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Serum antibody screening by surface plasmon resonance using a natural glycan microarray

机译:使用天然聚糖微阵列通过表面等离子体共振检测血清抗体

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A surface plasmon resonance (SPR) based natural glycan microarray was developed for screening of interactions between glycans and carbohydrate-binding proteins (CBPs). The microarray contained 144 glycan samples and allowed the real-time and simultaneous screening for recognition by CBPs without the need of fluorescent labeling. Glycans were released from their natural source and coupled by reductive amination with the fluorescent labels 2-aminobenzamide (2AB) or anthranilic acid (AA) followed by high-performance liquid chromatography (HPLC) fractionation making use of the fluorescent tag. The released and labeled glycans, in addition to fluorescently labeled synthetic glycans and (neo)glycoproteins, were printed on an epoxide-activated chip at fmol amounts. This resulted in covalent immobilization, with the epoxide groups forming covalent bonds to the secondary amine groups present on the fluorescent glycoconjugates. The generated SPR glycan array presented a subset of the glycan repertoire of the human parasite Schistosoma mansoni. In order to demonstrate the usefulness of the array in the simultaneous detection of glycan-specific serum antibodies, the anti-glycan antibody profiles from sera of S. mansoni-infected individuals as well as from non-endemic uninfected controls were recorded. The SPR screening was sensitive for differences between infection sera and control sera, and revealed antibody titers and antibody classes (IgG or IgM). All SPR analyses were performed with a single SPR array chip, which required regeneration and blocking of the chip before the application of a serum sample. Our results indicate that SPR-based arrays constructed from glycans of natural or synthetic origin, pure or as mixture, can be used for determining serum antibody profiles as possible markers for the infection status of an individual.
机译:基于表面等离振子共振(SPR)的天然聚糖微阵列被开发用于筛选聚糖和糖结合蛋白(CBPs)之间的相互作用。该微阵列包含144个聚糖样品,无需荧光标记即可实时并同时筛选CBP识别。聚糖从其天然来源中释放出来,并通过与荧光标记2-氨基苯甲酰胺(2AB)或邻氨基苯甲酸(AA)的还原胺化偶联,然后使用荧光标签进行高效液相色谱(HPLC)分离。除了荧光标记的合成聚糖和(新)糖蛋白外,释放和标记的聚糖均以fmol的量印刷在环氧活化的芯片上。这导致共价固定,其中环氧基与荧光糖缀合物上存在的仲胺基形成共价键。生成的SPR聚糖阵列显示了人类寄生虫曼氏血吸虫的聚糖库的一个子集。为了证明该阵列在同时检测聚糖特异性血清抗体中的有用性,记录了曼氏葡萄球菌感染个体血清以及非流行性未感染对照的抗聚糖抗体谱。 SPR筛选对感染血清和对照血清之间的差异敏感,并显示出抗体效价和抗体类别(IgG或IgM)。所有SPR分析均使用单个SPR阵列芯片进行,这需要在施加血清样品之前对芯片进行再生和封闭。我们的结果表明,由天然或合成来源的聚糖制成的基于SPR的阵列(纯净的或作为混合物)可用于确定血清抗体谱,将其作为个体感染状态的可能标记。

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