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Identification and antimicrobial susceptibility testing of anaerobic bacteria: Rubik's cube of clinical microbiology?

机译:厌氧菌的鉴定和抗菌药敏试验:鲁比克临床微生物学的魔方?

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摘要

Anaerobic bacteria have pivotal roles in the microbiota of humans and they are significant infectious agents involved in many pathological processes, both in immunocompetent and immunocompromised individuals. Their isolation, cultivation and correct identification differs significantly from the workup of aerobic species, although the use of new technologies (e.g., matrix-assisted laser desorption/ionization time-of-flight mass spectrometry, whole genome sequencing) changed anaerobic diagnostics dramatically. In the past, antimicrobial susceptibility of these microorganisms showed predictable patterns and empirical therapy could be safely administered but recently a steady and clear increase in the resistance for several important drugs (beta-lactams, clindamycin) has been observed worldwide. For this reason, antimicrobial susceptibility testing of anaerobic isolates for surveillance purposes or otherwise is of paramount importance but the availability of these testing methods is usually limited. In this present review, our aim was to give an overview of the methods currently available for the identification (using phenotypic characteristics, biochemical testing, gas-liquid chromatography, MALDI-TOF MS and WGS) and antimicrobial susceptibility testing (agar dilution, broth microdilution, disk diffusion, gradient tests, automated systems, phenotypic and molecular resistance detection techniques) of anaerobes, when should these methods be used and what are the recent developments in resistance patterns of anaerobic bacteria.
机译:厌氧细菌在人类微生物区系中起着关键作用,它们是参与许多病理过程的重要感染因子,无论是免疫能力强的还是免疫功能低下的个体。尽管使用了新技术(例如基质辅助激光解吸/电离飞行时间质谱,全基因组测序)显着改变了厌氧诊断,但它们的分离,培养和正确鉴定与需氧菌种的处理有很大不同。过去,这些微生物的耐药性显示出可预测的模式,可以安全地进行经验性治疗,但是最近在世界范围内已观察到对几种重要药物(β-内酰胺类,克林霉素)的耐药性呈稳定而明显的增长。因此,出于监视目的或其他目的对厌氧菌进行抗菌药敏试验至关重要,但这些检测方法的可用性通常受到限制。在本综述中,我们的目的是概述当前可用于鉴定的方法(使用表型特征,生化测试,气液色谱,MALDI-TOF MS和WGS)和抗菌药敏测试(琼脂稀释,肉汤微量稀释) ,厌氧菌的圆盘扩散,梯度测试,自动化系统,表型和分子耐药性检测技术),何时应使用这些方法以及厌氧菌耐药性模式的最新进展。

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