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Direct Evaluation of Live Uropathogenic Escherichia coli Adhesion and Efficiency of Antiadhesive Compounds Using a Simple Microarray Approach

机译:使用简单的微阵列方法直接评估活尿致疗法大肠杆菌粘附性和抗粘附性化合物的效率

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Many pathogens use host glycans as docking points for adhesion. Therefore, the use of compounds blocking carbohydrate-binding adhesins is a promising strategy for fighting infections. In this work, we describe a simple and rapid microarray approach for assessing the bacterial adhesion and efficiency of antiadhesive compounds targeting uropathogenic Escherichia coli UTI89, which displays mannose-specific adhesin FimH at the tip of fimbriae. The approach consisted in direct detection of live fluorescently labeled bacteria bound to mannan printed onto microarray slides. The utility of the arrays for binding/inhibition assays was first validated by comparing array-derived results for the model mannose-binding lectin concanavalin A with data obtained by isothermal titration calorimetry. Growth phase dependent binding of UTI89 to the arrays was observed, proving the usefulness of the setup for detecting differences in FimH expression. Importantly, bacteria labeling and binding assays entailed minimal manipulation, helping to preserve the integrity of fimbriae. The efficiency of three different dodecamannosylated fullerenes as FimH-targeted antiadhesives was next evaluated in competition assays. The results revealed a superior activity of the mannofullerenes (5- to 18-fold per mannose residue) over methyl alpha-D-mannopyranoside. Moreover, differences in activity were detected for mannofullerenes differing in the structure/length of the spacer used for grafting mannose onto the fullerene core, further demonstrating the sensitivity of the assay. Overall, the approach combines straightforward and time-saving protocols for microarray preparation, bacteria labeling, and binding assays, and it can be easily tailored to other bacteria bearing carbohydrate-binding adhesins.
机译:许多病原体使用宿主聚糖作为对接点进行粘附。因此,封闭碳水化合物结合粘附素的化合物的使用是用于对抗感染的有希望的策略。在这项工作中,我们描述了一种简单而快速的微阵列方法,用于评估靶向尿羟基菌尿素大肠杆菌UTI89的抗粘附性化合物的细菌粘附和效率,其在FIMBRIAE尖端显示甘露糖特异性粘附性FIMH。直接检测与甘露植物的直接检测到微阵列载玻片上的活荧光标记的细菌的方法。首先通过将模型甘露糖结合凝集素康昔单菌素A的阵列衍生的结果与通过等温滴定热量获得的数据进行比较,首先验证结合/抑制测定的效用。观察到UTI89对阵列的生长相位依赖性结合,证明了对检测FIMH表达差异的设定的有用性。重要的是,细菌标记和结合测定需要最小的操作,有助于保持FIMBRIAE的完整性。接下来在竞争测定中评估三种不同十二烷铵化富勒烯作为FIMH靶向抗吸附剂的效率。结果表明,在甲基-D-甘露糖苷上的Mannofullerenes(每甘露糖残留物5-18倍)的优异活性。此外,对于在用于将甘露糖的间隔物的结构/长度的结构/长度与用于将甘露糖覆盖到富勒烯核心的结构/长度不同的植物,进一步证明了测定的敏感性,检测到活性的差异。总的来说,该方法结合了微阵列制剂,细菌标记和结合测定的直接和节省时间的协议,并且可以容易地定制到携带碳水化合物结合粘附素的其他细菌。

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