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Immobilization of oligonucleotides and proteins in sugar-containing hydrogels

机译:寡糖和蛋白质在含糖水凝胶中的固定化

摘要

The use of sugar-containing hydrogels as very highly porous, aqueous support material for the immobilization of oligonucleotides, peptides, proteins, antigens, antibodies, polysaccharides, and other biomolecules for sensor applications. Unusually large sizes of interconnected pores allow large target molecules to pass rapidly into and through the gel and bind to immobilized biomolecules. Sugar-containing hydrogels have extremely low non-specific absorption of labeled target molecules, providing low background levels. Some hydrogel materials do not have this type of homogeneous interconnected macroporosity, thus large target molecules cannot readily diffuse through them. Additionally, they nearly always experience non-specific absorption of labeled target molecules, limiting their usefulness in sensor applications. A method is provided for preparing sugar polyacrylate hydrogels with functional chemical groups which covalently bond oligonucleotides and peptides. A method for copolymerizing acrylate-terminated oligonucleotides with sugar acrylate monomers and diacrylate cross-linking agents is also provided.
机译:含糖水凝胶作为高度多孔的水性支持材料的用途,用于固定用于传感器应用的寡核苷酸,肽,蛋白质,抗原,抗体,多糖和其他生物分子。异常大的相互连通的孔的大小使大的目标分子迅速进入并穿过凝胶并结合到固定的生物分子上。含糖水凝胶对标记的目标分子的非特异性吸收极低,因此背景水平较低。一些水凝胶材料不具有这类均质的相互连接的大孔,因此大的目标分子无法轻易地扩散通过它们。另外,它们几乎总是经历标记目标分子的非特异性吸收,从而限制了它们在传感器应用中的用途。提供了一种制备具有功能性化学基团的糖聚丙烯酸酯糖水凝胶的方法,所述功能性化学基团共价键合寡核苷酸和肽。还提供了一种使丙烯酸酯封端的寡核苷酸与糖丙烯酸酯单体和二丙烯酸酯交联剂共聚的方法。

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