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The influence of culture conditions on the identification of Mycobacterium species by MALDI-TOF MS profiling

机译:培养条件对MALDI-TOF MS分析鉴定分枝杆菌种类的影响

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Matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS) represents a simple reliable approach for rapid bacterial identification based on specific peptide/protein fingerprints. However, cell-wall characteristics of mycobacterial species, and their well known stability, complicate MALDI-TOF MS profiling analysis. In this study, we tested two recently published protocols for inactivation and disruption of mycobacteria, and we also examined the influence of different culture conditions (four culture media and five cultivation times) on mass spectral quality and the discriminatory power of the method. We found a significant influence of sample pretreatment method and culture medium on species identification and differentiation for a total of 10 strains belonging to Mycobacterium phlei and Mycobacterium smegmatis. Optimum culture conditions yielding the highest identification success rate against the BioTyper database (Bruker Daltonics) and permitting the possibility of automatic acquisition of mass spectra were found to be distinct for the two mycobacterial species examined. Similarly, individual changes in growth conditions had diverse effects on the two species. For these reasons, thorough control over cultivation conditions should always be employed to maximize the performance and discriminatory power of MALDI-TOF MS profiling, and cultivation conditions must be optimized separately for individual groups of mycobacterial species/strains.
机译:基质辅助激光解吸/电离飞行时间质谱仪(MALDI-TOF MS)代表了一种基于特定肽/蛋白质指纹图谱进行快速细菌鉴定的简单可靠方法。但是,分枝杆菌菌种的细胞壁特征及其众所周知的稳定性使MALDI-TOF MS谱分析变得复杂。在这项研究中,我们测试了两种最新发表的灭活和破坏分枝杆菌的方法,并且还研究了不同培养条件(四种培养基和五种培养时间)对质谱质量和方法鉴别力的影响。我们发现样品预处理方法和培养基对共计10株牛分枝杆菌和耻垢分枝杆菌的菌株的种类鉴定和分化具有重大影响。发现最佳的培养条件相对于BioTyper数据库(Bruker Daltonics)具有最高的鉴定成功率,并允许对两种分枝杆菌物种分别进行质谱自动采集。同样,生长条件的个体变化对这两个物种也有不同的影响。由于这些原因,应始终对培养条件进行彻底控制,以最大程度地提高MALDI-TOF MS分析的性能和歧视能力,并且必须针对分枝杆菌物种/菌株的单独组分别优化培养条件。

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