Negut Irina, Floroian Laura, Ristoscu Carmen, Mihailescu Cristian N, Mirza Rosca Julia Claudia, Tozar Tatiana, Badea Mihaela, Grumezescu Valentina, Hapenciuc Claudiu, Mihailescu Ion N
National Institute for Lasers, Plasma and Radiation Physics, Măgurele 077125, Romania.
Automation Dept, Faculty of Electrical Engineering and Computer Science, Transilvania University of Brasov, Brasov 500036, Romania.
Nanomaterials (Basel). 2020 Feb 22;10(2):385. doi: 10.3390/nano10020385.
Aseptic loosening and periprosthetic infections are the main causes of implant failure. Strategies to mitigate this drawback are therefore mandatory to avoid primary and revision replacement surgeries. A functional bioapatite-biopolymer double nanostructure fabricated by matrix-assisted pulsed laser evaporation to prevent infection of orthopedic and dental implants could promote osseointegration and ensure controlled delivery of natural antimicrobial drugs. The synthesized nanostructure consists of two overlapping layers, the lower from a biocompatible polymer for anticorrosive protection, and the upper of bioactive glass incorporating antimicrobial plant extract, acting as a potential drug delivery system. Morphology, composition, adherence, ability for drug delivery and biological properties (cytotoxicity and antimicrobial effect) were studied. Structures proved compact and stable, conserving a remarkable drug delivery ability for more than 21 days, i.e., enough to ensure long-term microbes' eradication.
无菌性松动和假体周围感染是植入物失败的主要原因。因此,必须采取策略来减轻这一缺点,以避免初次和翻修置换手术。通过基质辅助脉冲激光蒸发制备的功能性生物磷灰石-生物聚合物双纳米结构,用于预防骨科和牙科植入物感染,可促进骨整合并确保天然抗菌药物的可控释放。合成的纳米结构由两个重叠层组成,下层是用于防腐保护的生物相容性聚合物,上层是含有抗菌植物提取物的生物活性玻璃,作为潜在的药物递送系统。研究了其形态、组成、附着力、药物递送能力和生物学特性(细胞毒性和抗菌效果)。结构证明紧凑且稳定,具有超过21天的显著药物递送能力,即足以确保长期根除微生物。