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Improved bioactivity of GUMMETAL®, Ti59Nb36Ta2Zr3O0.3, via formation of nanostructured surfaces

机译:通过形成纳米结构表面改善Gummetal®,Ti59NB36TA2ZR3O0.3的生物活性

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摘要

The leading reason for implant revision surgery globally is lack of implant integration with surrounding bone. A new titanium alloy GUMMETAL ® (Ti 59 Nb 36 Ta 2 Zr 3 O 0.3 ) is currently used in biomedical devices and has a Young’s modulus that is better matched to bone. The surface was subject to NaOH, CaCl 2 , heat and water treatment (BioGum) after which the surfaces were evaluated using atomic force microscope, scanning electron microscope, X-ray diffractometer and elemental analysis using energy dispersive X-ray. To demonstrate enhanced bone bonding ability and cytocompatibility, apatite formation in simulated body fluid and in vitro stem cell attachment, proliferation and cytoskeleton organisation were examined. The formation of a ~200 nm nanoscale needle-like calcium titanate network on the surface following treatment was revealed and upon soaking in simulated body fluid, the formation of a ~5 µm layer of apatite. Metabolic activity of rat bone marrow stem cells on BioGum was increased in comparison to control and the cell number appeared greater, with more elongated morphology as early as 2 h post-seeding. This positions the modification as a simple and potentially universal technology for the improvement of implant integration.
机译:全球植入式修订手术的主要原因是缺乏与周围骨的植入物集成。目前用于生物医学装置的新型钛合金Gummetal®(Ti 59 Nb 36 Ta 2 Zr 3 O 0.3),具有与骨骼更好的杨氏模量。该表面受到NaOH,CaCl 2,热量和水处理(生物原),之后使用原子力显微镜,扫描电子显微镜,X射线衍射仪和使用能量分散X射线进行元素分析来评估表面。为了证明增强的骨键合能力和细胞粘合剂,研究了模拟体液中的磷灰石形成和体外干细胞附着,增殖和细胞骨架组织。在处理后表面形成〜200nm纳米级针状钛酸钙网络,并在模拟体液中浸泡后浸泡,形成〜5μm的磷灰石层。与对照和细胞数出现较大,对细胞数量较大,大鼠骨髓干细胞对生物骨的代谢活性增加,并且在接种后2小时,细长形态更细长。这使得修改为改善植入物集成的简单潜在的通用技术。

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