Pharmaceutical Sciences Laboratory, Faculty of Science and Engineering, Åbo Akademi University, Artillerigatan 6A, FI-20520 Turku, Finland.
Pharmaceutical Design and Discovery (PharmDD), Pharmaceutical Biology, Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, Viikinkaari 5E, P.O. Box 56, FI-00014 Helsinki, Finland.
Int J Mol Sci. 2018 May 3;19(5):1346. doi: 10.3390/ijms19051346.
Owing to the failure of conventional antibiotics in biofilm control, alternative approaches are urgently needed. Inhibition of quorum sensing (QS) represents an attractive target since it is involved in several processes essential for biofilm formation. In this study, a compound library of natural product derivatives ( = 3040) was screened for anti-quorum sensing activity using as reporter bacteria. Screening assays, based on QS-mediated violacein production and viability, were performed in parallel to identify non-bactericidal QS inhibitors (QSIs). Nine highly active QSIs were identified, while 328 compounds were classified as moderately actives and 2062 compounds as inactives. Re-testing of the highly actives at a lower concentration against , complemented by a literature search, led to the identification of two flavonoid derivatives as the most potent QSIs, and their impact on biofilm maturation in and was further investigated. Finally, effects of these leads on swimming and swarming motility of were quantified. The identified flavonoids affected all the studied QS-related functions at micromolar concentrations. These compounds can serve as starting points for further optimization and development of more potent QSIs as adjunctive agents used with antibiotics in the treatment of biofilms.
由于传统抗生素在生物膜控制方面的失效,迫切需要替代方法。抑制群体感应 (QS) 是一个很有吸引力的目标,因为它涉及到生物膜形成所必需的几个过程。在这项研究中,使用 作为报告细菌,对天然产物衍生物化合物库(= 3040)进行了抗群体感应活性筛选。基于 QS 介导的紫色素产生和活力的筛选测定平行进行,以鉴定非杀菌性群体感应抑制剂 (QSIs)。鉴定出 9 种高活性 QSIs,而 328 种化合物被归类为中度活性,2062 种化合物为非活性。在较低浓度下对 重新测试高活性化合物,并结合文献检索,鉴定出两种黄酮类衍生物作为最有效的 QSIs,进一步研究了它们对 和 生物膜成熟的影响。最后,量化了这些先导化合物对 泳动和群集运动的影响。所鉴定的类黄酮在微摩尔浓度下影响所有研究的与 QS 相关的功能。这些化合物可以作为进一步优化和开发更有效的 QSIs 的起点,作为抗生素治疗生物膜的辅助剂。