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Fabrication and Characterization of a Sialoside-Based Carbohydrate Microarray Biointerface for Protein Binding Analysis with Surface Plasmon Resonance Imaging

机译:制备和表征基于唾液苷的碳水化合物微阵列生物接口用于表面等离子体共振成像的蛋白质结合分析

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Monitoring multiple biological interactions in a multiplexed array format has numerous advantages. However, converting well-developed surface chemistry for spectroscopic measurements to array-based high-throughput screening is not a trivial process and often proves to be the bottleneck in method development. This paper reports the fabrication and characterization of a new carbohydrate microarray with synthetic sialosides for surface plasmon resonance imaging (SPRi) analysis of lectin-carbohydrate interactions. Contact printing of functional sialosides on neutravidin-coated surfaces was carried out and the properties of the resulting elements were characterized by fluorescence microscopy and atomic force microscopy (AFM). Sambucus nigra agglutinin (SNA) was deposited on four different carbohydrate functionalized surfaces and differential binding was analyzed to reveal affinity variation as a function of headgroup sialic acid structures and linking bonds. SPRi studies indicated that this immobilization method could result in high quality arrays with RSD < 5% from array element to array element, superior to the conventional covalent linkage used for protein cholera toxin (CT) in a comparison experiment, which yields nonuniform array elements with RSD >15%. Multiplexed detection of SNA/biotinylated sialoside interactions on arrays up to 400 elements has been performed with good data correlation, demonstrating the effectiveness of the biotin-neutravidin-based biointerface to control probe orientation for reproducible and efficient protein binding to take place. Additionally, the regeneration of the array surface was demonstrated with a glycine stripping buffer, rendering this interface reusable. This in-depth study of array surface chemistry offers useful insight into experimental conditions that can be optimized for better performance, allowing many different protein-based biointeractions to be monitored in a similar manner.
机译:以多路复用阵列格式监视多种生物相互作用具有许多优点。然而,将用于光谱测量的发达的表面化学转化为基于阵列的高通量筛选并非易事,并且常常被证明是方法开发的瓶颈。本文报道了具有合成唾液酸苷的新型碳水化合物微阵列的制备和表征,用于表面凝集素-碳水化合物相互作用的表面等离振子共振成像(SPRi)分析。在中性抗生物素蛋白涂层的表面上进行功能性唾液酸苷的接触印刷,并通过荧光显微镜和原子力显微镜(AFM)对所得元素的特性进行表征。接骨木(Sambucus nigra)凝集素(SNA)沉积在四个不同的碳水化合物官能化表面上,并分析差异结合以揭示亲和力变化与头基唾液酸结构和连接键的关系。 SPRi研究表明,这种固定化方法可产生高质量的阵列,每个阵列元素之间的RSD <5%,优于对比实验中用于蛋白霍乱毒素(CT)的常规共价键,可产生不均匀的阵列元素。 RSD> 15%。已对具有多达400个元素的阵列进行了SNA /生物素化唾液酸相互作用的多路检测,并具有良好的数据相关性,证明了基于生物素-中性亲和素的生物界面控制探针方向的有效性,以实现可重复和有效的蛋白质结合。另外,用甘氨酸剥离缓冲液证明了阵列表面的再生,使该界面可重复使用。这项对阵列表面化学的深入研究提供了对实验条件的有用见识,可以优化实验条件以提高性能,从而以相似的方式监控许多不同的基于蛋白质的生物相互作用。

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