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Nanoporous silica coatings on implant surfaces: characterization, stability, biocompatibility and drug release properties

机译:植入物表面的纳米多孔二氧化硅涂层:表征,稳定性,生物相容性和药物释放特性

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摘要

Nanoporous silica coatings for drug release purposes were prepared on medical implants. As substrate, we chose Bioverit® II, which is a commercial available glass-mica ceramic implant material. The coating was prepared by a dip-coating technique in which long-chain organic molecules act as placeholders for the pores. Characterization of the coatings by scanning transmission electron microscopy and X-ray diffraction showed a disordered nanoporous system with a layer thickness of 30–150 nm. The nanoporous structure was stable for about 12 h in a typical cell culture medium and rearranged to a packing of silica nanoparticles. The coating allowed cell attachment and showed excellent biocompatibility in cell culture tests independently of the particular cell type examined. In vivo, implant-tissue interactions were examined in the middle ear in a novel mouse model. Whole genome expression profiling showed no persisting inflammatory response in the presence of the implants. Release profiles of the antibiotic ciprofloxacin demonstrated that the coating is suitable for a local drug delivery. The drug loading capacity could be drastically increased after sulfonic acid modification of the Bioverit® II surface.
机译:在医疗植入物上制备了用于药物释放的纳米多孔二氧化硅涂层。作为基材,我们选择了Bioverit®II,它是一种市售的玻璃云母陶瓷植入材料。通过浸涂技术制备涂层,其中长链有机分子充当孔的占位符。通过扫描透射电子显微镜和X射线衍射对涂层进行表征,显示出无序的纳米多孔体系,层厚为30–150 nm。纳米多孔结构在典型的细胞培养基中稳定约12小时,并重新排列成二氧化硅纳米颗粒的堆积。该涂层允许细胞附着并在细胞培养试验中显示出优异的生物相容性,而与所检查的特定细胞类型无关。在体内,在新型小鼠模型中检查了中耳的植入物-组织相互作用。在植入物的存在下,全基因组表达谱显示没有持续的炎症反应。抗生素环丙沙星的释放曲线表明,该包衣适合局部给药。经过Bioverit®II表面的磺酸修饰后,载药量可能会大大增加。

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