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Mesoporous Bioactive Glass Functionalized 3D Ti-6Al-4V Scaffolds with Improved Surface Bioactivity

机译:具有改善的表面生物活性的介孔生物活性玻璃功能化3D Ti-6Al-4V支架

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摘要

Porous Ti-6Al-4V scaffolds fabricated by means of selective laser melting (SLM), having controllable geometrical features and preferable mechanical properties, have been developed as a class of biomaterials that hold promising potential for bone repair. However, the inherent bio-inertness of the Ti-6Al-4V alloy as the matrix of the scaffolds results in a lack in the ability to stimulate bone ingrowth and regeneration. The aim of the present study was to develop a bioactive coating on the struts of SLM Ti-6Al-4V scaffolds in order to add the desired surface osteogenesis ability. Mesoporous bioactive glasses (MBGs) coating was applied on the strut surfaces of the SLM Ti-6Al-4V scaffolds through spin coating, followed by a heat treatment. It was found that the coating could maintain the characteristic mesoporous structure and chemical composition of MBG, and establish good interfacial adhesion to the Ti-6Al-4V substrate. The compressive strength and pore interconnectivity of the scaffolds were not affected by the coating. Moreover, the results obtained from in vitro cell culture experiments demonstrated that the attachment, proliferation, and differentiation of human bone marrow stromal cells (hBMSCs) on the MBG-coated Ti-6Al-4V scaffolds were improved as compared with those on the conventional bioactive glass (BG)-coated Ti-6Al-4V scaffolds and bare-metal Ti-6Al-4V scaffolds. Our results demonstrated that the MBG coating by using the spinning coating method could be an effective approach to achieving enhanced surface biofunctionalization for SLM Ti-6Al-4V scaffolds.
机译:通过选择性激光熔化(SLM)制备的多孔Ti-6Al-4V支架已成为具有生物修复潜力的一类生物材料,该支架具有可控的几何特征和较好的机械性能。然而,作为支架基质的Ti-6Al-4V合金固有的生物惰性导致缺乏刺激骨骼向内生长和再生的能力。本研究的目的是在SLM Ti-6Al-4V支架的支杆上开发生物活性涂层,以增加所需的表面成骨能力。通过旋涂将介孔生物活性玻璃(MBG)涂层施加到SLM Ti-6Al-4V支架的支杆表面,然后进行热处理。发现该涂层可以保持MBG的特征性介孔结构和化学组成,并与Ti-6Al-4V衬底建立良好的界面粘附性。支架的抗压强度和孔的互连性不受涂层的影响。此外,从体外细胞培养实验获得的结果表明,与常规生物活性物质相比,MBG涂层的Ti-6Al-4V支架上的人骨髓基质细胞(hBMSC)的附着,增殖和分化得到改善。玻璃(BG)涂层的Ti-6Al-4V支架和裸金属Ti-6Al-4V支架。我们的结果表明,通过旋涂方法进行MBG涂层可能是实现SLM Ti-6Al-4V支架表面生物功能增强的有效方法。

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