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Rapid Phenotypic Detection of Microbial Resistance in Gram-Positive Bacteria by a Real-Time Laser Scattering Method

机译:实时激光散射法快速鉴定革兰氏阳性细菌中的微生物耐药性

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摘要

We developed a methodology for antimicrobial susceptibility testing (AST) based on the BacterioScanTM216R laser scattering technology, using methicillin resistance in Staphylococcus aureus and vancomycin resistance in enterococci as exemplar for important resistance phenotypes. Fifty methicillin-resistant (MRSA) and 50 methicillin-susceptible (MSSA) S. aureus, as well as 50 vancomycin-resistant enterococci (VRE) and 50 vancomycin-susceptible enterococci (VSE) isolates were used for the study. Optimal test conditions were derived by investigating the effects of inoculum size, medium, incubation temperature and broth filtration. We proposed four different statistical approaches for rapid discrimination between resistant and susceptible bacteria. The statistical approach based on raw measurements of bacterial concentrations delivered sensitivity of 100% and specificity of 94% for discrimination between MRSA and MSSA already after 3 hours of incubation. Categorical agreement of ≥90% was achieved after 140 min with this approach. Differentiation between VRE and VSE was possible with 98% sensitivity and 92% specificity after 3 hours, using a sophisticated statistical approach based on concentration slopes derived from the raw concentration measurements. This approach provided categorical agreement of ≥90% after 165 min. The sensitivity and specificity estimates were confirmed by leave-one-out cross validation. In conclusion, the phenotypic AST methods developed in this study are promising for rapid detection of MRSA and VRE. The development and application of this technology would allow early detection of the resistant pathogens, thus facilitating swift change to the targeted antimicrobial treatment as well as timely initiation of appropriate infection control measures. Further studies are warranted to validate this approach for the detection of other resistance phenotypes, including direct testing from clinical specimens.
机译:我们基于BacterioScan TM 216R激光散射技术开发了一种药敏试验(AST)方法,利用金黄色葡萄球菌中的甲氧西林耐药性和肠球菌中的万古霉素耐药性作为重要耐药性表型的范例。本研究使用了50株耐甲氧西林(MRSA)和50株耐甲氧西林(MSSA)的金黄色葡萄球菌,50株耐万古霉素的肠球菌(VRE)和50株耐万古霉素的肠球菌(VSE)。通过研究接种量,培养基,培养温度和肉汤过滤的影响得出最佳测试条件。我们提出了四种不同的统计方法来快速区分耐药菌和易感细菌。基于细菌浓度原始测量值的统计方法在孵育3小时后对MRSA和MSSA的区分灵敏度达到100%,特异性为94%。 140分钟后,使用这种方法获得了≥90%的绝对一致性。使用基于原始浓度测量值的浓度斜率的复杂统计方法,可以在3小时后以98%的灵敏度和92%的特异性区分VRE和VSE。该方法在165分钟后提供了≥90%的绝对一致性。敏感性和特异性估计通过留一法交叉验证得到证实。总之,本研究开发的表型AST方法有望快速检测MRSA和VRE。该技术的发展和应用将允许及早发现耐药病原体,从而有助于迅速改变目标抗菌药物的治疗方法,并及时启动适当的感染控制措施。必须进行进一步的研究以验证这种方法可用于检测其他抗性表型,包括直接从临床标本中进行检测。

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