首页> 外文OA文献 >Application of Capillary Electrophoresis Mass Spectrometry and Liquid Chromatography Multiple-Step Tandem Electrospray Mass Spectrometry To Profile Glycoform Expression during Haemophilus influenzae Pathogenesis in the Chinchilla Model of Experimental Otitis Media ▿
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Application of Capillary Electrophoresis Mass Spectrometry and Liquid Chromatography Multiple-Step Tandem Electrospray Mass Spectrometry To Profile Glycoform Expression during Haemophilus influenzae Pathogenesis in the Chinchilla Model of Experimental Otitis Media ▿

机译:应用毛细管电泳质谱和液相色谱多步串联电喷雾质谱分析实验性中耳炎龙猫模型中流感嗜血杆菌致病过程中糖型的表达▿

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摘要

Otitis media caused by nontypeable Haemophilus influenzae (NTHi) is a common and recurrent bacterial infection of childhood. The structural variability and diversity of H. influenzae lipopolysaccharide (LPS) glycoforms are known to play a significant role in the commensal and disease-causing behavior of this pathogen. In this study, we determined LPS glycoform populations from NTHi strain 1003 during the course of experimental otitis media in the chinchilla model of infection by mass spectrometric techniques. Building on an established structural model of the major LPS glycoforms expressed by this NTHi strain in vitro (M. Månsson, W. Hood, J. Li, J. C. Richards, E. R. Moxon, and E. K. Schweda, Eur. J. Biochem. 269:808-818, 2002), minor isomeric glycoform populations were determined by liquid chromatography multiple-step tandem electrospray mass spectrometry (LC-ESI-MSn). Using capillary electrophoresis ESI-MS (CE-ESI-MS), we determined glycoform profiles for bacteria from direct middle ear fluid (MEF) samples. The LPS glycan profiles were essentially the same when the MEF samples of 7 of 10 animals were passaged on solid medium (chocolate agar). LC-ESI-MSn provided a sensitive method for determining the isomeric distribution of LPS glycoforms in MEF and passaged specimens. To investigate changes in LPS glycoform distribution during the course of infection, MEF samples were analyzed at 2, 5, and 9 days postinfection by CE-ESI-MS following minimal passage on chocolate agar. As previously observed, sialic acid-containing glycoforms were detected during the early stages of infection, but a trend toward more-truncated and less-complex LPS glycoforms that lacked sialic acid was found as disease progressed.
机译:由不可分型的流感嗜血杆菌(NTHi)引起的中耳炎是儿童常见且反复发作的细菌感染。已知流感嗜血杆菌脂多糖(LPS)糖型的结构变异性和多样性在该病原体的致病和致病行为中起着重要作用。在这项研究中,我们通过质谱技术确定了在感染的龙猫模型中的实验性中耳炎过程中NTHi菌株1003的LPS糖型种群。在此NTHi菌株体外表达的主要LPS糖型的既定结构模型的基础上建立(M.Månsson,W.Hood,J.Li,JC Richards,ER Moxon和EK Schweda,Eur.J.Biochem.269:808 -818,2002),通过液相色谱多步串联电喷雾质谱法(LC-ESI-MSn)测定次要异构糖型群体。使用毛细管电泳ESI-MS(CE-ESI-MS),我们确定了直接中耳液(MEF)样品中细菌的糖型曲线。当将10只动物中的7只的MEF样品在固体培养基(巧克力琼脂)上传代时,LPS聚糖谱基本相同。 LC-ESI-MSn提供了一种灵敏的方法来测定MEF和传代标本中LPS糖型的异构体分布。为了研究感染过程中LPS糖型分布的变化,在感染巧克力后至少2天内,通过CE-ESI-MS在感染后第2、5和9天分析了MEF样品。如先前所观察到的,在感染的早期阶段就检测到了含有唾液酸的糖型,但是随着疾病的发展,发现缺少唾液酸的LPS糖型被截断和减少的趋势。

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