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ADVANCES IN MASS SPECTROMETRY FOR THE IDENTIFICATION OF PATHOGENS

机译:质谱法鉴定致病菌的研究进展

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Mass spectrometry (MS) has become an important technique to identify microbial biomarkers. The rapid and accurate MS identification of microorganisms without any extensive pretreatment of samples is now possible. This review summarizes MS methods that are currently utilized in microbial analyses. Affinity methods are effective to clean, enrich, and investigate microorganisms from complex matrices. Functionalized magnetic nanoparticles might concentrate traces of target microorganisms from sample solutions. Therefore, nanoparticle-based techniques have a favorable detection limit. MS coupled with various chromatographic techniques, such as liquid chromatography and capillary electrophoresis, reduces the complexity of microbial biomarkers and yields reliable results. The direct analysis of whole pathogenic microbial cells with matrix-assisted laser desorption/ ionization MS without sample separation reveals specific biomarkers for taxonomy, and has the advantages of simplicity, rapidity, and high-throughput measurements. The MS detection of polymerase chain reaction (PCR)-amplified microbial nucleic acids provides an alternative to biomarker analysis. This review will conclude with some current applications of MS in the identification of pathogens.
机译:质谱(MS)已成为鉴定微生物生物标志物的重要技术。现在无需对样品进行大量预处理即可对微生物进行快速准确的MS鉴定。这篇综述总结了目前在微生物分析中使用的质谱方法。亲和力方法可以有效地清洗,富集和研究复杂基质中的微生物。功能化的磁性纳米粒子可能会浓缩样品溶液中的痕量目标微生物。因此,基于纳米颗粒的技术具有良好的检测极限。 MS与各种色谱技术(例如液相色谱和毛细管电泳)结合使用,可降低微生物生物标志物的复杂性并产生可靠的结果。使用基质辅助激光解吸/电离质谱仪无需样品分离即可直接分析整个病原微生物细胞,揭示了用于分类学的特定生物标志物,并具有简单,快速和高通量测量的优势。 MS检测聚合酶链反应(PCR)扩增的微生物核酸为生物标记分析提供了另一种选择。本综述将以质谱在鉴定病原体中的一些当前应用作为结论。

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