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A hydrogel-based versatile screening platform for specific biomolecular recognition in a well plate format

机译:基于水凝胶的多功能筛选平台,用于孔板形式的特定生物分子识别

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Precise determination of biomolecular interactions in high throughput crucially depends on a surface coating technique that allows immobilization of a variety of interaction partners in a non-interacting environment. We present a one-step hydrogel coating system based on isocyanate functional six-arm poly(ethylene oxide)-based star polymers for commercially available 96-well microtiter plates that combines a straightforward and robust coating application with versatile bio-functionalization. This system generates resistance to unspecific protein adsorption and cell adhesion, as demonstrated with fluorescently labeled bovine serum albumin and primary human dermal fibroblasts (HDF), and high specificity for the assessment of biomolecular recognition processes when ligands are immobilized on this surface. One particular advantage is the wide range of biomolecules that can be immobilized and convert the per se inert coating into a specifically interacting surface. We here demonstrate the immobilization and quantification of a broad range of biochemically important ligands, such as peptide sequences GRGDS and GRGDSK-biotin, the broadly applicable coupler molecule biocytin, the protein fibronectin, and the carbohydrates N-acetylglucosamine and Nacetyllactosamine. A simplified protocol for an enzymelinked immunosorbent assay was established for the detection and quantification of ligands on the coating surface. Cell adhesion on the peptide and protein-modified surfaces was assessed using HDF. All coatings were applied using a one-step preparation technique, including bioactivation, which makes the system suitable for high-throughput screening in a format that is compatible with the most routinely used testing systems.
机译:高通量生物分子相互作用的精确测定至关重要地取决于表面涂层技术,该技术可将多种相互作用伙伴固定在非相互作用环境中。我们提出了一种基于异氰酸酯官能六臂聚环氧乙烷的星形聚合物的一步法水凝胶包衣系统,适用于可商购的96孔微量滴定板,该程序将简单,坚固的包衣应用与通用的生物功能化结合在一起。如荧光标记的牛血清白蛋白和原代人皮肤成纤维细胞(HDF)所证明的,该系统产生对非特异性蛋白质吸附和细胞粘附的抗性,并且当配体固定在该表面上时,对评估生物分子识别过程具有高特异性。一个特别的优点是可以固定化多种生物分子并将其本身的惰性涂层转变成特异性相互作用的表面。我们在这里展示了多种生化重要配体的固定化和定量,如肽序列GRGDS和GRGDSK-生物素,广泛适用的偶联分子生物胞素,蛋白纤连蛋白和碳水化合物N-乙酰氨基葡糖和N-乙酰基乳糖胺。建立了酶联免疫吸附测定的简化方案,用于检测和定量涂层表面上的配体。使用HDF评估在肽和蛋白质修饰的表面上的细胞粘附。所有涂层均采用包括生物激活在内的一步制备技术进行涂装,这使该系统适用于高通量筛选,且格式与最常用的测试系统兼容。

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