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Plasma-Based Surface Modification of Polystyrene Microtiter Plates for Covalent Immobilization of Biomolecules

机译:聚苯乙烯微量滴定板基于等离子体的表面修饰,用于共价固定生物分子。

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In recent years, polymer surfaces have become increasingly popular For biomolecule attachment because of their relatively low cost and desirable bulk physicochemicai characteristics. However, the chemical inertness of some polymer surfaces poses an obstacle to more expansive implementation of polymer materials in bioanalytical applications. We describe use of argon plasma to generate reactive hydroxyl moieties at the surface of polystyrene microtiter plates. The plates are then selectively functionalized with silanes and cross-linkers suitable for the covalent immobilization of biomolecules. This plasma-based method for microliter plate functionalization was evaluated after each step by X-ray photoelectron spectroscopy, water contact angle analysis, atomic force microscopy, and bioimmobilization efficacy. We further demonstrate that the plasma treatment followed by silane derivatization supports direct, covalent immobilization of biomolecules on microtiter plates and thus overcomes challenging issues typically associated with simple physisorption. Importantly, biomolecules covalently immobilized onto microtiter plates using this plasma-based method retained functionality and demonstrated attachment efficiency comparable to commercial preactivated microliter plates.
机译:近年来,聚合物表面因其相对较低的成本和合乎需要的整体物理化学特性而变得越来越流行用于生物分子连接。但是,某些聚合物表面的化学惰性对生物分析应用中更广泛地应用聚合物材料构成了障碍。我们描述了使用氩等离子体在聚苯乙烯微量滴定板的表面产生反应性羟基部分。然后用适合共价固定生物分子的硅烷和交联剂将板选择性官能化。在每个步骤之后,通过X射线光电子能谱,水接触角分析,原子力显微镜和生物固定效果评估了这种基于等离子体的微升板功能化方法。我们进一步证明,等离子体处理后再进行硅烷衍生化,可将生物分子直接,共价固定在微量滴定板上,从而克服了通常与简单的物理吸附有关的挑战性问题。重要的是,使用这种基于血浆的方法共价固定在微量滴定板上的生物分子保留了功能,并证明了与商业预活化微量滴定板相当的附着效率。

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