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Lectin and carbohydrate affinity capture surfaces for mass spectrometricanalysis of microorganisms

机译:凝集素和碳水化合物亲和力捕获表面用于微生物的质谱分析

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In a preliminary report (Bundy, J, L.; Fenselau, C. Anal. Chem. 1999, 71, 1460-1463), we demonstrated the use of lectin-derivatized surfaces to capture and concentrate complex carbohydrates as well as microorganisms from sample matrixes unamenable to direct MALDI mass spectrometry, Here, we extend the work to include samples representative of a wider variety of microorganisms of importance to human health and of enveloped viruses. In this study, lectins were immobilized directly to a membrane surface via primary amines, A complementary approach was also explored, using immobilized carbohydrates to capture bacteria via microbial lectins expressed on their surfaces. The carbohydrate-based surfaces were constructed by first immobilizing streptavidin to the membrane, followed by attachment of a commercially produced biotin/carbohydrate polymer. Acid treatment of the sample prior to mass spectrometric analysis permits the observation of protein biomarkers from the captured microbial samples in the 5-20 kDa mass range, Bacteria samples were detected from physiological buffers, urine, milk, and processed chicken samples using the biocapture probes. Viral samples were detected from culture based on glycoprotein moieties desorbed directly from the surface. The carbohydrate-based system provided greater sensitivity than the lectin system, possibly due to the larger number of accessible saccharide ligands on the polymer.
机译:在初步报告中(Bundy,J. L.; Fenselau,C. Anal。Chem。1999,71,1460-1463),我们证明了使用凝集素衍生化的表面捕获并浓缩样品中的复杂碳水化合物和微生物无法直接进行MALDI质谱分析的基质,在这里,我们将工作扩展到包括代表对人类健康重要的各种微生物和包膜病毒的样品。在这项研究中,凝集素通过伯胺直接固定在膜表面,还探索了一种补充方法,使用固定化的碳水化合物通过在其表面表达的微生物凝集素捕获细菌。通过首先将抗生蛋白链菌素固定在膜上,然后附着商业生产的生物素/碳水化合物聚合物,来构建基于碳水化合物的表面。在质谱分析之前对样品进行酸处理,可以观察到捕获的微生物样品中5-20 kDa质量范围内的蛋白质生物标志物,使用生物捕获探针从生理缓冲液,尿液,牛奶和加工过的鸡肉样品中检测细菌样品。基于直接从表面解吸的糖蛋白部分,从培养物中检测到病毒样品。基于碳水化合物的系统比凝集素系统提供更高的灵敏度,这可能是由于聚合物上可及的糖配体数量更多。

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