Synergistic Role of Biofilm-Associated Genes and Efflux Pump Genes in Tigecycline Resistance of Acinetobacter baumannii.

Bin Luo, Zhiwei Li, Qian Wang, Changmin Wang
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Abstract

BACKGROUND Previous research reported that the resistance mechanism of Acinetobacter baumannii resistance to tigecycline was mainly related to the overexpression of the AdeABC efflux pump system. Biofilm formation is a notable pathogenesis of A. baumannii infections and antibiotic resistance. Our study explores the latent relevance of biofilm-associated genes and efflux pump genes in A. baumannii tigecycline resistance. MATERIAL AND METHODS A total of 78 clinical samples were collected from October 2018 to October 2019. Seventy-two clinically isolated A. baumannii strains were divided into a tigecycline-resistant Acinetobacter baumannii (TR-AN) group and tigecycline-sensitive Acinetobacter baumannii (TS-AN) group by tigecycline minimum inhibitory concentration tests. The biofilm formation of the 2 groups was observed using crystal violet staining. Furthermore, biofilm-related genes and efflux pump genes were analyzed by RT-PCR. RESULTS The biofilm-forming rate of the TR-AN group was 82.2%, and that of the TS-AN group was 14.8%. The biofilm synthesis gene bfs was 91.3% positive in the TR-AN group, significantly higher than in the TS-AN group at the transcription level (P<0.05). The minimum inhibitory concentration of tigecycline was higher in the TR-AN group with biofilm formation than in the TR-AN group without biofilm formation (P<0.05). The efflux pump AdeB gene was 95.2% positive in the TR-AN group with biofilm formation and 38.7% positive in the TR-AN group without biofilm formation. CONCLUSIONS The biofilm formation of A. baumannii may be positively related to tigecycline resistance ability because of the co-expression of the bfs gene and the AdeB efflux pump gene. The enhanced transcription level of bfs and AdeB promotes biofilm formation to improve the resistance of A. baumannii to tigecycline.

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生物膜相关基因和外排泵基因在鲍曼不动杆菌对替加环素耐药中的协同作用
背景以往研究报道鲍曼不动杆菌对替加环素耐药的耐药机制主要与AdeABC外排泵系统的过表达有关。生物膜形成是鲍曼不动杆菌感染和耐药性的重要发病机制。我们的研究探讨了生物膜相关基因和外排泵基因在鲍曼不动杆菌替加环素耐药中的潜在相关性。材料与方法2018年10月至2019年10月共收集临床标本78例。采用替加环素最低抑菌浓度试验将72株临床分离鲍曼不动杆菌分为耐替加环素鲍曼不动杆菌(TR-AN)组和耐替加环素鲍曼不动杆菌(TS-AN)组。结晶紫染色观察两组生物膜形成情况。此外,通过RT-PCR分析生物膜相关基因和外排泵基因。结果TR-AN组生物成膜率为82.2%,TS-AN组为14.8%。在转录水平上,TR-AN组生物膜合成基因bfs阳性率为91.3%,显著高于TS-AN组(P
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