Kafil Hossein Samadi, Mobarez Ashraf Mohabati, Moghadam Mehdi Forouzandeh, Hashemi Zahra Sadat, Yousefi Mehdi
Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran; Department of Bacteriology, Faculty of Medical Sciences, Tehran, Iran.
Department of Bacteriology, Faculty of Medical Sciences, Tehran, Iran.
Microb Pathog. 2016 Mar;92:30-35. doi: 10.1016/j.micpath.2015.12.008. Epub 2015 Dec 25.
Enterococci have been ranked among the leading causes of nosocomial bacteremia and urinary tract infection. This study aimed to investigate the effect of ampicillin, vancomycin, gentamicin and ceftizoxime on biofilm formation and gene expression of colonization factors on Enterococcus faecalis. Twelve clinical isolates of E. faecalis were used to investigate the effect of antibiotics on biofilm formation and gene expression of efaA, asa1, ebpA, esp and ace. Flow system assay and Microtiter plates were used for biofilm assay. Two hundred clinical isolates were used for confirming the effect of antibiotics on biofilm formation. Ampicillin, vancomycin and ceftizoxime did not have any significant effect on biofilm formation, but gentamicin induced biofilm formation in 89% of isolates. In twelve selected isolate gentamicin increased expression of esp (+50.9%) and efaA (+33.9%) genes and reduced or maintained expression of others (asa1:-47.4%, ebpA: 0, ace:-19.2%). Vancomycin increased expression of esp (+89.1%) but reduced the others (asa1: -34.9%, ebpA:-11%, ace:-30%, efaA:-60%). Ceftizoxime increased slightly ebpA (+19.7%) and reduced others (asa1:-66.2%, esp:-35%, ace:-28.1%, efaA:-38.4%). and ampicillin strongly increased expression of ace (+231%), esp (+131%) and ebpA (+83%) but reduced others (asa1:-85.5%, efaA:-47.4%). The findings of the present study showed that antibiotics may have a role in biofilm formation and sustainability of enterococci, especially in case of gentamicin. efaA gene may have an important role, especially in antibiotic induced biofilm formation by gentamicin. Experiments with efaA mutants are needed to investigate the exact effect of efaA on biofilm formation with antibiotic induced cells.
肠球菌一直位列医院获得性菌血症和尿路感染的主要病因之中。本研究旨在探究氨苄西林、万古霉素、庆大霉素和头孢唑肟对粪肠球菌生物膜形成及定植因子基因表达的影响。使用12株粪肠球菌临床分离株来研究抗生素对生物膜形成及efaA、asa1、ebpA、esp和ace基因表达的影响。采用流动系统分析法和微量滴定板进行生物膜检测。使用200株临床分离株来确认抗生素对生物膜形成的影响。氨苄西林、万古霉素和头孢唑肟对生物膜形成均无显著影响,但庆大霉素可诱导89%的分离株形成生物膜。在12株选定的分离株中,庆大霉素使esp基因表达增加(+50.9%),efaA基因表达增加(+33.9%),而其他基因(asa1:-47.4%,ebpA:0,ace:-19.2%)的表达则降低或维持不变。万古霉素使esp基因表达增加(+89.1%),但其他基因(asa1:-34.9%,ebpA:-11%,ace:-30%,efaA:-60%)的表达降低。头孢唑肟使ebpA基因表达略有增加(+19.7%),其他基因(asa1:-66.2%,esp:-35%,ace:-28.1%,efaA:-38.4%)的表达降低。氨苄西林则使ace基因表达大幅增加(+231%),esp基因表达增加(+131%),ebpA基因表达增加(+83%),但其他基因(asa1:-85.5%,efaA:-47.4%)的表达降低。本研究结果表明,抗生素可能在肠球菌生物膜形成及维持中发挥作用,尤其是庆大霉素。efaA基因可能具有重要作用,特别是在庆大霉素诱导的生物膜形成中。需要对efaA突变体进行实验,以研究efaA对抗生素诱导细胞生物膜形成的确切影响。