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Raising the shields:PCR in the presence of metallic surfaces protected by tailor-made coatings

机译:提起屏蔽层:在金属表面受到定制涂层保护的情况下进行PCR

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摘要

The implementation of PCR reactions in the presence of metallic surfaces is interesting for the generation of novel bioanalytical devices, because metals exhibit high mechanical stability, good thermal conductivity, and flexibility during deformation. However, metallic substrates are usually non-compatible with enzymatic reactions such as PCR due to poisoning of the active center of the enzyme or nonspecific adsorption of the enzymeto the metal surface, which could result in protein denaturation. We present a method for the generation of polymer coatings on metallic surfaces which are designed to minimize protein adsorption and also prevent the release of metal ions. These coatings consist of three layers covalently linked to each other; a self-assembled monolayer to promote adhesion, a photochemically generated barrier layer and a photochemically generated hydrogel. The coatings can be deposited onto aluminum, stainless steel, gold and copper surfaces. We compare PCR efficiencies in the presence of bare metallic surfaces with those of surfaces treated with the novel coating system.
机译:在金属表面存在下进行PCR反应对于新型生物分析设备的产生是令人感兴趣的,因为金属具有很高的机械稳定性,良好的导热性和变形时的柔韧性。但是,由于酶的活性中心中毒或酶对金属表面的非特异性吸附,金属底物通常与酶促反应(如PCR)不相容,这可能导致蛋白质变性。我们提出了一种在金属表面上生成聚合物涂层的方法,该方法旨在最大程度地减少蛋白质吸附并防止金属离子的释放。这些涂层由共价连接的三层组成。自组装单层,以促进粘附,光化学生成的阻挡层和光化学生成的水凝胶。涂层可以沉积在铝,不锈钢,金和铜表面上。我们比较了裸金属表面和新型涂层系统处理过的表面的PCR效率。

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