Chen Kun, Peng Chuantao, Chi Fang, Yu Chundi, Yang Qingli, Li Zhaojie
College of Food Science and Engineering, Qingdao Agricultural University, Qingdao, China.
Qingdao Special Food Research Institute, Qingdao, China.
Front Microbiol. 2022 May 4;13:885092. doi: 10.3389/fmicb.2022.885092. eCollection 2022.
Nowadays, developing new and natural compounds with antibacterial activities from plants has become a promising approach to solve antibiotic resistance of pathogenic bacteria. Chlorogenic acid (CA), as a kind of phenolic acid existing in many plants, has been found to process multifunctional activities including antibacterial activity. Herein, the antibacterial and antibiofilm activities of CA against () were tested for the first time, and its mechanism of action was investigated. It was demonstrated that CA could exert outstanding antibacterial activity against . Biofilm susceptibility assays further indicated that CA could inhibit biofilm formation and decrease the established biofilm biomass of . It was deduced that through binding to , CA destroyed the cell membrane, increased the membrane permeability, and led to bacterial cell damage. In addition, the transcriptomic analysis revealed that CA could disorder many physiological pathways, mainly including the ones of antagonizing biofilms and increasing cell membrane permeability. Finally, the spiked assay showed that the growth of in milk was significantly inhibited by CA. Taken together, CA, as an effective bactericidal effector with application potential, exerts antagonistic activity against by mainly intervening biofilm formation and membrane permeability-related physiological pathways.
如今,从植物中开发具有抗菌活性的新型天然化合物已成为解决病原菌抗生素耐药性的一种有前景的方法。绿原酸(CA)作为一种存在于许多植物中的酚酸,已被发现具有包括抗菌活性在内的多种功能活性。在此,首次测试了CA对()的抗菌和抗生物膜活性,并研究了其作用机制。结果表明,CA对()可发挥出色的抗菌活性。生物膜敏感性试验进一步表明,CA可抑制生物膜形成并降低已形成的()生物膜生物量。据推测,CA通过与()结合,破坏细胞膜,增加膜通透性,导致细菌细胞损伤。此外,转录组分析显示,CA可扰乱许多生理途径,主要包括拮抗生物膜和增加细胞膜通透性的途径。最后,加标试验表明,CA可显著抑制牛奶中()的生长。综上所述,CA作为一种具有应用潜力的有效杀菌效应物,主要通过干预生物膜形成和与膜通透性相关的生理途径对()发挥拮抗活性。