Graz University of Technology, Institute of Environmental Biotechnology, Graz, Austria.
Biotechnol J. 2013 Jan;8(1):97-109. doi: 10.1002/biot.201200313.
With the increasing prevalence of antibiotic resistance, antimicrobial enzymes aimed at the disruption of bacterial cellular machinery and biofilm formation are under intense investigation. Several enzyme-based products have already been commercialized for application in the healthcare, food and biomedical industries. Successful removal of complex biofilms requires the use of multi-enzyme formulations that contain enzymes capable of degrading microbial DNA, polysaccharides, proteins and quorum-sensing molecules. The inclusion of anti-quorum sensing enzymes prevents biofilm reformation. The development of effective complex enzyme formulations is urgently needed to deal with the problems associated with biofilm formation in manufacturing, environmental protection and healthcare settings. Nevertheless, advances in synthetic biology, enzyme engineering and whole DNA-Sequencing technologies show great potential to facilitate the development of more effective antimicrobial and anti-biofilm enzymes.
随着抗生素耐药性的日益普遍,针对破坏细菌细胞机制和生物膜形成的抗菌酶受到了强烈关注。已经有几种基于酶的产品被商业化,用于医疗保健、食品和生物医学行业。成功去除复杂的生物膜需要使用包含能够降解微生物 DNA、多糖、蛋白质和群体感应分子的酶的多酶配方。包含抗群体感应酶可防止生物膜再形成。迫切需要开发有效的复合酶配方来解决与制造、环境保护和医疗保健环境中的生物膜形成相关的问题。然而,合成生物学、酶工程和全 DNA 测序技术的进步显示出极大的潜力,可促进更有效的抗菌和抗生物膜酶的开发。