以增强钛的细胞相容性。通过微弧氧化在钛上直接制备了掺入不同量铁(2.27 - 11.07 wt%)的多孔TiO。研究了TiO涂层的微观结构、粗糙度、润湿性、离子释放和磁性。评估了涂层表面上的细胞行为,包括粘附、增殖、分化、胶原蛋白分泌和细胞外基质矿化。结果表明,掺入铁并未显著改变涂层的相组成、形貌、粗糙度和润湿性,并且随着铁剂量的增加,痕量的铁释放到培养基中,而钙积累浓度略有降低。掺铁TiO表现出弱铁磁性,其饱和磁化值随着铁剂量的增加先升高后降低。与未掺杂的相比,掺铁的成骨细胞增殖、成骨相关基因表达、胶原蛋白分泌和细胞外基质矿化得到增强,特别是对于含4.25 wt%铁的那些。通过分析不同表面的结构和性能及其对成骨细胞的反应,推断掺铁TiO的铁磁性在增强成骨细胞行为中起关键作用。这一结果为铁磁涂层在骨修复中的潜在应用提供了新的视角。

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