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In situ fabrication of silver nanoparticle-filled hydrogen titanate nanotube layer on metallic titanium surface for bacteriostatic and biocompatible implantation

机译:在金属钛表面上原位制备纳米银填充的钛酸氢纳米管层用于抑菌和生物相容性植入

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摘要

A silver nanoparticle (AgNP)-filled hydrogen titanate nanotube layer was synthesized in situ on a metallic titanium substrate. In the synthesis approach, a layer of sodium titanate nanotubes is first prepared on the titanium surface by using a hydrothermal method. Silver nitrate solution is absorbed into the nanotube channels by immersing a dried nanotube layer in silver nitrate solution. Finally, silver ions are reduced by glucose, leading to the in situ growth of AgNPs in the hydrogen titanate nanotube channels. Long-term silver release and bactericidal experiments demonstrated that the effective silver release and effective antibacterial period of the titanium foil with a AgNP-filled hydrogen titanate nanotube layer on the surface can extend to more than 15 days. This steady and prolonged release characteristic is helpful to promote a long-lasting antibacterial capability for the prevention of severe infection after surgery. A series of antimicrobial and biocompatible tests have shown that the sandwich nanostructure with a low level of silver loading exhibits a bacteriostatic rate as high as 99.99%, while retaining low toxicity for cells and possessing high osteogenic potential. Titanium foil with a AgNP-filled hydrogen titanate nanotube layer on the surface that is fabricated with low-cost surface modification methods is a promising implantable material that will find applications in artificial bones, joints, and dental implants.
机译:在金属钛基板上原位合成了银纳米粒子(AgNP)填充的钛酸氢纳米管层。在合成方法中,首先通过使用水热法在钛表面制备钛酸钠纳米管层。通过将干燥的纳米管层浸入硝酸银溶液中,将硝酸银溶液吸收到纳米管通道中。最后,银离子被葡萄糖还原,从而导致钛酸氢纳米管通道中AgNP的原位生长。长期的银释放和杀菌实验表明,表面上具有AgNP填充的钛酸氢纳米管层的钛箔的有效银释放和有效抗菌期可以延长至15天以上。这种稳定和延长的释放特性有助于促进持久的抗菌能力,以防止术后严重感染。一系列的抗菌和生物相容性测试表明,具有低银含量的三明治纳米结构表现出高达99.99%的抑菌率,同时对细胞保持低毒性并具有较高的成骨潜力。用低成本的表面改性方法制造的表面具有AgNP填充的钛酸氢纳米管层的钛箔是一种很有前途的可植入材料,将在人造骨骼,关节和牙科植入物中得到应用。

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