摘要
材料表面的细菌粘附和随后生物膜的形成代表了经济和健康背景下一种突出的社会问题。随着抗耐生素细菌株的流行,阻止细菌粘附和生物膜形成的表面涂层的方法也越来越重要。基于抗粘附原理或者杀菌策略的有效的抗菌表面涂层能够阻止细菌粘附,杀死整个接触过程中涂层面的生物体。然而,许多策略合并了两者机制贯彻了多功能的方法。对于抗粘合方案,尽管最近有描述一类新的超疏水表面材料,且展示了改进的抗粘合活性,但是高分子链或者水凝胶的应用仍为首选。此外,使用直接相关的、通过隔离分子聚合的或者在可生物降解基质、纳米粒子和季胺类化合物里包围的抗菌肽、抗生素、壳聚糖或酶可以达到杀菌的目的。尽管材料表面有许多微生物普遍存在的问题,本文概括了关于生物材料植入物和设备的抗菌表面涂层的最新研究进展。在生物医学领域,按提高疗效的顺序来排列不同涂层策略是不可能的,因为这依赖于临床应用的目的及期望的长期或者短期。就控制传染生物膜的抗生素年代终将结束,今后生物材料植入物和装置表面凃层控制很可能与表面修饰相关而非抗生素性相关。
关键词: 抗菌剂,抗生素,抗菌肽,细菌粘附,纳米粒子,季胺类化合物,表面涂层
Current Medicinal Chemistry
Title:Current Developments in Antimicrobial Surface Coatings for Biomedical Applications
Volume: 22 Issue: 18
Author(s): J.J.T.M. Swartjes, P.K. Sharma, T.G. van Kooten, H.C. van der Mei, M. Mahmoudi, H.J. Busscher and E.T.J. Rochford
Affiliation:
关键词: 抗菌剂,抗生素,抗菌肽,细菌粘附,纳米粒子,季胺类化合物,表面涂层
摘要: Bacterial adhesion and subsequent biofilm formation on material surfaces represent a serious problem in society from both an economical and health perspective. Surface coating approaches to prevent bacterial adhesion and biofilm formation are of increased importance due to the increasing prevalence of antibiotic resistant bacterial strains. Effective antimicrobial surface coatings can be based on an anti-adhesive principle that prevents bacteria to adhere, or on bactericidal strategies, killing organisms either before or after contact is made with the surface. Many strategies, however, implement a multifunctional approach that incorporates both of these mechanisms. For anti-adhesive strategies, the use of polymer chains, or hydrogels is preferred, although recently a new class of super-hydrophobic surfaces has been described which demonstrate improved anti-adhesive activity. In addition, bacterial killing can be achieved using antimicrobial peptides, antibiotics, chitosan or enzymes directly bound, tethered through spacer-molecules or encased in biodegradable matrices, nanoparticles and quaternary ammonium compounds. Notwithstanding the ubiquitous nature of the problem of microbial colonization of material surfaces, this review focuses on the recent developments in antimicrobial surface coatings with respect to biomaterial implants and devices. In this biomedical arena, to rank the different coating strategies in order of increasing efficacy is impossible, since this depends on the clinical application aimed for and whether expectations are short- or long term. Considering that the era of antibiotics to control infectious biofilms will eventually come to an end, the future for biofilm control on biomaterial implants and devices is likely with surface-associated modifications that are non-antibiotic related.
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J.J.T.M. Swartjes, P.K. Sharma, T.G. van Kooten, H.C. van der Mei, M. Mahmoudi, H.J. Busscher and E.T.J. Rochford , Current Developments in Antimicrobial Surface Coatings for Biomedical Applications, Current Medicinal Chemistry 2015; 22 (18) . https://dx.doi.org/10.2174/0929867321666140916121355
DOI https://dx.doi.org/10.2174/0929867321666140916121355 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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