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High Metabolic Potential May Contribute to the Success of ST131 Uropathogenic Escherichia coli

机译:高代谢潜能可能有助于ST131致病性大肠杆菌的成功

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摘要

Uropathogenic Escherichia coli (UPEC) is the predominant cause of urinary tract infection in both hospital and community settings. The recent emergence of multidrug-resistant clones like the O25b:H4-ST131 lineage represents a significant threat to health, and numerous studies have explored the virulence potential of these organisms. Members of the ST131 clone have been described as having variable carriage of key virulence factors, and it has been suggested that additional unidentified factors contribute to virulence. Here we demonstrated that ST131 isolates have high metabolic potential and biochemical profiles that distinguish them from isolates of many other sequence types (STs). A collection of 300 UPEC isolates recovered in 2007 and 2009 in the Northwest region of England were subjected to metabolic profiling using the Vitek2 Advanced Expert System (AES). Of the 47 tests carried out, 30 gave a positive result with at least one of the 300 isolates examined. ST131 isolates demonstrated significant association with eight tests, including those for peptidase, decarboxylase, and alkalinization activity. Metabolic activity also correlated with antibiotic susceptibility profiles, with resistant organisms displaying the highest metabolic potential. This is the first comprehensive study of metabolic potential in the ST131 lineage, and we suggest that high metabolic potential may have contributed to the fitness of members of the ST131 clone, which are able to exploit the available nutrients in both the intestinal and urinary tract environments.
机译:尿毒原性大肠杆菌(UPEC)是医院和社区环境中尿路感染的主要原因。像O25b:H4-ST131谱系这样的多药耐药克隆的最新出现对健康构成了重大威胁,许多研究已经探索了这些生物的潜在毒性。 ST131克隆的成员已被描述为具有关键毒力因子的可变携带,并且已经提出其他未知的因子会导致毒力。在这里,我们证明了ST131分离物具有很高的代谢潜能和生化特征,使其与许多其他序列类型(ST)的分离物区别开来。使用Vitek2 Advanced Expert System(AES)对英格兰西北地区2007年和2009年回收的300株UPEC分离株进行了代谢谱分析。在进行的47个测试中,有30个给出了阳性结果,其中300个分离株中至少有一个分离了。 ST131分离物与八项测试(包括肽酶,脱羧酶和碱化活性的测试)具有显着关联。代谢活性还与抗生素敏感性分布相关,耐药菌显示出最高的代谢潜能。这是对ST131谱系中代谢潜能的首次全面研究,我们建议高代谢潜能可能有助于ST131克隆成员的适应性,从而能够利用肠道和泌尿道环境中的可用营养素。

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