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The relation of phylogroups, serogroups, virulence factors and resistance pattern of Escherichia coli isolated from children with septicemia

机译:败血病患儿大肠杆菌群,血清群,毒力因子与耐药模式的关系

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The characterization of virulent and drug-resistant Escherichia coli strains helps to control and provide more accurate information regarding infection and eradication. The aim of this study was to determine the relationship between antibiotic susceptibility, phylogroups and virulence factors of E.?coli isolates from children with septicaemia. One hundred dereplicated E.?coli isolates were collected from paediatric patients with septicaemia in five hospitals in Tehran (May 2015 to May 2018). The antibiotic susceptibility of isolates was performed as per the 2016 guidelines of the Clinical and Laboratory Standards Institute. Extended-spectrum β-lactamases and carbapenemase genes, phylogroups, serogroups and virulence encoding genes were detected by PCR. Phylogroup B2 was dominant (40%) among strains, followed by phylogroups D (30%), A (8%) and B1 (7%). CTX-M1 was significantly higher in the B2 group ( n ?= 21, p 0.001). Furthermore, the virulence genes iutA ( n ?= 27, p 0.002), csgA ( n ?= 39, p 0.001), kpsMII ( n ?= 39, p 0.002), ibeA ( n ?= 4, p 0.004), vat ( n ?= 5, p 0.003), traT ( n ?= 24, p 0.001), sat ( n ?= 12, p 0.001) and hlyA ( n ?= 33, p 0.001) showed significantly higher rates in phylogroup B2. Three O25/CTXM1/OXA-48 and cnf, iutA, csgA and traT positive isolates belonged to phylogroup B2. Pulsed-field gel electrophoresis analysis showed 85% similarity among 25% of isolates. More than half of the isolates were multidrug-resistant E.?coli. A significant relation was observed among iutA, csgA, kpsMII, ibeA, vat, traT, sat and hlyA genes and phylogroup B2. The characterization of virulent and drug-resistant strains helps control and properly eliminate infections. There was no genetic relation among strains in the pulsed-field gel electrophoresis pattern.
机译:毒性和耐药性大肠杆菌菌株的鉴定有助于控制并提供有关感染和根除的更准确信息。这项研究的目的是确定败血症儿童大肠杆菌分离株的抗生素敏感性,系统群和毒力因子之间的关系。在德黑兰的五家医院(2015年5月至2018年5月)收集了100份重复复制的大肠杆菌分离株,这些菌株来自败血症的儿科患者。分离株的抗生素敏感性按照临床和实验室标准协会2016年指南进行。通过PCR检测超广谱β-内酰胺酶和碳青霉烯酶基因,系统群,血清群和毒力编码基因。在菌株中,Phylogroup B2占主导地位(40%),其次是phylogroups D(30%),A(8%)和B1(7%)。 B2组中的CTX-M1明显更高(n = 21,p 0.001)。此外,毒力基因iutA(n = 27,p 0.002),csgA(n = 39,p <0.001),kpsMII(n = 39,p 0.002),ibeA(n = 4,p 0.004),增值税(n = 5,p = 0.003),traT(n = 24,p <0.001),sat(n = 12,p 0.001)和hlyA(n = 33,p <0.001)显着高于phylogroup B2。三个O25 / CTXM1 / OXA-48和cnf,iutA,csgA和traT阳性分离株属于系统群B2。脉冲场凝胶电泳分析显示25%的分离株之间有85%的相似性。超过一半的分离物是耐多药大肠杆菌。在iutA,csgA,kpsMII,ibeA,增值税,traT,sat和hlyA基因与系统群B2之间观察到显着关系。毒性和耐药菌株的特征有助于控制并适当消除感染。脉冲场凝胶电泳图中菌株之间没有遗传关系。

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