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拉曼光谱法直接鉴定固体培养物上临床相关的细菌和酵母微菌落和大菌落。

Direct identification of clinically relevant bacterial and yeast microcolonies and macrocolonies on solid culture media by Raman spectroscopy.

机构信息

CEA, LIST, Département Métrologie, Instrumentation et Information, 91191 Gif-sur-Yvette, France.

bioMérieux, Technology Research Department, 5 rue des Berges, 38000 Grenoble, France.

出版信息

J Biomed Opt. 2014 Feb;19(2):027004. doi: 10.1117/1.JBO.19.2.027004.

Abstract

Decreasing turnaround time is a paramount objective in clinical diagnosis. We evaluated the discrimination power of Raman spectroscopy when analyzing colonies from 80 strains belonging to nine bacterial and one yeast species directly on solid culture medium after 24-h (macrocolonies) and 6-h (microcolonies) incubation. This approach, that minimizes sample preparation and culture time, would allow resuming culture after identification to perform downstream antibiotic susceptibility testing. Correct identification rates measured for macrocolonies and microcolonies reached 94.1% and 91.5%, respectively, in a leave-one-strain-out cross-validation mode without any correction for possible medium interference. Large spectral differences were observed between macrocolonies and microcolonies, that were attributed to true biological differences. Our results, conducted on a very diversified panel of species and strains, were obtained by using simple and robust sample preparation and preprocessing procedures, while still confirming published results obtained by using more complex elaborated protocols. Instrumentation is simplified by the use of 532-nm laser excitation yielding a Raman signal in the visible range. It is, to our knowledge, the first side-by-side full classification study of microorganisms in the exponential and stationary phases confirming the excellent performance of Raman spectroscopy for early species-level identification of microorganisms directly from an agar culture.

摘要

缩短周转时间是临床诊断的首要目标。我们评估了拉曼光谱在分析直接在固体培养物上培养 24 小时(大菌落)和 6 小时(小菌落)后的 80 株属于 9 种细菌和 1 种酵母的菌株的菌落时的区分能力。这种方法最大限度地减少了样品制备和培养时间,可在鉴定后恢复培养,以进行下游抗生素药敏试验。在不进行任何可能的培养基干扰校正的情况下,在一种一菌株外交叉验证模式下,大菌落和小菌落的正确鉴定率分别达到 94.1%和 91.5%。大菌落和小菌落之间观察到很大的光谱差异,这归因于真正的生物学差异。我们的结果是在使用简单而稳健的样品制备和预处理程序的基础上,对非常多样化的物种和菌株进行的,同时仍然确认了使用更复杂的精心设计的方案获得的已发表的结果。通过使用 532nm 激光激发,仪器得到简化,产生可见范围内的拉曼信号。据我们所知,这是首次对处于指数和静止期的微生物进行并排全分类研究,证实了拉曼光谱在直接从琼脂培养物中对微生物进行早期种水平鉴定方面的出色性能。

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