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Graphene Biosensor Programming with Genetically Engineered Fusion Protein Monolayers

机译:具有遗传工程融合蛋白单分子层的石墨烯生物传感器编程

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We demonstrate a label-free biosensor concept based on specific receptor modules, which provide immobilization and selectivity to the desired analyte molecules, and on charge sensing with a graphene field effect transistor. The receptor modules are fusion proteins in which small hydrophobin proteins act as the anchor to immobilize the receptor moiety. The functionalization of the graphene sensor is a single-step process based on directed self-assembly of the receptor modules on a hydrophobic surface. The modules are produced separately in fungi or plants and purified before use. The modules form a dense and well-oriented monolayer on the graphene transistor channel and the receptor module monolayer can be removed, and a new module monolayer with a different selectivity can be assembled in situ. The receptor module monolayers survive drying showing that the functionalized devices can be stored and have a reasonable shelf life. The sensor is tested with small charged peptides and large immunoglobulin molecules. The measured sensitivities are in the femtomolar range, and the response is relatively fast, of the order of, one second.
机译:我们展示了基于特定受体模块的无标签生物传感器概念,该模块可为所需的分析物分子提供固定化和选择性,并利用石墨烯场效应晶体管进行电荷感测。受体模块是融合蛋白,其中小疏水蛋白充当锚定物以固定受体部分。石墨烯传感器的功能化是基于受体模块在疏水性表面上定向自组装的一步过程。这些模块分别在真菌或植物中生产,并在使用前进行纯化。所述模块在石墨烯晶体管通道上形成致密且取向良好的单层,并且可以去除受体模块单层,并且可以原位组装具有不同选择性的新模块单层。受体模块单层在干燥过程中仍能生存,这表明功能化的装置可以储存并且具有合理的保存期限。用小的带电肽和大的免疫球蛋白分子对传感器进行了测试。测得的灵敏度在飞摩尔范围内,并且响应相对较快,约为一秒。

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