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评估BD PHOENIX自动化微生物系统检测凝固酶阴性葡萄球菌中甲氧西林耐药性的能力。

Evaluation of the BD PHOENIX automated microbiology system for detection of methicillin resistance in coagulase-negative staphylococci.

作者信息

Horstkotte Matthias A, Knobloch Johannes K-M, Rohde Holger, Dobinsky Sabine, Mack Dietrich

机构信息

Institut für Infektionsmedizin, Universitätsklinikum Hamburg-Eppendorf, Martinistrasse 52, D-20246 Hamburg, Germany.

出版信息

J Clin Microbiol. 2004 Nov;42(11):5041-6. doi: 10.1128/JCM.42.11.5041-5046.2004.

Abstract

The new BD PHOENIX automated microbiology system (Becton Dickinson Diagnostic Systems, Sparks, Md.) is designed for automated rapid antimicrobial susceptibility testing and identification of clinically relevant bacteria. In our study, the accuracy and speed of the BD PHOENIX oxacillin MIC determination for detecting methicillin resistance was evaluated for 200 clinical isolates of coagulase-negative staphylococci (CoNS). Compared to mecA PCR, the BD PHOENIX system detected methicillin resistance with a sensitivity of 99.2%. According to the actual NCCLS oxacillin MIC breakpoint of > or =0.5 microg/ml, the specificity was only 64.9%, attributable to false-positive results in 26 mecA-negative strains, including 16 non-Staphylococcus epidermidis strains. Alternative oxacillin breakpoints of > or =1, > or =2, and > or =4 microg/ml resulted in increased specificities of 83.8, 94.6, and 100% and high sensitivities of 99.2, 99.2, and 96.7%, respectively. Similarly, NCCLS broth microdilution oxacillin MICs exhibited a sensitivity of 100% but a low degree of specificity. However, the previous oxacillin MIC breakpoint of > or =4 microg/ml performed with a sensitivity of 98.4% and a specificity of 98.7%. BD PHOENIX oxacillin MIC results were available after 9 h for 40.5% of the examined CoNS strains and were completed after 17 h. Our results revealed the high reliability of the BD PHOENIX system as a phenotypic method for detection of resistance to oxacillin in mecA-positive CoNS. However, for the improvement of specificity, reevaluation of the optimal oxacillin MIC breakpoint for CoNS appears to be necessary.

摘要

新型BD PHOENIX自动化微生物系统(美国马里兰州斯帕克斯市贝克顿·迪金森诊断系统公司)旨在对临床相关细菌进行自动化快速药敏试验及鉴定。在我们的研究中,对200株凝固酶阴性葡萄球菌(CoNS)临床分离株检测了BD PHOENIX系统测定苯唑西林MIC以检测耐甲氧西林情况时的准确性和速度。与mecA聚合酶链反应(PCR)相比,BD PHOENIX系统检测耐甲氧西林的敏感性为99.2%。根据美国国家临床实验室标准化委员会(NCCLS)规定的苯唑西林MIC折点≥0.5 μg/ml,其特异性仅为64.9%,这是由于26株mecA阴性菌株出现假阳性结果,其中包括16株非表皮葡萄球菌菌株。苯唑西林折点分别为≥1、≥2和≥4 μg/ml时,特异性分别提高到83.8%、94.6%和100%,敏感性分别为99.2%、99.2%和96.7%。同样,NCCLS肉汤微量稀释法测定的苯唑西林MIC敏感性为100%,但特异性较低。然而,之前规定的苯唑西林MIC折点≥4 μg/ml时,敏感性为98.4%,特异性为98.7%。对于40.5%的受试CoNS菌株,9小时后可获得BD PHOENIX系统的苯唑西林MIC结果,17小时后全部完成。我们的结果显示,BD PHOENIX系统作为检测mecA阳性CoNS对苯唑西林耐药性的表型方法具有高度可靠性。然而,为提高特异性,似乎有必要重新评估CoNS的最佳苯唑西林MIC折点。

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