Kunrath Marcel Ferreira, Leal Bruna Ferreira, Hubler Roberto, de Oliveira Sílvia Dias, Teixeira Eduardo Rolim
Dentistry University, School of Health Sciences, Pontifical Catholic University of Rio Grande do Sul (PUCRS), Av. Ipiranga, P.O. Box 6681, Porto Alegre, 90619-900, Brazil.
Materials and Nanoscience Laboratory, Pontifical Catholic University of Rio Grande do Sul (PUCRS), P.O. Box 1429, Porto Alegre, 90619-900, Brazil.
AMB Express. 2019 Apr 16;9(1):51. doi: 10.1186/s13568-019-0777-6.
The fast evolution of surface treatments for biomedical implants and the concern with their contact with cells and microorganisms at early phases of bone healing has boosted the development of surface topographies presenting drug delivery potential for, among other features, bacterial growth inhibition without impairing cell adhesion. A diverse set of metal ions and nanoparticles (NPs) present antibacterial properties of their own, which can be applied to improve the implant local response to contamination. Considering the promising combination of nanostructured surfaces with antibacterial materials, this critical review describes a variety of antibacterial effects attributed to specific metals, ions and their combinations. Also, it explains the TiO nanotubes (TNTs) surface creation, in which the possibility of aggregation of an active drug delivery system is applicable. Also, we discuss the pertinent literature related to the state of the art of drug incorporation of NPs with antibacterial properties inside TNTs, along with the promising future perspectives of in situ drug delivery systems aggregated to biomedical implants.
生物医学植入物表面处理技术的快速发展,以及对其在骨愈合早期与细胞和微生物接触情况的关注,推动了具有药物递送潜力的表面形貌的发展,这些形貌除其他特性外,还具有抑制细菌生长而不损害细胞粘附的能力。多种金属离子和纳米颗粒(NPs)自身具有抗菌特性,可用于改善植入物对污染的局部反应。考虑到纳米结构表面与抗菌材料的前景广阔的组合,这篇批判性综述描述了归因于特定金属、离子及其组合的各种抗菌作用。此外,它解释了TiO纳米管(TNTs)表面的形成,其中活性药物递送系统的聚集可能性是适用的。此外,我们讨论了与在TNTs内结合具有抗菌特性的NPs药物的现有技术相关的文献,以及聚集到生物医学植入物上的原位药物递送系统的广阔未来前景。