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The trace analysis of microorganisms in real samples by combination of a filtration microcartridge and capillary isoelectric focusing

机译:过滤微囊和毛细管等电聚焦相结合对真实样品中的微生物进行痕量分析

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Trace analysis of microorganisms in real biological samples needs very sensitive methods for their detection. Most procedures for detecting and quantifying pathogens require a sample preparation step including concentrating microorganisms from large sample volumes with high and reproducible efficiency. Electromigration techniques have great potential to include the preconcentration, separation, and detection of whole cells and therefore they can rapidly indicate the presence of pathogens. The preconcentration and separation of microorganisms from real suspensions utilising a combination of filtration and capillary isoelectric focusing was developed and the possibility for its application to real samples was verified. For our experiments, spores of Monilinia species and of Penicillium expansum were selected as model bioparticles, as they cause major losses in agrosystems. The isoelectric points of the spores of M. laxa, M. fructigena, M. fruticola, and P. expansum were determined and the method was verified using real samples taken directly from infected apples. The coupling of a filtration cartridge with a separation capillary can improve the detection limit of isoelectric focusing with UV detection by at least 4 orders of magnitude. Spores of M. fructigena and of M. laxa in numbers of hundreds of particles per milliliter were detected on a visually noninfected apple surface which was cross-contaminated during handling and storage. The efficiency of preconcentration and a preliminary identification was verified by the phenotyping technique after cultivation of the spores sampled from the apple surface.
机译:真实生物样品中微生物的痕量分析需要非常灵敏的检测方法。大多数检测和定量病原体的程序都需要样品制备步骤,包括以高且可重复的效率浓缩大体积样品中的微生物。电迁移技术具有对整个细胞进行预浓缩,分离和检测的巨大潜力,因此它们可以快速指示病原体的存在。利用过滤和毛细管等电聚焦相结合的方法,从实际悬浮液中进行了微生物的预浓缩和分离,并验证了将其应用于实际样品的可能性。对于我们的实验,选择莫妮莉亚菌种和扩张青霉菌的孢子作为模型生物颗粒,因为它们会导致农业系统的重大损失。测定了松果蝇,小果蝇,金黄色葡萄球菌和广角疟原虫的孢子的等电点,并使用直接取自感染苹果的真实样品验证了该方法。滤筒与分离毛细管的耦合可以将等电聚焦与紫外线检测的检测极限提高至少4个数量级。在不经视觉感染的苹果表面上检测到了果蝇和松果的孢子,每毫升有数百个颗粒,在处理和储存过程中苹果表面被交叉污染。从苹果表面取样的孢子培养后,通过表型分析技术验证了预浓缩和初步鉴定的效率。

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