Markowska Katarzyna, Grudniak Anna M, Wolska Krystyna I
Department of Bacterial Genetics, Institute of Microbiology, Faculty of Biology, University of Warsaw, Warsaw, Poland.
Acta Biochim Pol. 2013;60(4):523-30.
Biofilms are complex bacterial communities that resist the action of antibiotics and the human immune system. Bacteria within biofilms are the cause of numerous, almost impossible to eradicate, persistent infections. Biofilms can form on many medical devices and implants, and so have an enormous impact on medicine. Due to the lack of effective anti-biofilm antibiotics, novel alternative compounds or strategies are urgently required. This review describes some of the latest approaches in the field of biofilm treatment. New anti-biofilm technologies target different stages in the biofilm formation process. Some act to modify the colonized biomaterials to make them resistant to biofilm formation. One potentially important candidate treatment uses silver nanoparticles that show anti-bacterial and anti-biofilm activity. The biological action of nano-silver is complex and seems to involve a number of pathways. However, there have been few reports on the anti-biofilm activity of silver nanoparticles and the precise mechanism underlying their action remains unresolved. Here, we describe some anti-biofilm approaches employing AgNPs and consider the challenges and problems that need to be addressed in order to make silver nanoparticles a part of an effective anti-biofilm strategy.
生物膜是复杂的细菌群落,能够抵抗抗生素的作用以及人体免疫系统。生物膜内的细菌是众多几乎无法根除的持续性感染的病因。生物膜可在许多医疗设备和植入物上形成,因此对医学有着巨大影响。由于缺乏有效的抗生物膜抗生素,迫切需要新型替代化合物或策略。本综述描述了生物膜治疗领域的一些最新方法。新的抗生物膜技术针对生物膜形成过程中的不同阶段。一些技术旨在改变被定植的生物材料,使其具有抗生物膜形成的能力。一种潜在的重要候选治疗方法是使用具有抗菌和抗生物膜活性的银纳米颗粒。纳米银的生物学作用很复杂,似乎涉及多种途径。然而,关于银纳米颗粒抗生物膜活性的报道很少,其作用的确切机制仍未得到解决。在此,我们描述了一些采用银纳米颗粒的抗生物膜方法,并考虑了为使银纳米颗粒成为有效抗生物膜策略的一部分而需要解决的挑战和问题。