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Evaluation of Biofilm Formation and Frequency of Multidrug-resistant and Extended Drug-resistant Strain in Pseudomonas aeruginosa Isolated from Burn Patients in Isfahan

机译:伊斯法罕烧伤患者分离的铜绿假单胞菌的生物膜形成和多药耐药和扩展耐药株的频率评估

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Background: Pseudomonas aeruginosa is a biofilm-forming bacterium which can result in serious health problems, particularly in burn patients. Biofilm has been assumed to protect the bacteria from environmental fluctuations such as antimicrobial agent. Mucoid strains generate extensive levels of the alginate exopolysaccharide, which is an important factor of its biofilm. Materials and Methods: Totally, 100 isolates of P. aeruginosa has been gathered from wound infections of burn patients. Polymerase chain reaction of exoA gene has been carried out to confirm the bacteriologic identification of isolates. The biofilm-forming capacity has been specified by capsule staining and microtiter plate test as qualitative and quantitative determination, respectively. Antimicrobial susceptibility of the isolates has been specified by disk diffusion method. Results: All the isolates carried the exoA gene. The antibiotic resistance was imipenem (90%); levofloxacin (93%); aztreonam (87%); piperacillin-tazobactam (85%); tobramycin (92%); polymyxin b (PB) (2%); and ceftazidime (CAZ) (32%). Totally, multidrug-resistant (MDR) and extended drug-resistant (XDR) isolates were 19% and 75%, respectively. Fortunately, pan drug-resistant (PDR) strain has not been observed. The assessment of biofilm formation has shown that 7% of the isolates were nonbiofilm (N), weak (W) 67%, moderate (M) 22%, and strong (S) 4%. Conclusions: As a result, the findings of this survey indicated that PB and CAZ were the most effective antibiotics against P. aeruginosa , which of course indicate a serious problem about the emergence of the PDR strains. There was no relationship between the patterns of biofilm production and antibiotic susceptibility, but high frequency of MDR/XDR and biofilm producer strains has been detected.
机译:背景:铜绿假单胞菌是形成生物膜的细菌,可导致严重的健康问题,尤其是在烧伤患者中。生物膜被认为可以保护细菌免受环境波动的影响,例如抗菌剂。粘液样菌株产生大量的藻酸盐胞外多糖,这是其生物膜的重要因素。材料和方法:总共从烧伤患者的伤口感染中收集了100株铜绿假单胞菌。已经进行了exoA基因的聚合酶链反应,以确认分离株的细菌学鉴定。生物膜形成能力已通过胶囊染色和微量滴定板测试分别指定为定性和定量测定。分离物的抗药性已经通过圆盘扩散法确定。结果:所有分离株均携带exoA基因。抗生素耐药性为亚胺培南(90%);左氧氟沙星(93%);氨曲南(87%);哌拉西林-他唑巴坦(85%);妥布霉素(92%);多粘菌素b(PB)(2%);和头孢他啶(CAZ)(32%)。总体而言,耐多药(MDR)和耐扩展药(XDR)分离株分别为19%和75%。幸运的是,尚未发现泛耐药性(PDR)菌株。生物膜形成的评估表明,分离株的7%为非生物膜(N),弱(W)67%,中度(M)22%和强(S)4%。结论:结果,本次调查的结果表明,PB和CAZ是对铜绿假单胞菌最有效的抗生素,这当然表明了PDR菌株出现的严重问题。生物膜产生的模式与抗生素敏感性之间没有关系,但已检测到高频率的MDR / XDR和生物膜产生菌株。

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