Advanced Materials Research Center, Department of Materials Engineering, Najafabad Branch, Islamic Azad University, Najafabad, Iran.
Student Research Committee, School of Advanced Medical Technologies, Isfahan University of Medical Sciences, Isfahan, Iran.
Mater Sci Eng C Mater Biol Appl. 2019 Mar;96:765-775. doi: 10.1016/j.msec.2018.12.013. Epub 2018 Dec 6.
Infection is quite usual for implants after surgery and a systemic administration of antibiotics causes problems before the eradication of bacteria. Localized drug delivery from implants is an effective way by which the mentioned target can be met. In the current work, ordered mesoporous magnesium silicate (OMMS) is coated on plasma electrolytic oxidation (PEO)-modified titanium (Ti) substrate through electrophoretic deposition (EPD) and rifampin as an antibiotic is loaded on OMMS coating to be applied as an antibacterial coating. The immersion test into simulated body fluid and also potentiodynamic polarization assay are adopted to assess the in vitro bioactivity up to 7 days and corrosion resistance of the specimens, respectively. The double surface coatings of PEO and EPD are achieved on Ti substrate and the thickness for each one is found to be 4 and 25 μm, respectively. Regarding to drug delivery capability of OMMS as the EPD coating, the loading capacity is 25% and release trend sustains up to 96 h. The antibacterial activity and also cell viability of OMMS coating are significantly increased with rifampin loading. The results of our study exhibit that OMMS as a multifunctional coating deposited on the PEO-modified Ti substrate improves corrosion resistance, in vitro bioactivity, alkaline phosphatase activity, and mineralization of the substrate. Moreover, rifampin-loaded OMMS coating is not only able to prevent infection, but it also increases the osteogenesis cells viability. Therefore, rifampin-loaded OMMS coating on Ti is potentially regarded appropriate for orthopedic applications.
手术后植入物感染相当常见,全身使用抗生素会在消灭细菌之前引发问题。从植入物局部给药是一种有效的方法,可以达到上述目标。在目前的工作中,有序介孔硅酸镁(OMMS)通过电泳沉积(EPD)涂覆在等离子体电解氧化(PEO)改性钛(Ti)基底上,利福平作为抗生素负载在 OMMS 涂层上,用作抗菌涂层。通过浸入模拟体液和动电位极化测试分别评估了样品的体外生物活性和耐腐蚀性能,最长可达 7 天。在 Ti 基底上实现了 PEO 和 EPD 的双层表面涂层,并且发现每种涂层的厚度分别为 4 和 25 μm。由于 EPD 涂层中 OMMS 的药物输送能力,其载药量为 25%,释放趋势可持续 96 小时。OMMS 涂层的抗菌活性和细胞活力随着利福平的加载而显著提高。我们的研究结果表明,沉积在 PEO 改性 Ti 基底上的多功能 OMMS 涂层提高了基底的耐腐蚀性、体外生物活性、碱性磷酸酶活性和矿化。此外,载有利福平的 OMMS 涂层不仅能够预防感染,还能提高成骨细胞的活力。因此,载有利福平的 OMMS 涂层在 Ti 上具有潜在的骨科应用价值。