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In vitro studies of nanosilver-doped titanium implants for oral and maxillofacial surgery

机译:纳米银掺杂钛植入物在口腔和颌面外科手术中的体外研究

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摘要

The addition of an antibacterial agent to dental implants may provide the opportunity to decrease the percentage of implant failures due to peri-implantitis. For this purpose, in this study, the potential efficacy of nanosilver-doped titanium biomaterials was determined. Titanium disks were incorporated with silver nanoparticles over different time periods by Tollens reaction, which is considered to be an eco-friendly, cheap, and easy-to-perform method. The surface roughness, wettability, and silver release profile of each disc were measured. In addition, the antibacterial activity was also evaluated by using disk diffusion tests for bacteria frequently isolated from the peri-implant biofilm: Streptococcus mutans, Streptococcus mitis, Streptococcus oralis, Streptococcus sanguis, Porphyromonas gingivalis, Staphylococcus aureus, and Escherichia coli. Cytotoxicity was evaluated in vitro in a natural human osteoblasts cell culture. The addition of nanosilver significantly increased the surface roughness and decreased the wettability in a dose-dependent manner. These surfaces were significantly toxic to all the tested bacteria following a 48-hour exposure, regardless of silver doping duration. A concentration of 0.05 ppm was sufficient to inhibit Gram-positive and Gram-negative species, with the latter being significantly more susceptible to silver ions. However, after the exposure of human osteoblasts to 0.1 ppm of silver ions, a significant decrease in cell viability was observed by using ToxiLight™ BioAssay Kit after 72 hours. Data from the present study indicated that the incorporation of nanosilver may influence the surface properties that are important in the implant healing process. The presence of nanosilver on the titanium provides an antibacterial activity related to the bacteria involved in peri-implantitis. Finally, the potential toxicological considerations of nanosilver should further be investigated, as both the antibacterial and cytotoxic properties may be observed at similar concentration ranges.
机译:向牙植入物添加抗菌剂可提供减少因植入物周围炎引起的植入物失败百分比的机会。为此,在本研究中,确定了纳米银掺杂钛生物材料的潜在功效。钛圆盘通过Tollens反应在不同的时间段内与银纳米颗粒结合在一起,这被认为是一种生态友好,廉价且易于执行的方法。测量每个盘的表面粗糙度,润湿性和银释放曲线。此外,还通过盘扩散试验对经常从植入物周围生物膜分离出的细菌进行了圆盘扩散测试,以评估其抗菌活性:变形链球菌,微生物链球菌,口腔链球菌,血链球菌,牙龈卟啉单胞菌,金黄色葡萄球菌和大肠埃希氏菌。在天然人类成骨细胞培养物中体外评估细胞毒性。纳米银的添加以剂量依赖性方式显着增加了表面粗糙度并降低了润湿性。暴露48小时后,这些表面对所有测试细菌均具有明显的毒性,无论掺杂银的时间长短如何。 0.05 ppm的浓度足以抑制革兰氏阳性菌和革兰氏阴性菌,后者对银离子的敏感性更高。但是,将人类成骨细胞暴露于0.1 ppm的银离子后,在72小时后使用ToxiLight™BioAssay Kit观察到细胞活力显着下降。来自本研究的数据表明,纳米银的掺入可能影响在植入物愈合过程中很重要的表面特性。钛上纳米银的存在提供了与种植体周围炎有关的细菌的抗菌活性。最后,应进一步研究纳米银的潜在毒理学考虑,因为在相似的浓度范围内都可以观察到抗菌和细胞毒性特性。

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