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The use of carbohydrate microarrays to study carbohydrate-cell interactions and to detect pathogens

机译:使用碳水化合物微阵列研究碳水化合物与细胞的相互作用并检测病原体

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摘要

The use of carbohydrate microarrays to investigate the carbohydrate binding specificities of bacteria, to detect pathogens, and to screen antiadhesion therapeutics is reported. This system is ideal for whole-cell applications because microarrays present carbohydrate ligands in a manner that mimics interactions at cell-cell interfaces. Other advantages include assay miniaturization, since minimal amounts (similar topicomoles) of a ligand are required to observe binding, and high throughput, since thousands of compounds can be placed on an array and analyzed in parallel. Pathogen detection experiments can be completed in complex mixtures of cells or protein using the known carbohydrate binding epitopes of the pathogens in question. The nondestructive nature of the arrays allows the pathogen to be harvested and tested for antibacterial susceptibility. These investigations allow microarray-based screening of biological samples for contaminants and combinatorial libraries for antiadhesion therapeutics.
机译:据报道,使用碳水化合物微阵列研究细菌的碳水化合物结合特异性,检测病原体和筛选抗粘连治疗剂。该系统是全细胞应用的理想选择,因为微阵列以模拟细胞-细胞界面相互作用的方式呈现糖配体。其他优点包括测定小型化(因为需要最少量的配体(相似的局部分子)才能观察结合)和高通量(因为可以将成千上万的化合物放置在阵列上并进行平行分析)。病原体检测实验可以使用病原体的已知碳水化合物结合表位在细胞或蛋白质的复杂混合物中完成。阵列的非破坏性性质允许病原体被收获并测试其抗菌敏感性。这些研究使得可以对生物样品进行基于微阵列的筛查以检测污染物,并可以使用组合文库进行抗粘附治疗。

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