D'Aquila Patrizia, De Rose Elisabetta, Sena Giada, Scorza Angelo, Cretella Bonaventura, Passarino Giuseppe, Bellizzi Dina
Department of Biology, Ecology and Earth Sciences, University of Calabria, 87036 Rende, Italy.
Villa Ermelinda, Progetto Terza Età, 88842 Cutro, Italy.
Antibiotics (Basel). 2024 Jul 3;13(7):619. doi: 10.3390/antibiotics13070619.
With the widespread phenomenon of antibiotic resistance and the diffusion of multiple drug-resistant bacterial strains, enormous efforts are being conducted to identify suitable alternative agents against pathogenic microorganisms. Since an association between biofilm formation and antibiotic resistance phenotype has been observed, a promising strategy pursued in recent years focuses on controlling and preventing this formation by targeting and inhibiting the Quorum Sensing (QS) system, whose central role in biofilm has been extensively demonstrated. Therefore, the research and development of Quorum Quenching (QQ) compounds, which inhibit QS, has gradually attracted the attention of researchers and has become a new strategy for controlling harmful microorganisms. Among these, a number of both natural and synthetic compounds have been progressively identified as able to interrupt the intercellular communication within a microbial community and the adhesion to a surface, thus disintegrating mature/preformed biofilms. This review describes the role played by QS in the formation of bacterial biofilms and then focuses on the mechanisms of different natural and synthetic QS inhibitors (QSIs) exhibiting promising antibiofilm ability against Gram-positive and Gram-negative bacterial pathogens and on their applications as biocontrol strategies in various fields.
随着抗生素耐药性的普遍现象以及多重耐药细菌菌株的扩散,人们正在付出巨大努力来寻找对抗病原微生物的合适替代药物。由于已观察到生物膜形成与抗生素耐药表型之间存在关联,近年来所采用的一种有前景的策略聚焦于通过靶向和抑制群体感应(QS)系统来控制和预防生物膜的形成,该系统在生物膜中的核心作用已得到广泛证实。因此,抑制QS的群体淬灭(QQ)化合物的研发逐渐引起了研究人员的关注,并已成为控制有害微生物的一种新策略。其中,一些天然和合成化合物已逐渐被确定能够中断微生物群落内的细胞间通讯以及对表面的粘附,从而分解成熟/预先形成的生物膜。本综述描述了QS在细菌生物膜形成中所起的作用,然后重点关注不同天然和合成群体感应抑制剂(QSIs)对革兰氏阳性和革兰氏阴性细菌病原体展现出有前景的抗生物膜能力的作用机制,以及它们作为生物防治策略在各个领域的应用。