Skerlavaj Barbara, Boix-Lemonche Gerard
Department of Medicine, University of Udine, Piazzale Kolbe, 4, 33100 Udine, Italy.
Center for Eye Research and Innovative Diagnostics, Department of Ophthalmology, Institute of Clinical Medicine, Faculty of Medicine, University of Oslo, 0450 Oslo, Norway.
Antibiotics (Basel). 2023 Jan 19;12(2):211. doi: 10.3390/antibiotics12020211.
Due to the well-known phenomenon of antibiotic resistance, there is a constant need for antibiotics with novel mechanisms and different targets respect to those currently in use. In this regard, the antimicrobial peptides (AMPs) seem very promising by virtue of their bactericidal action, based on membrane permeabilization of susceptible microbes. Thanks to this feature, AMPs have a broad activity spectrum, including antibiotic-resistant strains, and microbial biofilms. Additionally, several AMPs display properties that can help tissue regeneration. A possible interesting field of application for AMPs is the development of antimicrobial coatings for implantable medical devices (e.g., orthopaedic prostheses) to prevent device-related infection. In this review, we will take note of the state of the art of AMP-based coatings for orthopaedic prostheses. We will review the most recent studies by focusing on covalently linked AMPs to titanium, their antimicrobial efficacy and plausible mode of action, and cytocompatibility. We will try to extrapolate some general rules for structure-activity (orientation, density) relationships, in order to identify the most suitable physical and chemical features of peptide candidates, and to optimize the coupling strategies to obtain antimicrobial surfaces with improved biological performance.
由于众所周知的抗生素耐药现象,一直需要具有与当前使用的抗生素不同作用机制和靶点的新型抗生素。在这方面,抗菌肽(AMPs)因其基于对敏感微生物的膜通透作用的杀菌作用而显得非常有前景。由于这一特性,抗菌肽具有广泛的活性谱,包括耐药菌株和微生物生物膜。此外,几种抗菌肽还具有有助于组织再生的特性。抗菌肽一个可能有趣的应用领域是开发用于可植入医疗设备(如骨科假体)的抗菌涂层,以预防与设备相关的感染。在这篇综述中,我们将关注基于抗菌肽的骨科假体涂层的最新进展。我们将通过关注与钛共价连接的抗菌肽、它们的抗菌效果和可能的作用方式以及细胞相容性来回顾最新的研究。我们将尝试推断一些结构-活性(取向、密度)关系的一般规则,以便确定肽候选物最合适的物理和化学特征,并优化偶联策略,以获得具有改善生物学性能的抗菌表面。