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用于蛋白质识别的模板印迹纳米结构表面。

Template-imprinted nanostructured surfaces for protein recognition.

作者信息

Shi H, Tsai W B, Garrison M D, Ferrari S, Ratner B D

机构信息

Department of Bioengineering, University of Washington, Seattle 98195, USA.

出版信息

Nature. 1999 Apr 15;398(6728):593-7. doi: 10.1038/19267.

Abstract

Synthetic materials capable of selectively recognizing proteins are important in separations, biosensors and the development of biomedical materials. The technique of molecular imprinting creates specific recognition sites in polymers by using template molecules. Molecular recognition is attributed to binding sites that complement molecules in size, shape and chemical functionality. But attempts to imprint proteins have met with only limited success. Here we report a method for imprinting surfaces with protein-recognition sites. We use radio-frequency glow-discharge plasma deposition to form polymeric thin films around proteins coated with disaccharide molecules. The disaccharides become covalently attached to the polymer film, creating polysaccharide-like cavities that exhibit highly selective recognition for a variety of template proteins, including albumin, immunoglobulin G, lysozyme, ribonuclease and streptavidin. Direct imaging of template recognition is achieved by patterning a surface at the micrometre scale with imprinted regions.

摘要

能够选择性识别蛋白质的合成材料在分离、生物传感器以及生物医学材料的开发中具有重要意义。分子印迹技术通过使用模板分子在聚合物中创建特定的识别位点。分子识别归因于在大小、形状和化学功能上与分子互补的结合位点。但是对蛋白质进行印迹的尝试仅取得了有限的成功。在此,我们报告一种在表面印迹蛋白质识别位点的方法。我们使用射频辉光放电等离子体沉积在涂有二糖分子的蛋白质周围形成聚合物薄膜。二糖与聚合物膜共价连接,形成对包括白蛋白、免疫球蛋白G、溶菌酶、核糖核酸酶和链霉亲和素在内的多种模板蛋白质具有高度选择性识别的多糖样空腔。通过在微米尺度上对表面进行印迹区域的图案化,实现了模板识别的直接成像。

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