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首页> 外文期刊>Military Medicine: Official Journal of AMSUS, The Society of the Federal Health Agencies >Clostridium sphenoides Chronic Osteomyelitis Diagnosed Via Matrix-Assisted Laser Desorption Ionization Time of Flight Mass Spectrometry, Conflicting With 16S rRNA Sequencing but Confirmed by Whole Genome Sequencing
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Clostridium sphenoides Chronic Osteomyelitis Diagnosed Via Matrix-Assisted Laser Desorption Ionization Time of Flight Mass Spectrometry, Conflicting With 16S rRNA Sequencing but Confirmed by Whole Genome Sequencing

机译:Clostridium sphenoides慢性骨髓炎通过基质辅助激光解吸电离时间的飞行质谱,与16s rRNA测序相冲突,但通过全基因组测序证实

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摘要

We report a case of successful treatment of chronic osteomyelitis (emanating from contaminated soil exposure) caused by Clostridium sphenoides, an organism infrequently identified as a cause of human infection and more saliently osteomyelitis (only 1 reported case in the literature). Additional impetus for reporting this case resides in the insights gained regarding pathogen identification exploiting sophisticated molecular platforms coupled to traditional microbial culture-based methods. The fastidious nature of cultivating anaerobic organisms required initial attempts at 16S rRNA sequencing to identify a Clostridium species (Clostridium celerecrescens). However, on exploiting matrixassisted laser desorption ionization time of flight (MALDI TOF) technology, C. sphenoides was identified, and confirmed on whole genome sequencing. The discrepancies noted in the varying platforms require vigilance to seek complementary testing for conflicting results. Although highly accurate, the MALDI TOF and 16S rRNA sequencing platforms are not immune to false identification particularly in differentiating closely related organisms. More germane, whole genome sequencing should be entertained when conflicting results are obtained from MALDI TOF and 16S rRNA sequencing. Precise species and/or strain level identification can be clinically relevant as antimicrobial sensitivity profiles may be discrepant between closely related species influencing clinical outcomes. Thus, it is incumbent on us to strive to acquire the correct species characterization when resources allow to dictate optimal treatment.
机译:我们举报了由梭菌蝶窦引起的慢性骨髓炎(从受污染的土壤暴露中发出)成功治疗的情况,生物不经常被鉴定为人类感染的原因,更沉重的骨髓炎(文献中只有1例报告的病例)。额外的报告动力出现这种情况存在于有关对传统微生物培养的方法偶联的复杂分子平台获得的病原体鉴定的见解中。培养厌氧生物的苛刻性质需要16S rRNA测序的初始尝试,以鉴定梭菌种类(Clostridium Celerecrescens)。然而,在利用基质划分的激光解吸电离电离时间(MALDI TOF)技术,鉴定C.蝶窦,并在全基因组测序上证实。不同平台中指出的差异需要警惕寻求对互补结果的互补测试。虽然高精度,但MALDI TOF和16S rRNA测序平台并不针对虚假鉴定,特别是在区分密切相关的生物中。在从马尔迪TOF获得冲突的结果和16S rRNA测序时,应娱乐更多的锗。精确物种和/或菌株水平鉴定可以临床相关,因为可以在影响临床结果的密切相关的物种之间差异差异。因此,当资源允许决定最佳治疗时,我们努力获得正确的物种表征。

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