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Filamentous Phages Displaying Multivalent Peptide Motives With Specific Affinity To Anodic Alumina Surfaces

机译:丝状噬菌体显示对阳极氧化铝表面具有特定亲和力的多价肽原动力

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摘要

In this work, we report for the first time on the successful selection and identification of peptide motives that exhibit a specific affinity to anodic alumina surfaces when multivalently displayed on a filamentous phage. It was also demonstrated that, for a selected phage clone, a chemical functionalisation (biotinylation) of the bacteriophage does not deteriorate its specific affinity to anodic alumina. Moreover, such biotinylated bacteriophages, after being immobilised onto an anodic alumina surface, have been shown to allow for the quantitative detection of streptavidine using an ELISA protocol. These results are believed to pave the way for shifting the surface design of integrated biosensing devices from traditional, chemically modified synthetic surfaces, like silane-based self-assembled monolayers, towards molecular linkers based on genetically engineered polypeptides.
机译:在这项工作中,我们首次报告了成功选择和鉴定在丝状噬菌体上多价展示对阳极氧化铝表面具有特定亲和力的肽动机。还表明,对于选定的噬菌体克隆,噬菌体的化学功能化(生物素化)不会降低其对阳极氧化铝的特异性亲和力。而且,已经显示出将这种生物素化的噬菌体固定在阳极氧化铝表面上之后,可以使用ELISA方案对链霉抗生物素蛋白进行定量检测。相信这些结果为将整合的生物传感装置的表面设计从传统的化学修饰的合成表面(例如基于硅烷的自组装单分子层)转向基于基因工程多肽的分子接头铺平了道路。

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