Antibacterial surfaces: the quest for a new generation of biomaterials

被引:758
作者
Hasan, Jafar [1 ]
Crawford, Russell J. [1 ]
Lvanova, Elena P. [1 ]
机构
[1] Swinburne Univ Technol, Fac Life & Social Sci, Hawthorn, Vic 3122, Australia
关键词
antibacterial; antibiofouling; bactericidal; surface chemistry; topography; nanotopography; QUATERNARY AMMONIUM-COMPOUNDS; BIOFILM FORMATION; PSEUDOMONAS-AERUGINOSA; ANTIMICROBIAL POLYMERS; STAPHYLOCOCCUS-AUREUS; MULTILAYER COATINGS; BACTERIAL BIOFILMS; CONTROLLED-RELEASE; MEDICAL DEVICES; SILVER;
D O I
10.1016/j.tibtech.2013.01.017
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
In this review we attempt to clarify the notion of what is meant by the term antibacterial surfaces and categorise the approaches that are commonly used in the design of antibacterial surfaces. Application of surface coatings and the modification of the surface chemistry of substrata are generally considered to be a chemical approach to surface modification (as are surface polymerisation, functionalisation, and derivatisation), whereas, modification of the surface architecture of a substrate can be considered a physical approach. Here, the antifouling and bactericidal effects of antibacterial surfaces are briefly discussed. Finally, several recent efforts to design a new generation of antibacterial surfaces, which are based on mimicking the surface nanotopography of natural surfaces, are considered.
引用
收藏
页码:31 / 40
页数:10
相关论文
共 82 条
[51]  
Marini M, 2007, BIOMACROMOLECULES, V8, P1246, DOI 10.1021/bm060721b
[52]   Anti-fouling poly(2-hydoxyethyl methacrylate) surface coatings with specific bacteria recognition capabilities [J].
Mrabet, Bechir ;
Nguyen, Minh Ngoc ;
Majbri, Aymen ;
Mahouche, Samia ;
Turmine, Mireille ;
Bakhrouf, Amina ;
Chehimi, Mohamed M. .
SURFACE SCIENCE, 2009, 603 (16) :2422-2429
[53]   Polymeric materials with antimicrobial activity [J].
Munoz-Bonilla, Alexandra ;
Fernandez-Garcia, Marta .
PROGRESS IN POLYMER SCIENCE, 2012, 37 (02) :281-339
[54]   Permanent, non-leaching antibacterial surfaces - 2: How high density cationic surfaces kill bacterial cells [J].
Murata, Hironobu ;
Koepsel, Richard R. ;
Matyjaszewski, Krzysztof ;
Russell, Alan J. .
BIOMATERIALS, 2007, 28 (32) :4870-4879
[55]   The expanding scope of antimicrobial peptide structures and their modes of action [J].
Nguyen, Leonard T. ;
Haney, Evan F. ;
Vogel, Hans J. .
TRENDS IN BIOTECHNOLOGY, 2011, 29 (09) :464-472
[56]   Tethering antimicrobial peptides: Current status and potential challenges [J].
Onaizi, Sagheer A. ;
Leong, Susanna S. J. .
BIOTECHNOLOGY ADVANCES, 2011, 29 (01) :67-74
[57]   Biophysical Model of Bacterial Cell Interactions with Nanopatterned Cicada Wing Surfaces [J].
Pogodin, Sergey ;
Hasan, Jafar ;
Baulin, Vladimir A. ;
Webb, Hayden K. ;
Vi Khanh Truong ;
The Hong Phong Nguyen ;
Boshkovikj, Veselin ;
Fluke, Christopher J. ;
Watson, Gregory S. ;
Watson, Jolanta A. ;
Crawford, Russell J. ;
Ivanova, Elena P. .
BIOPHYSICAL JOURNAL, 2013, 104 (04) :835-840
[58]  
Price JS, 1996, J BIOMED MATER RES, V30, P281, DOI 10.1002/(SICI)1097-4636(199603)30:3<281::AID-JBM2>3.0.CO
[59]  
2-M
[60]   Multifunctional silane polymers for persistent surface derivatization and their antimicrobial properties [J].
Sambhy, Varun ;
Peterson, Blake R. ;
Sen, Ayusman .
LANGMUIR, 2008, 24 (14) :7549-7558