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Introducing a Semi-Coated Model to Investigate Antibacterial Effects of Biocompatible Polymers on Titanium Surfaces

机译:引入半涂层模型来研究生物相容性聚合物对钛表面的抗菌作用

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摘要

Peri-implant infections from bacterial biofilms on artificial surfaces are a common threat to all medical implants. They are a handicap for the patient and can lead to implant failure or even life-threatening complications. New implant surfaces have to be developed to reduce biofilm formation and to improve the long-term prognosis of medical implants. The aim of this study was (1) to develop a new method to test the antibacterial efficacy of implant surfaces by direct surface contact and (2) to elucidate whether an innovative antimicrobial copolymer coating of 4-vinyl-N-hexylpyridinium bromide and dimethyl(2-methacryloyloxyethyl) phosphonate (VP:DMMEP 30:70) on titanium is able to reduce the attachment of bacteria prevalent in peri-implant infections. With a new in vitro model with semi-coated titanium discs, we were able to show a dramatic reduction in the adhesion of various pathogenic bacteria (Streptococcus sanguinis, Escherichia coli, Staphylococcus aureus, Staphylococcus epidermidis), completely independently of effects caused by soluble materials. In contrast, soft tissue cells (human gingival or dermis fibroblasts) were less affected by the same coating, despite a moderate reduction in initial adhesion of gingival fibroblasts. These data confirm the hypothesis that VP:DMMEP 30:70 is a promising antibacterial copolymer that may be of use in several clinical applications.
机译:人造表面细菌生物膜引起的种植体周围感染是所有医疗植入物的共同威胁。它们是患者的障碍,可能导致植入失败,甚至危及生命。必须开发新的植入物表面以减少生物膜形成并改善医疗植入物的长期预后。这项研究的目的是(1)开发一种通过直接表面接触来测试植入物表面抗菌功效的新方法,以及(2)阐明4-乙烯基-N-己基吡啶鎓溴化物和二甲基(钛上的2-甲基丙烯酰氧乙基)膦酸酯(VP:DMMEP 30:70)能够减少种植体周围感染中普遍存在的细菌附着。使用带有半涂层钛圆盘的新体外模型,我们能够显示出各种致病菌(血链球菌,大肠埃希氏菌,金黄色葡萄球菌,表皮葡萄球菌)的粘附力显着降低,完全独立于可溶性物质造成的影响。相反,尽管牙龈成纤维细胞的初始粘附力适度降低,软组织细胞(人牙龈或真皮成纤维细胞)受相同涂层的影响较小。这些数据证实了以下假设:VP:DMMEP 30:70是一种有前途的抗菌共聚物,可在多种临床应用中使用。

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