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Mass Spectrometric Identification of Propionibacterium Isolates Requires Database Enrichment

机译:丙酸杆菌菌株的质谱鉴定需要数据库丰富

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Propionibacterium species are mostly environmental bacteria, some being commensal of mammals including humans, and sometimes pathogenic. These bacteria are poorly identified using routine laboratory methods. Recently, Matrix Assisted Laser Desorption Ionization Time-of-Flight Mass Spectrometry (MALDI-TOF-MS) has emerged as a rapid and efficient method to identify bacterial species. We evaluated the use of MALDI-TOF-MS for identification of all validated Propionibacterium species. Only four of the 15 tested reference strains (26.7%) were correctly identified at the species level, and P. acnes, the most common human pathogenic species was not identified. When applying MALDI-TOF-MS to 48 P. acnes strains, only 18.7% were correctly identified, suggesting an intraspecific variability of proteic profiles among Propionibacterium strains. However, by enriching the Bruker database with spectra from five of these strains and re-testing the other 43 strains against this new database, 93.0% were correctly identified. Our study demonstrates that MALDI-TOF-MS may be used for the identification of Propionibacterium isolates but requires a database enrichment in spectra from additional isolates.
机译:丙酸杆菌种主要是环境细菌,有些是包括人类在内的哺乳动物的代称,有时是致病的。使用常规实验室方法很难识别这些细菌。最近,基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)成为一种快速有效的鉴定细菌种类的方法。我们评估了使用MALDI-TOF-MS鉴定所有经过验证的丙酸杆菌属物种。在物种水平上,仅正确鉴定了15个测试参考菌株中的4个(26.7%),而痤疮丙酸杆菌(最常见的人类致病物种)并未被鉴定。当将MALDI-TOF-MS应用于48个痤疮丙酸杆菌菌株时,仅正确鉴定出18.7%,这表明丙酸杆菌属菌株中蛋白质谱的种内变异性。但是,通过使用来自这些菌株中五个菌株的光谱富集到Bruker数据库,并针对此新数据库重新测试其他43个菌株,可以正确识别93.0%。我们的研究表明,MALDI-TOF-MS可以用于鉴定丙酸杆菌的分离物,但需要从其他分离物中提取光谱的数据库。

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