群体感应
群体猝灭
生物膜
抗菌剂
抗生素耐药性
微生物学
抗生素
多重耐药
生物
细菌
遗传学
作者
Brahma N. Singh,Prateeksha,D. K. Upreti,Braj Raj Singh,Tom Defoirdt,Vijai Kumar Gupta,Ana Olı́via de Souza,Harikesh Bahadur Singh,João C.M. Barreira,Isabel C.F.R. Ferreira,Khabat Vahabi
标识
DOI:10.1080/07388551.2016.1199010
摘要
Despite several conventional potent antibacterial therapies, bacterial infections pose a significant threat to human health because they are emerging as the leading cause of death worldwide. Due to the development of antibiotic resistance in bacteria, there is a pressing demand to discover novel approaches for developing more effective therapies to treat multidrug-resistant bacterial strains and biofilm-associated infections. Therefore, attention has been especially devoted to a new and emerging branch of science "nanotechnology" to design non-conventional antimicrobial chemotherapies. A range of nanomaterials and nano-sized carriers for conventional antimicrobial agents have fully justified their potential to combat bacterial diseases by reducing cell viability, by attenuating quorum sensing, and by inhibiting/or eradicating biofilms. This communication summarizes emerging nano-antimicrobial therapies in treating bacterial infections, particularly using antibacterial, quorum quenching, and anti-biofilm nanomaterials as new approaches to tackle the current challenges in combating infectious diseases.
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