Khan Javairia, Tarar Sumbal Mudassar, Gul Iram, Nawaz Uzam, Arshad Muhammad
Institute of Environmental Sciences and Engineering, School of Civil and Environmental Engineering, National University of Sciences and Technology (NUST), Islamabad, Pakistan.
Department of Earth and Environmental Sciences, Hazara University, Mansehra, Pakistan.
3 Biotech. 2021 Apr;11(4):169. doi: 10.1007/s13205-021-02707-w. Epub 2021 Mar 16.
In this modern era, medicine is facing many alarming challenges. Among different challenges, antibiotics are gaining importance. Recent years have seen unprecedented increase in knowledge and understanding of various factors that are root cause of the spread and development of resistance in microbes against antibiotics. The infection results in the formation of microbial colonies which are termed as biofilms. However, it has been found that a multiple factors contribute in the formation of antimicrobial resistance. Due to higher dose of Minimum Bactericidal Concentration (MBC) as well as of Minimum Inhibitory Concentration (MIC), a large batch of antibiotics available today are of no use as they are ineffective against infections. Therefore, to control infections, there is dire need to adopt alternative treatment for biofilm infection other than antibiotics. This review highlights the latest techniques that are being used to cure the menace of biofilm infections. A wide range of mechanisms has been examined with particular attention towards avenues which can be proved fruitful in the treatment of biofilms. Besides, newer strategies, i.e., matrix centered are also discussed as alternative therapeutic techniques including modulating microbial metabolism, matrix degrading enzyme, photodynamic therapy, natural compounds quorum sensing and nanotechnology which are being used to disrupt extra polymeric substances (EPS) matrix of desired bacterial biofilms.
在这个现代时代,医学正面临着许多令人担忧的挑战。在不同的挑战中,抗生素正变得越来越重要。近年来,人们对各种导致微生物对抗生素产生耐药性传播和发展的因素的认识和理解有了前所未有的增长。感染会导致形成被称为生物膜的微生物菌落。然而,已经发现多种因素促成了抗菌耐药性的形成。由于如今大量抗生素的最低杀菌浓度(MBC)以及最低抑菌浓度(MIC)较高,它们对感染无效,因此毫无用处。所以,为了控制感染,迫切需要采用除抗生素之外的生物膜感染替代治疗方法。本综述重点介绍了目前用于治疗生物膜感染威胁的最新技术。已经研究了广泛的机制,特别关注那些在生物膜治疗中可能被证明有效的途径。此外,还讨论了以基质为中心的新策略,即作为替代治疗技术,包括调节微生物代谢、基质降解酶、光动力疗法、天然化合物群体感应和纳米技术,这些技术正被用于破坏所需细菌生物膜的胞外聚合物(EPS)基质。