首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Gentamicin-loaded ceramic-biopolymer dual layer coatings on the Ti with improved bioactive and corrosion resistance properties for orthopedic applications
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Gentamicin-loaded ceramic-biopolymer dual layer coatings on the Ti with improved bioactive and corrosion resistance properties for orthopedic applications

机译:Ti上的庆大霉素加载的陶瓷 - 生物聚合物双层涂层,具有改善的整形外科应用的生物活性和耐腐蚀性

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In orthopedic surgery, osteomyelitis (bone infection) is one of the most serious complications in the last few decades and the resident drug delivery is the key strategy to overcome this issue. Combination of bioactive materials with antibiotics is broadly developed for the handling of osteomyelitis which plays a dual role as bone cell growth and as local drug delivery systems for antibiotic delivery. TiO2-SiO2 mixtures were fabricated on Ti alloy by anodization method. Chitosan-Lysine (CS-LY) biopolymers were coated on composites by electrodeposition method and followed by gentamicin sulfate (GS) which was loaded as a model drug. The layers were characterized by AT-FTIR, XRD, FE-SEM and EDX methods. The mechanical, anticorrosion, antimicrobial effects and biocompatibility of the glazes were considered. In addition, drug loading, continued and prolonged liberation behaviors of GS from the fabricated coating were studied. The apatite development ability and cell viability are outstanding for CS-LY-3 coated composites. In vitro cell experimentations indicate that osteoblasts show good adhesion and high growth rates for CS-LY-3 coated TiO2-SiO2 composite substrate. In conclusion, the surface modification of TiO2-SiO2/CS-LY-3 coated Ti alloy could be used as a carrier for GS, not only to eradicate the osteomyelitis caused by Gram-negative and Gram-positive bacteria, but also to repair the bone defect initiated by the infection owing to the tunable nanocomposite degradation.
机译:在整形外科手术中,骨髓炎(骨感染)是过去几十年中最严重的并发症之一,居民药物交付是克服这一问题的关键战略。广泛开发了具有抗生素的生物活性材料的组合,用于处理骨髓炎,这在骨细胞生长和抗生素递送的局部药物递送系统中起作用的骨髓炎。通过阳化法在Ti合金上制造TiO2-SiO 2混合物。通过电沉积法涂覆壳聚糖 - 赖氨酸(CS-LY)生物聚合物在复合材料上涂覆,然后用庆大霉素(GS)作为模型药物。该层的特征在于AT-FTIR,XRD,FE-SEM和EDX方法。考虑了玻璃的机械,防腐,抗微生物效应和生物相容性。此外,研究了来自制造涂层的GS的药物载荷,持续和长期的解放行为。对于CS-LY-3涂覆的复合材料,磷灰石开发能力和细胞活力突出。体外细胞实验表明,成骨细胞显示出Cs-Ly-3涂覆的TiO2-SiO 2复合底物的良好粘附性和高生长速率。总之,TiO2-SiO2 / CS-Ly-3涂覆的Ti合金的表面改性可用作GS的载体,不仅消除了革兰氏阴性和革兰氏阳性细菌引起的骨髓炎,而且还要修复由于可调谐纳米复合材料降解,感染引发的骨缺陷。

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