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Evaluation of the New VITEK 2 Extended-Spectrum Beta-Lactamase (ESBL) Test for Rapid Detection of ESBL Production in Enterobacteriaceae Isolates

机译:快速检测肠杆菌科细菌中ESBL产生的新型VITEK 2广谱β-内酰胺酶(ESBL)测试的评估

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摘要

Extended-spectrum beta-lactamases (ESBLs) are a large, rapidly evolving group of enzymes that confer resistance to oxyimino cephalosporins and monobactams and are inhibited by clavulanate. Rapid reliable detection of ESBL production is a prerequisite for successful infection management and for monitoring resistance trends and implementation of intervention strategies. We evaluated the performance of the new VITEK 2 ESBL test system (bioMérieux, Inc, Hazelwood, Mo.) in the identification of ESBL-producing Enterobacteriaceae isolates. We examined a total of 1,129 clinically relevant Enterobacteriaceae isolates (including 218 that had been previously characterized). The ESBL classification furnished by the VITEK 2 ESBL test system was concordant with that of the comparison method (molecular identification of beta-lactamase genes) for 1,121 (99.3%) of the 1,129 isolates evaluated. ESBL production was correctly detected in 306 of the 312 ESBL-producing organisms (sensitivity, 98.1%; positive predictive value, 99.3%). False-positive results emerged for 2 of the 817 ESBL-negative isolates (specificity, 99.7%; negative predictive value, 99.3%). VITEK 2 ESBL testing took 6 to 13 h (median, 7.5 h; mean ± SD, 8.2 ± 2.39 h). This automated short-incubation system appears to be a rapid and reliable tool for routine identification of ESBL-producing isolates of Enterobacteriaceae.
机译:广谱β-内酰胺酶(ESBLs)是一大类快速发展的酶,可赋予对氧亚氨基头孢菌素和单bactams的抗性,并被克拉维酸盐抑制。快速可靠地检测ESBL的生产是成功进行感染管理,监测耐药性趋势和实施干预策略的前提。我们评估了新的VITEK 2 ESBL测试系统(bioMérieux,Inc,Hazelwood,MO)在鉴定产生ESBL肠杆菌科细菌中的性能。我们检查了总共1,129例临床相关的肠杆菌科细菌(包括先前已鉴定的218种)。 VITEK 2 ESBL测试系统提供的ESBL分类与比较方法(β-内酰胺酶基因的分子鉴定)的一致性,适用于所评估的1,129株菌株中的1,121(99.3%)。在312个ESBL产生生物中的306个中正确检测到ESBL产生(敏感性为98.1%;阳性预测值为99.3%)。 817例ESBL阴性分离物中有2例假阳性结果(特异性为99.7%;阴性预测值为99.3%)。 VITEK 2 ESBL测试耗时6至13小时(中位数为7.5小时;平均值为±SD,为8.2±2.39小时)。这种自动化的短温培养系统似乎是用于常规鉴定产肠杆菌科细菌的ESBL分离物的快速可靠的工具。

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