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Antibacterial Mechanism of Vanillic Acid on Physiological, Morphological, and Biofilm Properties of Carbapenem-Resistant Enterobacter hormaechei

机译:香草酸对碳青霉烯抗性霍马氏肠杆菌的生理,形态和生物膜特性的抗菌机制

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摘要

Many studies have evaluated the antimicrobial activity of natural products against various microorganisms, but to our knowledge there have been no studies of the possible use of natural products for their antimicrobial activity against Enterobacter hormaechei. In this study, we investigated vanillic acid (VA) for its antimicrobial activities and its modes of action against carbapenem-resistant E. hormaechei (CREH). The MIC of VA against CREH was determined by the agar diffusion method. The antibacterial action of VA against CREH was elucidated by measuring variations in intracellular ATP concentration, intracellular pH, membrane potential, and cell morphology. Moreover, the efficacy of VA against biofilm formation and VA damage to CREH cells embedded in biofilms were further explored. Our results show that VA was effective against CREH with a MIC of 0.8 mg/ mL. VA could rupture the cell membrane integrity of CREH, as measured by a decrease of intracellular ATP, pH, and membrane potential, along with distinctive alternations in cell morphology. In addition, VA exerted a remarkable inhibitory effect on the biofilm formation of CREH and also killed CREH cells within biofilms. These findings show that VA has a potent antibacterial and antibiofilm activity against CREH and, hence, has the potential to be used clinically as a novel candidate agent to treat CREH infections and in the food industry as a food preservative and surface disinfectant.
机译:许多研究已经评估了天然产物对各种微生物的抗微生物活性,但是据我们所知,还没有关于天然产物对霍马肠杆菌的抗微生物活性的可能用途的研究。在这项研究中,我们研究了香草酸(VA)的抗微生物活性及其对耐碳青霉烯类霍乱性大肠杆菌(CREH)的作用方式。通过琼脂扩散法确定VA对CREH的MIC。通过测量细胞内ATP浓度,细胞内pH,膜电位和细胞形态的变化,阐明了VA对CREH的抗菌作用。此外,还进一步探讨了VA对抗生物膜形成的功效以及VA对嵌入生物膜中的CREH细胞的损害。我们的结果表明,VA对CREH有效,MIC为0.8 mg / mL。 VA可以破坏CREH的细胞膜完整性,这可以通过细胞内ATP,pH和膜电位的降低以及细胞形态的明显变化来衡量。此外,VA对CREH的生物膜形成具有显着的抑制作用,并杀死了生物膜中的CREH细胞。这些发现表明,VA对CREH具有有效的抗菌和抗生物膜活性,因此,在临床上有可能被用作治疗CREH感染的新型候选药物,并在食品工业中用作食品防腐剂和表面消毒剂。

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